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cropmath-v1
null
[ "CMF014", "CMF011" ]
{ "Biom_plant_yesterday": 704.9, "Coef_Rm": 0.0039000000000000003, "DVI": 0.48, "Tmn": 24.8 }
carbon_nitrogen_cycle
{ "expression": "0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1)", "id": "CMF008", "latex": "R_m=0.0432\\cdot24(Biom/0.45)C_m2^{(T-25)/10}", "name": "植株维持呼吸", "name_en": "carbon-nitrogen cycling plant maintenance respiration", "precision": 3, "unit": "g C/m2/day"...
CMF008_direct_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Wa...
Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means powe...
Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means powe...
Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸). Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_W...
2
Q10 with DVI correction
direct
{ "Biom_plant_yesterday": 704.9, "Coef_Rm": 0.0039000000000000003, "DVI": 0.48, "Tmn": 24.8 }
A carbon-nitrogen cycling respiration calculation estimates carbon-nitrogen cycling plant maintenance respiration. The measured inputs are Biom_plant_yesterday=704.9 g C/m2, Coef_Rm=0.0039 g C/g C/s, Tmn=24.8 C, DVI=0.48 dimensionless. What is the carbon-nitrogen cycling plant maintenance respiration? Give the final nu...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling plant maintenance respiration. Use the verified formula: \[R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10}\] In calculation-friendly notation, this is: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1). Substitute the rel...
dev
carbon-nitrogen cycling respiration
0
CMF014
72.07
cropmath-v1
{ "new_value": 30, "old_value": 29.3, "parameter": "To" }
[ "CMF033", "CMF037" ]
{ "ABIOMASS": 13378, "PDT": 7, "Q10": 2.18, "T": 24.3, "To": 30 }
growth_yield
{ "expression": "(0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10)", "id": "CMF048", "latex": "RM=(0.0091-0.0001\\cdot PDT)\\cdot ABIOMASS\\cdot Q_{10}^{(T-T_o)/10}", "name": "维持呼吸", "name_en": "Maintenance respiration", "precision": 2, "unit": "kg/ha/day" }
CMF048_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means...
Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logari...
Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logari...
Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: Maintenance respiration (维持呼吸). Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means powe...
3
Product with Q10 temperature response
sensitivity
{ "ABIOMASS": 13378, "PDT": 7, "Q10": 2.18, "T": 24.3, "To": 29.3 }
In respiration, we analyze how Maintenance respiration responds to parameter changes. Baseline: PDT=7.0 physiological days, ABIOMASS=13378.0 kg/ha, Q10=2.18 dimensionless, T=24.3 C, To=29.3 C. After changing To from 29.3 to 30.0, compute the new Maintenance respiration. Give the numeric value in kg/ha/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Maintenance respiration. Use the verified formula: \[RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10}\] In calculation-friendly notation, this is: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10). Substitute the relevant values: PDT=7.0 physiological days, ABI...
dev
Respiration
2
CMF033
28.34
cropmath-v1
{ "new_value": 31.5, "old_value": 28.6, "parameter": "Tair" }
[ "CMF025", "CMF023" ]
{ "Tair": 31.5 }
methane_emission
{ "expression": "4.4 + 0.76 * Tair", "id": "CMF024", "latex": "T_{soil}=4.4+0.76T_{air}", "name": "土壤温度估算", "name_en": "Soil temperature from air temperature", "precision": 2, "unit": "C" }
CMF024_sensitivity_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Soil temperature from air temperature (土壤温度估算) Formula (LaTeX): T_{soil}=4.4+0.76T_{air} Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ...
Formula name: Soil temperature from air temperature (土壤温度估算) Formula (LaTeX): T_{soil}=4.4+0.76T_{air} Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output un...
Formula name: Soil temperature from air temperature (土壤温度估算) Formula (LaTeX): T_{soil}=4.4+0.76T_{air} Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output un...
Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C
Relevant formula name: Soil temperature from air temperature (土壤温度估算). Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means divi...
2
Linear
sensitivity
{ "Tair": 28.6 }
Given current measurements Tair=28.6 C in methane, what would the Soil temperature from air temperature be if Tair were adjusted to 31.5? Provide the numeric value in C.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Soil temperature from air temperature. Use the verified formula: \[T_{soil}=4.4+0.76T_{air}\] In calculation-friendly notation, this is: Tsoil = 4.4 + 0.76 * Tair. Substitute the relevant values: Tair=31.5 C. The computed value is 28.34 C. Therefore, the final numeric answer is \boxed{28...
dev
Methane
1
CMF025
0.708
cropmath-v1
null
[ "CMF024", "CMF023" ]
{ "WaterC": 0.606 }
methane_emission
{ "expression": "0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2)", "id": "CMF025", "latex": "WI=0.49e^{3.88W_c-5.4W_c^2}", "name": "水分分解因子", "name_en": "Water-content decomposition factor", "precision": 3, "unit": "fraction" }
CMF025_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ ...
Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/l...
Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/l...
Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Water-content decomposition factor (水分分解因子). Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Soil temperature from air temperature (土壤温度估算) Formula (LaTeX): T_{soil}=4.4+0.76T_{air} Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means po...
1
Exponential quadratic
direct
{ "WaterC": 0.606 }
In a methane, the Water-content decomposition factor is computed as part of methane modeling. With WaterC=0.606 fraction, determine the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Water-content decomposition factor. Use the verified formula: \[WI=0.49e^{3.88W_c-5.4W_c^2}\] In calculation-friendly notation, this is: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2). Substitute the relevant values: WaterC=0.606 fraction. The computed value is 0.708 fraction. Therefore...
dev
Methane
2
CMF024
50.61
cropmath-v1
null
[ "CMF002", "CMF010" ]
{ "GrainYield": 8113, "NUptake": 160.3 }
carbon_nitrogen_cycle
{ "expression": "GrainYield / NUptake", "id": "CMF003", "latex": "NUE=\\frac{GrainYield}{NUptake}", "name": "氮利用效率", "name_en": "Nitrogen use efficiency", "precision": 2, "unit": "kg grain/kg N" }
CMF003_direct_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0...
Formula name: Nitrogen use efficiency (氮利用效率) Formula (LaTeX): NUE=\frac{GrainYield}{NUptake} Formula: NUE = GrainYield / NUptake Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg g...
Formula name: Nitrogen use efficiency (氮利用效率) Formula (LaTeX): NUE=\frac{GrainYield}{NUptake} Formula: NUE = GrainYield / NUptake Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg g...
Formula: NUE = GrainYield / NUptake Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg grain/kg N
Relevant formula name: Nitrogen use efficiency (氮利用效率). Formula: NUE = GrainYield / NUptake Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg grain/kg N
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Oper...
1
Ratio
direct
{ "GrainYield": 8113, "NUptake": 160.3 }
Given GrainYield=8113.0 kg/ha, NUptake=160.3 kg N/ha, calculate the Nitrogen use efficiency for a nitrogen. The result should be in kg grain/kg N.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Nitrogen use efficiency. Use the verified formula: \[NUE=\frac{GrainYield}{NUptake}\] In calculation-friendly notation, this is: NUE = GrainYield / NUptake. Substitute the relevant values: GrainYield=8113.0 kg/ha, NUptake=160.3 kg N/ha. The computed value is 50.61 kg grain/kg N. Therefor...
dev
Nitrogen
1
CMF002
1.04
cropmath-v1
{ "new_value": 0.59, "old_value": 0.65, "parameter": "beta" }
[ "CMF030", "CMF034" ]
{ "Cx": 363, "beta": 0.59 }
growth_yield
{ "expression": "1 + beta * ln(Cx / 340)", "id": "CMF029", "latex": "F_{CO2}=1+\\beta\\ln(C_x/340)", "name": "二氧化碳影响因子", "name_en": "CO2 response factor", "precision": 2, "unit": "multiplier" }
CMF029_sensitivity_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multipli...
Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: CO2 response factor (二氧化碳影响因子). Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / ...
2
Logarithmic
sensitivity
{ "Cx": 363, "beta": 0.65 }
In photosynthesis, we analyze how CO2 response factor responds to parameter changes. Baseline: Cx=363.0 ppm, beta=0.65 dimensionless. After changing beta from 0.65 to 0.59, compute the new CO2 response factor. Give the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as CO2 response factor. Use the verified formula: \[F_{CO2}=1+\beta\ln(C_x/340)\] In calculation-friendly notation, this is: FCO2 = 1 + beta * ln(Cx / 340). Substitute the relevant values: Cx=363.0 ppm, beta=0.59 dimensionless. The computed value is 1.04 fraction. Therefore, the final numer...
dev
Photosynthesis
2
CMF030
183.14
cropmath-v1
{ "new_value": 223.6, "old_value": 248.4, "parameter": "SLAc" }
[ "CMF051", "CMF044" ]
{ "GDD": 611.2, "SLAc": 223.6 }
growth_yield
{ "expression": "if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200)", "id": "CMF053", "latex": "SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200)", "name": "比叶面积", "name_en": "Specific leaf area", "precision": 2, "unit": "cm2/g" }
CMF053_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Specific leaf area (比叶面积) Formula (LaTeX): SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200) Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Op...
Formula name: Specific leaf area (比叶面积) Formula (LaTeX): SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200) Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural log...
Formula name: Specific leaf area (比叶面积) Formula (LaTeX): SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200) Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural log...
Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: cm2/g
Relevant formula name: Specific leaf area (比叶面积). Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. O...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((...
3
Piecewise polynomial
sensitivity
{ "GDD": 611.2, "SLAc": 248.4 }
In leaf area growth, we analyze how Specific leaf area responds to parameter changes. Baseline: GDD=611.2 C day, SLAc=248.4 cm2/g. After changing SLAc from 248.4 to 223.6, compute the new Specific leaf area. Give the numeric value in cm2/g.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Specific leaf area. Use the verified formula: \[SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200)\] In calculation-friendly notation, this is: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200). Substitute the relevant values: GDD=611.2 C day, SLAc=223.6 ...
dev
Leaf area growth
2
CMF051
0.35
cropmath-v1
null
[ "CMF036", "CMF053" ]
{ "PDT": 47.6, "a": 0.053 }
growth_yield
{ "expression": "if PDT<28: 1; else: exp(-a*(PDT-28))", "id": "CMF030", "latex": "F_{PA}=1\\;(PDT<28),\\quad e^{-a(PDT-28)}\\;(PDT\\ge 28)", "name": "生理年龄因子", "name_en": "Physiological age factor", "precision": 2, "unit": "fraction" }
CMF030_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Canopy extinction coefficient (冠层消光系数) Formula (LaTeX): K=0.0087PDT+0.2222 Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power,...
Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Physiological age factor (生理年龄因子). Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Canopy extinction coefficient (冠层消光系数) Formula (LaTeX): K=0.0087PDT+0.2222 Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) me...
2
Piecewise exponential decay
direct
{ "PDT": 47.6, "a": 0.053 }
A photosynthesis calculation estimates Physiological age factor. The measured inputs are PDT=47.6 physiological days, a=0.053 dimensionless. What is the physiological age factor? Give the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Physiological age factor. Use the verified formula: \[F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28)\] In calculation-friendly notation, this is: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)). Substitute the relevant values: PDT=47.6 physiological days, a=0.053 dimensionless. The comp...
dev
Photosynthesis
0
CMF036
56.2
cropmath-v1
null
[ "CMF048", "CMF042" ]
{ "SDEPTH": 1.6 }
growth_yield
{ "expression": "45 + 7 * SDEPTH", "id": "CMF028", "latex": "EMGDD=45+7SDEPTH", "name": "出苗热量需求", "name_en": "Emergence thermal requirement", "precision": 1, "unit": "C day" }
CMF028_direct_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Opera...
Formula name: Emergence thermal requirement (出苗热量需求) Formula (LaTeX): EMGDD=45+7SDEPTH Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day Paramete...
Formula name: Emergence thermal requirement (出苗热量需求) Formula (LaTeX): EMGDD=45+7SDEPTH Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day Paramete...
Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
Relevant formula name: Emergence thermal requirement (出苗热量需求). Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes:...
1
Linear
direct
{ "SDEPTH": 1.6 }
In a phenology, the Emergence thermal requirement is computed as part of phenology modeling. With SDEPTH=1.6 cm, determine the numeric value in C day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Emergence thermal requirement. Use the verified formula: \[EMGDD=45+7SDEPTH\] In calculation-friendly notation, this is: EMGDD = 45 + 7 * SDEPTH. Substitute the relevant values: SDEPTH=1.6 cm. The computed value is 56.2 C day. Therefore, the final numeric answer is \boxed{56.2}. #### 56....
dev
Phenology
2
CMF048
0.09
cropmath-v1
{ "new_value": 44.7, "old_value": 38.9, "parameter": "PDT" }
[ "CMF032", "CMF038" ]
{ "PDT": 44.7 }
growth_yield
{ "expression": "1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63)", "id": "CMF043", "latex": "PIRO=1-PISH", "name": "地下部分配指数", "name_en": "Root partitioning index", "precision": 2, "unit": "fraction" }
CMF043_sensitivity_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Temperature response factor (温度响应因子) Formula (LaTeX): F_T=\sin(\frac{T-T_b}{T_{ol}-T_b}\frac{\pi}{2}); 1; \cos(\frac{T-T_{ou}}{T_{max}-T_{ou}}\frac{\pi}{2}) Formula: F_T = if Tb<=T<Tol: si...
Formula name: Root partitioning index (地下部分配指数) Formula (LaTeX): PIRO=1-PISH Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
Formula name: Root partitioning index (地下部分配指数) Formula (LaTeX): PIRO=1-PISH Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Root partitioning index (地下部分配指数). Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Temperature response factor (温度响应因子) Formula (LaTeX): F_T=\sin(\frac{T-T_b}{T_{ol}-T_b}\frac{\pi}{2}); 1; \cos(\frac{T-T_{ou}}{T_{max}-T_{ou}}\frac{\pi}{2}) Formula: F_T = if Tb<=T<Tol: sin(pi/2*(T-...
2
Residual from shoot partitioning
sensitivity
{ "PDT": 38.9 }
A dry matter partitioning calculation involves sensitivity analysis. The current measurements are PDT=38.9 physiological days. A field technician asks what the root partitioning index would become if PDT changed to 44.7. Report the new final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Root partitioning index. Use the verified formula: \[PIRO=1-PISH\] In calculation-friendly notation, this is: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63). Substitute the relevant values: PDT=44.7 physiological days. The computed value is 0.09 fraction. Therefore, the final numeric an...
dev
Dry matter partitioning
0
CMF032
0.241
cropmath-v1
null
[ "CMF045", "CMF035" ]
{ "PDT": 2.2 }
growth_yield
{ "expression": "0.0087 * PDT + 0.2222", "id": "CMF036", "latex": "K=0.0087PDT+0.2222", "name": "冠层消光系数", "name_en": "Canopy extinction coefficient", "precision": 3, "unit": "dimensionless" }
CMF036_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Canopy extinction coefficient (冠层消光系数) Formula (LaTeX): K=0.0087PDT+0.2222 Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power,...
Formula name: Canopy extinction coefficient (冠层消光系数) Formula (LaTeX): K=0.0087PDT+0.2222 Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: dimensionl...
Formula name: Canopy extinction coefficient (冠层消光系数) Formula (LaTeX): K=0.0087PDT+0.2222 Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: dimensionl...
Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: dimensionless
Relevant formula name: Canopy extinction coefficient (冠层消光系数). Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: dimensionless
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Ope...
1
Linear
direct
{ "PDT": 2.2 }
In a photosynthesis, the Canopy extinction coefficient is computed as part of photosynthesis modeling. With PDT=2.2 physiological days, determine the numeric value in dimensionless.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Canopy extinction coefficient. Use the verified formula: \[K=0.0087PDT+0.2222\] In calculation-friendly notation, this is: K = 0.0087 * PDT + 0.2222. Substitute the relevant values: PDT=2.2 physiological days. The computed value is 0.241 dimensionless. Therefore, the final numeric answer...
dev
Photosynthesis
2
CMF045
0.763
cropmath-v1
null
[ "CMF015", "CMF017" ]
{ "Com": 3.488, "Cr": 4.31, "FEh": 0.428, "TI": 0.722 }
methane_emission
{ "expression": "max(0, 0.27 * FEh * (TI * Cr + Com))", "id": "CMF022", "latex": "P=\\max(0,0.27F_{Eh}(TI\\cdot C_r+Com))", "name": "甲烷产生量", "name_en": "Methane production", "precision": 3, "unit": "g CH4/m2/day" }
CMF022_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division...
Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. O...
Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. O...
Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
Relevant formula name: Methane production (甲烷产生量). Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Root-exudate carbon substrate (根系分泌碳底物) Formula (LaTeX): C_r=0.0018VI\cdot SI\cdot W^{1.25} Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means division, ** or...
1
Maximum with chained drivers
direct
{ "Com": 3.488, "Cr": 4.31, "FEh": 0.428, "TI": 0.722 }
A methane calculation estimates Methane production. The measured inputs are FEh=0.428 fraction, TI=0.722 fraction, Cr=4.31 g C/m2/day, Com=3.488 g C/m2/day. What is the methane production? Give the final numeric value in g CH4/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Methane production. Use the verified formula: \[P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com))\] In calculation-friendly notation, this is: P = max(0, 0.27 * FEh * (TI * Cr + Com)). Substitute the relevant values: FEh=0.428 fraction, TI=0.722 fraction, Cr=4.31 g C/m2/day, Com=3.488 g C/m2/day. Th...
dev
Methane
0
CMF015
0.993
cropmath-v1
null
[ "CMF007", "CMF011" ]
{ "Crop_Water_max": 0.42, "Crop_Water_min": 0.22, "Soil_Water": 0.428, "Wilt_point": 0.08 }
carbon_nitrogen_cycle
{ "expression": "if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max))", "id": "CMF014", "latex": "F_W=f(\\theta,\\theta_{wp},\\theta_{min},\\theta_{max})", "name": "作物水分胁迫...
CMF014_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling optimal photosynthetic rate (最适光合速率) Formula (LaTeX): P_{opt}=\alpha N_{leaf}\frac{PAR}{PAR+\beta} Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coe...
Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1...
Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1...
Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) mean...
Relevant formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子). Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max)) Operator notes: * means...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling optimal photosynthetic rate (最适光合速率) Formula (LaTeX): P_{opt}=\alpha N_{leaf}\frac{PAR}{PAR+\beta} Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta) Op...
2
Piecewise water response
direct
{ "Crop_Water_max": 0.42, "Crop_Water_min": 0.22, "Soil_Water": 0.428, "Wilt_point": 0.08 }
A carbon-nitrogen cycling water calculation estimates carbon-nitrogen cycling crop water stress factor. The measured inputs are Soil_Water=0.428 cm3/cm3, Crop_Water_max=0.42 cm3/cm3, Crop_Water_min=0.22 cm3/cm3, Wilt_point=0.08 cm3/cm3. What is the carbon-nitrogen cycling crop water stress factor? Give the final numeri...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling crop water stress factor. Use the verified formula: \[F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max})\] In calculation-friendly notation, this is: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wil...
dev
carbon-nitrogen cycling water
0
CMF007
244.63
cropmath-v1
null
[ "CMF041", "CMF026" ]
{ "DTGA": 432.5, "RG": 115.5, "RM": 84.6, "b": 0.05 }
growth_yield
{ "expression": "(DTGA - RM - RG) / (1 - b)", "id": "CMF033", "latex": "GCR=\\frac{DTGA-RM-RG}{1-b}", "name": "日干物质增量", "name_en": "Daily dry matter increment", "precision": 2, "unit": "kg/ha/day" }
CMF033_direct_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes...
Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: Daily dry matter increment (日干物质增量). Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Green leaf partitioning index (绿叶分配指数) Formula (LaTeX): PIGL=0.54-0.0046PDT\;(PDT<26),\quad1.4532e^{-0.0492PDT}\;(PDT\ge26) Formula: PIGL = if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT) ...
1
Subtraction and conversion
direct
{ "DTGA": 432.5, "RG": 115.5, "RM": 84.6, "b": 0.05 }
In a respiration, the Daily dry matter increment is computed as part of respiration modeling. With DTGA=432.5 kg/ha/day, RM=84.6 kg/ha/day, RG=115.5 kg/ha/day, b=0.05 fraction, determine the numeric value in kg/ha/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Daily dry matter increment. Use the verified formula: \[GCR=\frac{DTGA-RM-RG}{1-b}\] In calculation-friendly notation, this is: GCR = (DTGA - RM - RG) / (1 - b). Substitute the relevant values: DTGA=432.5 kg/ha/day, RM=84.6 kg/ha/day, RG=115.5 kg/ha/day, b=0.05 fraction. The computed val...
dev
Respiration
2
CMF041
1.30
cropmath-v1
{ "new_value": 0.55, "old_value": 0.5, "parameter": "beta" }
[ "CMF037", "CMF043" ]
{ "Cx": 583, "beta": 0.55 }
growth_yield
{ "expression": "1 + beta * ln(Cx / 340)", "id": "CMF029", "latex": "F_{CO2}=1+\\beta\\ln(C_x/340)", "name": "二氧化碳影响因子", "name_en": "CO2 response factor", "precision": 2, "unit": "multiplier" }
CMF029_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means...
Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: CO2 response factor (二氧化碳影响因子). Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
2
Logarithmic
sensitivity
{ "Cx": 583, "beta": 0.5 }
In photosynthesis, we analyze how CO2 response factor responds to parameter changes. Baseline: Cx=583.0 ppm, beta=0.5 dimensionless. After changing beta from 0.5 to 0.55, compute the new CO2 response factor. Give the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as CO2 response factor. Use the verified formula: \[F_{CO2}=1+\beta\ln(C_x/340)\] In calculation-friendly notation, this is: FCO2 = 1 + beta * ln(Cx / 340). Substitute the relevant values: Cx=583.0 ppm, beta=0.55 dimensionless. The computed value is 1.30 fraction. Therefore, the final numer...
dev
Photosynthesis
2
CMF037
1.00
cropmath-v1
null
[ "CMF034", "CMF030" ]
{ "GDD": 203.4, "LAI0": 0.279, "RP": 0.0063 }
growth_yield
{ "expression": "LAI0 * exp(RP * GDD)", "id": "CMF037", "latex": "LAI_P=LAI_0e^{RP\\cdot GDD}", "name": "潜在叶面积指数", "name_en": "Potential leaf area index", "precision": 2, "unit": "m2/m2" }
CMF037_direct_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Harvest index (收获指数) Formula (LaTeX): HI=\frac{Y_{grain}}{B_{above}} Formula: HI = Y_grain / B_above Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) m...
Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: m2/...
Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: m2/...
Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: m2/m2
Relevant formula name: Potential leaf area index (潜在叶面积指数). Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: m2/m2
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Harvest index (收获指数) Formula (LaTeX): HI=\frac{Y_{grain}}{B_{above}} Formula: HI = Y_grain / B_above Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
1
Exponential growth
direct
{ "GDD": 203.4, "LAI0": 0.279, "RP": 0.0063 }
Given LAI0=0.279 m2/m2, RP=0.0063 d-1, GDD=203.4 C day, calculate the Potential leaf area index for a leaf area growth. The result should be in m2/m2.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Potential leaf area index. Use the verified formula: \[LAI_P=LAI_0e^{RP\cdot GDD}\] In calculation-friendly notation, this is: LAIP = LAI0 * exp(RP * GDD). Substitute the relevant values: LAI0=0.279 m2/m2, RP=0.0063 d-1, GDD=203.4 C day. The computed value is 1.00 m2/m2. Therefore, the f...
dev
Leaf area growth
1
CMF034
12.52
cropmath-v1
null
[ "CMF053", "CMF038" ]
{ "PS": 0.246, "Po": 10.5 }
growth_yield
{ "expression": "Po + sqrt(1 / PS)", "id": "CMF040", "latex": "P_c=P_o+\\sqrt{1/PS}", "name": "临界日长", "name_en": "Critical daylength", "precision": 2, "unit": "h" }
CMF040_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Leaf area index from SLA (比叶面积法叶面积指数) Formula (LaTeX): LAI=SLA\cdot AWL Formula: LAI = SLA * AWL Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means...
Formula name: Critical daylength (临界日长) Formula (LaTeX): P_c=P_o+\sqrt{1/PS} Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h Parameters: - Po: optim...
Formula name: Critical daylength (临界日长) Formula (LaTeX): P_c=P_o+\sqrt{1/PS} Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h Parameters: - Po: optim...
Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h
Relevant formula name: Critical daylength (临界日长). Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Specific leaf area (比叶面积) Formula (LaTeX): SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200) Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Operator not...
1
Power response
direct
{ "PS": 0.246, "Po": 10.5 }
A phenology calculation estimates Critical daylength. The measured inputs are Po=10.5 h, PS=0.246 dimensionless. What is the critical daylength? Give the final numeric value in h.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Critical daylength. Use the verified formula: \[P_c=P_o+\sqrt{1/PS}\] In calculation-friendly notation, this is: Pc = Po + sqrt(1 / PS). Substitute the relevant values: Po=10.5 h, PS=0.246 dimensionless. The computed value is 12.52 h. Therefore, the final numeric answer is \boxed{12.52}....
dev
Phenology
0
CMF053
1.222
cropmath-v1
{ "new_value": 551, "old_value": 501, "parameter": "CO2" }
[ "CMF014", "CMF008" ]
{ "CO2": 551, "Coef_B_CO2": 0.46 }
carbon_nitrogen_cycle
{ "expression": "1 + Coef_B_CO2 * ln(CO2 / 340)", "id": "CMF001", "latex": "F_{CO2}=1+B\\ln(CO2/340)", "name": "作物二氧化碳施肥因子", "name_en": "carbon-nitrogen cycling CO2 fertilization factor", "precision": 3, "unit": "multiplier" }
CMF001_sensitivity_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplicatio...
Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smal...
Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smal...
Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子). Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_W...
2
Logarithmic
sensitivity
{ "CO2": 501, "Coef_B_CO2": 0.46 }
A carbon-nitrogen cycling photosynthesis calculation involves sensitivity analysis. The current measurements are CO2=501.0 ppm, Coef_B_CO2=0.46 dimensionless. A field technician asks what the carbon-nitrogen cycling co2 fertilization factor would become if CO2 changed to 551.0. Report the new final numeric value in fra...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling CO2 fertilization factor. Use the verified formula: \[F_{CO2}=1+B\ln(CO2/340)\] In calculation-friendly notation, this is: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340). Substitute the relevant values: CO2=551.0 ppm, Coef_B_CO2=0.46 dimensionless. The computed value is 1...
dev
carbon-nitrogen cycling photosynthesis
0
CMF014
0.802
cropmath-v1
{ "new_value": 33.3, "old_value": 29, "parameter": "Td" }
[ "CMF008", "CMF010" ]
{ "Coef_T_M": 0.13, "Td": 33.3, "Tmax_active": 42, "Tmin_active": 3, "Topt_active": 25 }
carbon_nitrogen_cycle
{ "expression": "if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M)", "id": "CMF013", "latex": "F_T=\\left(\\frac{T_d-T_{min}}{T_{opt}-T_{min}}\\right)^{1+M}\\left(\\frac{T_{max}-T_d}{T_{max}-T_{opt}...
CMF013_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^(...
Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M} Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^...
Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M} Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^...
Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max...
Relevant formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子). Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M) Operator notes: * means multiplication, / means...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/1...
3
Beta temperature response
sensitivity
{ "Coef_T_M": 0.13, "Td": 29, "Tmax_active": 42, "Tmin_active": 3, "Topt_active": 25 }
In carbon-nitrogen cycling stress, we analyze how carbon-nitrogen cycling crop temperature activity factor responds to parameter changes. Baseline: Td=29.0 C, Tmin_active=3.0 C, Topt_active=25.0 C, Tmax_active=42.0 C, Coef_T_M=0.13 dimensionless. After changing Td from 29.0 to 33.3, compute the new carbon-nitrogen cycl...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling crop temperature activity factor. Use the verified formula: \[F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M}\] In calculation-friendly notation, this is: F_T = if Td<=Tmin_active or Td>=Tmax_active:...
dev
carbon-nitrogen cycling stress
2
CMF008
0.265
cropmath-v1
null
[ "CMF036", "CMF050" ]
{ "BFF": 1.17, "DTE": 0.265, "IE": 0.85, "PDT": 18.9, "RPE": 0.6000000000000001 }
growth_yield
{ "expression": "if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0", "id": "CMF027", "latex": "DPE=DTE\\cdot IE,\\;DTE\\cdot RPE,\\;DTE,\\;DTE\\cdot BFF", "name": "每日生理效应", "name_en": "Daily physiological effectiveness", "precision": 3, "unit": "physiological days/day" }
CMF027_branch_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: physiological days/day
Relevant formula name: Daily physiological effectiveness (每日生理效应). Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the small...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Canopy extinction coefficient (冠层消光系数) Formula (LaTeX): K=0.0087PDT+0.2222 Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) me...
4
Stage-dependent product
branch
{ "BFF": 1.17, "DTE": 0.265, "IE": 0.85, "PDT": 18.9, "RPE": 0.6000000000000001 }
For phenology, compute the Daily physiological effectiveness. The inputs are PDT=18.9 physiological days, DTE=0.265 fraction, IE=0.85 dimensionless, RPE=0.6 fraction, BFF=1.17 dimensionless. Note that this formula uses piecewise logic depending on parameter values. Report the final numeric value in physiological days/d...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Daily physiological effectiveness. Use the verified formula: \[DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF\] In calculation-friendly notation, this is: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0. Substitute the relevant values: PDT=18....
dev
Phenology
1
CMF036
0.687
cropmath-v1
null
[ "CMF023", "CMF020" ]
{ "WaterC": 0.617 }
methane_emission
{ "expression": "0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2)", "id": "CMF025", "latex": "WI=0.49e^{3.88W_c-5.4W_c^2}", "name": "水分分解因子", "name_en": "Water-content decomposition factor", "precision": 3, "unit": "fraction" }
CMF025_direct_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ ...
Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/l...
Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/l...
Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Water-content decomposition factor (水分分解因子). Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means powe...
1
Exponential quadratic
direct
{ "WaterC": 0.617 }
Given WaterC=0.617 fraction, calculate the Water-content decomposition factor for a methane. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Water-content decomposition factor. Use the verified formula: \[WI=0.49e^{3.88W_c-5.4W_c^2}\] In calculation-friendly notation, this is: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2). Substitute the relevant values: WaterC=0.617 fraction. The computed value is 0.687 fraction. Therefore...
dev
Methane
1
CMF023
0.329
cropmath-v1
null
[ "CMF025", "CMF023" ]
{ "CH4RiceEfC": 0.39, "W": 5043, "Wmax": 10266 }
methane_emission
{ "expression": "CH4RiceEfC * (1 - W / Wmax) ** 0.25", "id": "CMF019", "latex": "F_p=C(1-W/W_{max})^{0.25}", "name": "植株传输因子", "name_en": "Plant methane transport factor", "precision": 3, "unit": "fraction" }
CMF019_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ ...
Formula name: Plant methane transport factor (植株传输因子) Formula (LaTeX): F_p=C(1-W/W_{max})^{0.25} Formula: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. ...
Formula name: Plant methane transport factor (植株传输因子) Formula (LaTeX): F_p=C(1-W/W_{max})^{0.25} Formula: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. ...
Formula: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Plant methane transport factor (植株传输因子). Formula: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means divi...
1
Power attenuation
direct
{ "CH4RiceEfC": 0.39, "W": 5043, "Wmax": 10266 }
A methane calculation estimates Plant methane transport factor. The measured inputs are CH4RiceEfC=0.39 fraction, W=5043.0 kg/ha, Wmax=10266.0 kg/ha. What is the plant methane transport factor? Give the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Plant methane transport factor. Use the verified formula: \[F_p=C(1-W/W_{max})^{0.25}\] In calculation-friendly notation, this is: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25. Substitute the relevant values: CH4RiceEfC=0.39 fraction, W=5043.0 kg/ha, Wmax=10266.0 kg/ha. The computed value is...
dev
Methane
0
CMF025
1.000
cropmath-v1
null
[ "CMF023", "CMF016" ]
{ "Eh": -204.5 }
methane_emission
{ "expression": "if Eh<-150: 1; else: exp(-1.7*(1+Eh/150))", "id": "CMF018", "latex": "F_{Eh}=1\\;(Eh<-150),\\quad e^{-1.7(1+Eh/150)}", "name": "氧化还原电位因子", "name_en": "Redox potential factor", "precision": 3, "unit": "fraction" }
CMF018_direct_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane ebullition emission (甲烷冒泡排放) Formula (LaTeX): E_{bl}=\min(0.7\ln(t_{soil})/W_r,0.9)P Formula: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P Operator notes: * means multiplication, / me...
Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the sm...
Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the sm...
Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Redox potential factor (氧化还原电位因子). Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means powe...
2
Piecewise exponential
direct
{ "Eh": -204.5 }
Given Eh=-204.5 mV, calculate the Redox potential factor for a methane. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Redox potential factor. Use the verified formula: \[F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)}\] In calculation-friendly notation, this is: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)). Substitute the relevant values: Eh=-204.5 mV. The computed value is 1.000 fraction. Therefore, th...
dev
Methane
1
CMF023
0.637
cropmath-v1
null
[ "CMF058", "CMF060" ]
{ "I50A": 483.6, "I50B": 435.8, "TT": 912.5, "Tsum": 2171, "fSolarMax": 0.9500000000000001, "fSolar_water": 0.68 }
environmental_response
{ "expression": "min(fSolarMax/(1+exp(-0.01*(TT-I50A))), fSolarMax/(1+exp(0.01*(TT-(Tsum-I50B))))) * min(fSolar_water, 1)", "id": "CMF059", "latex": "fSolar=\\min(f_1,f_2)F_{solar,water}", "name": "环境响应光截获比例", "name_en": "environmental-response solar interception fraction", "precision": 3, "unit": "fracti...
CMF059_chain_2_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0;...
Formula name: environmental-response solar interception fraction (环境响应光截获比例) Formula (LaTeX): fSolar=\min(f_1,f_2)F_{solar,water} Formula: fSolar = min(fSolarMax/(1+exp(-0.01*(TT-I50A))), fSolarMax/(1+exp(0.01*(TT-(Tsum-I50B))))) * min(fSolar_water, 1) Operator notes: * means multiplication, / means division, ** or ^ m...
Formula name: environmental-response solar interception fraction (环境响应光截获比例) Formula (LaTeX): fSolar=\min(f_1,f_2)F_{solar,water} Formula: fSolar = min(fSolarMax/(1+exp(-0.01*(TT-I50A))), fSolarMax/(1+exp(0.01*(TT-(Tsum-I50B))))) * min(fSolar_water, 1) Operator notes: * means multiplication, / means division, ** or ^ m...
Formula: fSolar = min(fSolarMax/(1+exp(-0.01*(TT-I50A))), fSolarMax/(1+exp(0.01*(TT-(Tsum-I50B))))) * min(fSolar_water, 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: environmental-response solar interception fraction (环境响应光截获比例). Formula: fSolar = min(fSolarMax/(1+exp(-0.01*(TT-I50A))), fSolarMax/(1+exp(0.01*(TT-(Tsum-I50B))))) * min(fSolar_water, 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means n...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max...
4
Double logistic
chain_2
{ "I50A": 483.6, "I50B": 435.8, "TT": 912.5, "Tsum": 2171, "fSolarMax": 0.9500000000000001, "fSolar_water": 0.68 }
Given fSolarMax=0.95 fraction, TT=912.5 C day, I50A=483.6 C day, I50B=435.8 C day, Tsum=2171.0 C day, fSolar_water=0.68 fraction, compute environmental-response solar interception fraction in environmental-response formula system. This requires sequential calculation through intermediate variables. Report the final num...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response solar interception fraction. Use the verified formula: \[fSolar=\min(f_1,f_2)F_{solar,water}\] In calculation-friendly notation, this is: fSolar = min(fSolarMax/(1+exp(-0.01*(TT-I50A))), fSolarMax/(1+exp(0.01*(TT-(Tsum-I50B))))) * min(fSolar_water, 1). Substitute t...
dev
environmental-response formula system
1
CMF058
0.007
cropmath-v1
{ "new_value": 36, "old_value": 32.3, "parameter": "t_soil" }
[ "CMF025", "CMF022" ]
{ "P": 2.174, "Wr": 735.6, "t_soil": 36 }
methane_emission
{ "expression": "min(0.7 * ln(t_soil) / Wr, 0.9) * P", "id": "CMF016", "latex": "E_{bl}=\\min(0.7\\ln(t_{soil})/W_r,0.9)P", "name": "甲烷冒泡排放", "name_en": "Methane ebullition emission", "precision": 3, "unit": "g CH4/m2/day" }
CMF016_sensitivity_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane ebullition emission (甲烷冒泡排放) Formula (LaTeX): E_{bl}=\min(0.7\ln(t_{soil})/W_r,0.9)P Formula: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P Operator notes: * means multiplication, / me...
Formula name: Methane ebullition emission (甲烷冒泡排放) Formula (LaTeX): E_{bl}=\min(0.7\ln(t_{soil})/W_r,0.9)P Formula: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/lar...
Formula name: Methane ebullition emission (甲烷冒泡排放) Formula (LaTeX): E_{bl}=\min(0.7\ln(t_{soil})/W_r,0.9)P Formula: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/lar...
Formula: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
Relevant formula name: Methane ebullition emission (甲烷冒泡排放). Formula: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means divi...
2
Logarithmic minimum
sensitivity
{ "P": 2.174, "Wr": 735.6, "t_soil": 32.3 }
In methane, we analyze how Methane ebullition emission responds to parameter changes. Baseline: P=2.174 g CH4/m2/day, t_soil=32.3 C, Wr=735.6 kg/ha. After changing t_soil from 32.3 to 36.0, compute the new Methane ebullition emission. Give the numeric value in g CH4/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Methane ebullition emission. Use the verified formula: \[E_{bl}=\min(0.7\ln(t_{soil})/W_r,0.9)P\] In calculation-friendly notation, this is: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P. Substitute the relevant values: P=2.174 g CH4/m2/day, t_soil=36.0 C, Wr=735.6 kg/ha. The computed value ...
dev
Methane
2
CMF025
1.898
cropmath-v1
null
[ "CMF001", "CMF008" ]
{ "Day_Length_hour": 15.26, "F_CO2": 1.25, "F_T": 0.73, "F_Water": 0.49, "Photo_Rate_opt": 6.44 }
carbon_nitrogen_cycle
{ "expression": "Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432", "id": "CMF002", "latex": "GPP=P_{opt}F_TF_WF_{CO2}DL\\cdot0.0432", "name": "总初级生产力", "name_en": "carbon-nitrogen cycling gross primary production", "precision": 3, "unit": "g C/m2/day" }
CMF002_direct_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplicatio...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling gross primary production (总初级生产力). Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smalle...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means...
2
Multiplicative conversion
direct
{ "Day_Length_hour": 15.26, "F_CO2": 1.25, "F_T": 0.73, "F_Water": 0.49, "Photo_Rate_opt": 6.44 }
A carbon-nitrogen cycling photosynthesis calculation estimates carbon-nitrogen cycling gross primary production. The measured inputs are Photo_Rate_opt=6.44 umol CO2/m2/s, F_T=0.73 fraction, F_Water=0.49 fraction, F_CO2=1.25 fraction, Day_Length_hour=15.26 h. What is the carbon-nitrogen cycling gross primary production...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling gross primary production. Use the verified formula: \[GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432\] In calculation-friendly notation, this is: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432. Substitute the relevant values: Photo_Rate_opt=6.44 um...
dev
carbon-nitrogen cycling photosynthesis
0
CMF001
195.60
cropmath-v1
null
[ "CMF037", "CMF047" ]
{ "DTGA": 489, "Rg": 0.4 }
growth_yield
{ "expression": "Rg * DTGA", "id": "CMF046", "latex": "RG=R_g\\cdot DTGA", "name": "生长呼吸", "name_en": "Growth respiration", "precision": 2, "unit": "kg/ha/day" }
CMF046_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) m...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: Growth respiration (生长呼吸). Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
1
Product
direct
{ "DTGA": 489, "Rg": 0.4 }
In a respiration, the Growth respiration is computed as part of respiration modeling. With Rg=0.4 fraction, DTGA=489.0 kg/ha/day, determine the numeric value in kg/ha/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Growth respiration. Use the verified formula: \[RG=R_g\cdot DTGA\] In calculation-friendly notation, this is: RG = Rg * DTGA. Substitute the relevant values: Rg=0.4 fraction, DTGA=489.0 kg/ha/day. The computed value is 195.60 kg/ha/day. Therefore, the final numeric answer is \boxed{195.6...
dev
Respiration
2
CMF037
20.022
cropmath-v1
{ "new_value": 3240.2, "old_value": 3600.2, "parameter": "W" }
[ "CMF022", "CMF018" ]
{ "SI": 0.65, "VI": 0.7000000000000001, "W": 3240.2 }
methane_emission
{ "expression": "0.0018 * VI * SI * W ** 1.25", "id": "CMF015", "latex": "C_r=0.0018VI\\cdot SI\\cdot W^{1.25}", "name": "根系分泌碳底物", "name_en": "Root-exudate carbon substrate", "precision": 3, "unit": "g C/m2/day" }
CMF015_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplicat...
Formula name: Root-exudate carbon substrate (根系分泌碳底物) Formula (LaTeX): C_r=0.0018VI\cdot SI\cdot W^{1.25} Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value...
Formula name: Root-exudate carbon substrate (根系分泌碳底物) Formula (LaTeX): C_r=0.0018VI\cdot SI\cdot W^{1.25} Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value...
Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: Root-exudate carbon substrate (根系分泌碳底物). Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ ...
2
Power product
sensitivity
{ "SI": 0.65, "VI": 0.7000000000000001, "W": 3600.2 }
In methane, we analyze how Root-exudate carbon substrate responds to parameter changes. Baseline: VI=0.7 fraction, SI=0.65 fraction, W=3600.2 kg/ha. After changing W from 3600.2 to 3240.2, compute the new Root-exudate carbon substrate. Give the numeric value in g C/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Root-exudate carbon substrate. Use the verified formula: \[C_r=0.0018VI\cdot SI\cdot W^{1.25}\] In calculation-friendly notation, this is: Cr = 0.0018 * VI * SI * W ** 1.25. Substitute the relevant values: VI=0.7 fraction, SI=0.65 fraction, W=3240.2 kg/ha. The computed value is 20.022 g ...
dev
Methane
2
CMF022
0.580
cropmath-v1
{ "new_value": 13.5, "old_value": 11.7, "parameter": "Tmn" }
[ "CMF012", "CMF006" ]
{ "Biom_plant_yesterday": 279.1, "Coef_Rm": 0.002, "DVI": 0.51, "Tmn": 13.5 }
carbon_nitrogen_cycle
{ "expression": "0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1)", "id": "CMF008", "latex": "R_m=0.0432\\cdot24(Biom/0.45)C_m2^{(T-25)/10}", "name": "植株维持呼吸", "name_en": "carbon-nitrogen cycling plant maintenance respiration", "precision": 3, "unit": "g C/m2/day"...
CMF008_sensitivity_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling soil carbon water factor (土壤碳分解水分因子) Formula (LaTeX): F_W=0.49e^{3.88W-5.4W^2} Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Wa...
Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means powe...
Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means powe...
Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸). Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling soil carbon water factor (土壤碳分解水分因子) Formula (LaTeX): F_W=0.49e^{3.88W-5.4W^2} Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5....
3
Q10 with DVI correction
sensitivity
{ "Biom_plant_yesterday": 279.1, "Coef_Rm": 0.002, "DVI": 0.51, "Tmn": 11.7 }
Given current measurements Biom_plant_yesterday=279.1 g C/m2, Coef_Rm=0.002 g C/g C/s, Tmn=11.7 C, DVI=0.51 dimensionless in carbon-nitrogen cycling respiration, what would the carbon-nitrogen cycling plant maintenance respiration be if Tmn were adjusted to 13.5? Provide the numeric value in g C/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling plant maintenance respiration. Use the verified formula: \[R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10}\] In calculation-friendly notation, this is: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1). Substitute the rel...
dev
carbon-nitrogen cycling respiration
1
CMF012
1.00
cropmath-v1
null
[ "CMF028", "CMF038" ]
{ "T": 30.6, "Tb": 10, "Tmax": 45, "Tol": 24, "Tou": 34 }
growth_yield
{ "expression": "if Tb<=T<Tol: sin(pi/2*(T-Tb)/(Tol-Tb)); if Tol<=T<Tou: 1; if Tou<=T<Tmax: cos(pi/2*(T-Tou)/(Tmax-Tou)); else: 0", "id": "CMF032", "latex": "F_T=\\sin(\\frac{T-T_b}{T_{ol}-T_b}\\frac{\\pi}{2}); 1; \\cos(\\frac{T-T_{ou}}{T_{max}-T_{ou}}\\frac{\\pi}{2})", "name": "温度响应因子", "name_en": "Temperatu...
CMF032_branch_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Temperature response factor (温度响应因子) Formula (LaTeX): F_T=\sin(\frac{T-T_b}{T_{ol}-T_b}\frac{\pi}{2}); 1; \cos(\frac{T-T_{ou}}{T_{max}-T_{ou}}\frac{\pi}{2}) Formula: F_T = if Tb<=T<Tol: si...
Formula name: Temperature response factor (温度响应因子) Formula (LaTeX): F_T=\sin(\frac{T-T_b}{T_{ol}-T_b}\frac{\pi}{2}); 1; \cos(\frac{T-T_{ou}}{T_{max}-T_{ou}}\frac{\pi}{2}) Formula: F_T = if Tb<=T<Tol: sin(pi/2*(T-Tb)/(Tol-Tb)); if Tol<=T<Tou: 1; if Tou<=T<Tmax: cos(pi/2*(T-Tou)/(Tmax-Tou)); else: 0 Operator notes: * mea...
Formula name: Temperature response factor (温度响应因子) Formula (LaTeX): F_T=\sin(\frac{T-T_b}{T_{ol}-T_b}\frac{\pi}{2}); 1; \cos(\frac{T-T_{ou}}{T_{max}-T_{ou}}\frac{\pi}{2}) Formula: F_T = if Tb<=T<Tol: sin(pi/2*(T-Tb)/(Tol-Tb)); if Tol<=T<Tou: 1; if Tou<=T<Tmax: cos(pi/2*(T-Tou)/(Tmax-Tou)); else: 0 Operator notes: * mea...
Formula: F_T = if Tb<=T<Tol: sin(pi/2*(T-Tb)/(Tol-Tb)); if Tol<=T<Tou: 1; if Tou<=T<Tmax: cos(pi/2*(T-Tou)/(Tmax-Tou)); else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fracti...
Relevant formula name: Temperature response factor (温度响应因子). Formula: F_T = if Tb<=T<Tol: sin(pi/2*(T-Tb)/(Tol-Tb)); if Tol<=T<Tou: 1; if Tou<=T<Tmax: cos(pi/2*(T-Tou)/(Tmax-Tou)); else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Emergence thermal requirement (出苗热量需求) Formula (LaTeX): EMGDD=45+7SDEPTH Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means ...
4
Piecewise trigonometric
branch
{ "T": 30.6, "Tb": 10, "Tmax": 45, "Tol": 24, "Tou": 34 }
Calculate Temperature response factor in temperature response with these inputs: T=30.6 C, Tb=10.0 C, Tol=24.0 C, Tou=34.0 C, Tmax=45.0 C. The computation may follow different paths based on piecewise thresholds. Give the numeric result in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Temperature response factor. Use the verified formula: \[F_T=\sin(\frac{T-T_b}{T_{ol}-T_b}\frac{\pi}{2}); 1; \cos(\frac{T-T_{ou}}{T_{max}-T_{ou}}\frac{\pi}{2})\] In calculation-friendly notation, this is: F_T = if Tb<=T<Tol: sin(pi/2*(T-Tb)/(Tol-Tb)); if Tol<=T<Tou: 1; if Tou<=T<Tmax: co...
dev
Temperature response
2
CMF028
1.00
cropmath-v1
null
[ "CMF048", "CMF043" ]
{ "P": 10.17, "PS": 0.121, "Po": 10.5 }
growth_yield
{ "expression": "if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0", "id": "CMF050", "latex": "RPE=1,\\;1-PS(P-P_o)^2,\\;0", "name": "相对光周期效应", "name_en": "Relative photoperiod effectiveness", "precision": 2, "unit": "fraction" }
CMF050_chain_2_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Relative photoperiod effectiveness (相对光周期效应) Formula (LaTeX): RPE=1,\;1-PS(P-P_o)^2,\;0 Formula: RPE = if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0 Operator notes: * means mult...
Formula name: Relative photoperiod effectiveness (相对光周期效应) Formula (LaTeX): RPE=1,\;1-PS(P-P_o)^2,\;0 Formula: RPE = if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select...
Formula name: Relative photoperiod effectiveness (相对光周期效应) Formula (LaTeX): RPE=1,\;1-PS(P-P_o)^2,\;0 Formula: RPE = if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select...
Formula: RPE = if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Relative photoperiod effectiveness (相对光周期效应). Formula: RPE = if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes:...
4
Piecewise quadratic
chain_2
{ "P": 10.17, "PS": 0.121, "Po": 10.5 }
Given P=10.17 h, Po=10.5 h, PS=0.121 dimensionless, compute Relative photoperiod effectiveness in phenology. This requires sequential calculation through intermediate variables. Report the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Relative photoperiod effectiveness. Use the verified formula: \[RPE=1,\;1-PS(P-P_o)^2,\;0\] In calculation-friendly notation, this is: RPE = if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0. Substitute the relevant values: P=10.17 h, Po=10.5 h, PS=0.121 dimensionless. The compute...
dev
Phenology
1
CMF048
0.196
cropmath-v1
null
[ "CMF005", "CMF007" ]
{ "Coef_Plant_TN_uptake": 0.058, "DVI": 0.29, "NPP": 13.98, "N_requirement_max_day": 1.44, "N_shoot": 4.79, "Ratio_N_C_photo_product": 0.014 }
carbon_nitrogen_cycle
{ "expression": "if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_uptake*N_shoot; else: min(N_requirement_max_day, Ratio_N_C_photo_product*NPP)", "id": "CMF004", "latex": "N_d=C_uN_{shoot}\\;\\text{or}\\;\\min(N_{max},r_NNPP)", "name": "作物需氮量", "name_en": "carbon-nitrogen cycling crop nitrogen demand", ...
CMF004_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量) Formula (LaTeX): N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}} Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Bio...
Formula name: carbon-nitrogen cycling crop nitrogen demand (作物需氮量) Formula (LaTeX): N_d=C_uN_{shoot}\;\text{or}\;\min(N_{max},r_NNPP) Formula: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_uptake*N_shoot; else: min(N_requirement_max_day, Ratio_N_C_photo_product*NPP) Operator notes: * means multiplic...
Formula name: carbon-nitrogen cycling crop nitrogen demand (作物需氮量) Formula (LaTeX): N_d=C_uN_{shoot}\;\text{or}\;\min(N_{max},r_NNPP) Formula: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_uptake*N_shoot; else: min(N_requirement_max_day, Ratio_N_C_photo_product*NPP) Operator notes: * means multiplic...
Formula: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_uptake*N_shoot; else: min(N_requirement_max_day, Ratio_N_C_photo_product*NPP) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger v...
Relevant formula name: carbon-nitrogen cycling crop nitrogen demand (作物需氮量). Formula: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_uptake*N_shoot; else: min(N_requirement_max_day, Ratio_N_C_photo_product*NPP) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) mean...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量) Formula (LaTeX): N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}} Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Biom_shoot + ...
3
Piecewise minimum
direct
{ "Coef_Plant_TN_uptake": 0.058, "DVI": 0.29, "NPP": 13.98, "N_requirement_max_day": 1.44, "N_shoot": 4.79, "Ratio_N_C_photo_product": 0.014 }
A carbon-nitrogen cycling nitrogen calculation estimates carbon-nitrogen cycling crop nitrogen demand. The measured inputs are N_shoot=4.79 g N/m2, Coef_Plant_TN_uptake=0.058 d-1, N_requirement_max_day=1.44 g N/m2/day, NPP=13.98 g C/m2/day, Ratio_N_C_photo_product=0.014 g N/g C, DVI=0.29 dimensionless. What is the carb...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling crop nitrogen demand. Use the verified formula: \[N_d=C_uN_{shoot}\;\text{or}\;\min(N_{max},r_NNPP)\] In calculation-friendly notation, this is: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_uptake*N_shoot; else: min(N_requirement_max_day, Rati...
dev
carbon-nitrogen cycling nitrogen
0
CMF005
1.028
cropmath-v1
null
[ "CMF011", "CMF003" ]
{ "Coef_T_M": 0.52, "Td": 25.7, "Tmax_active": 42, "Tmin_active": 3, "Topt_active": 25 }
carbon_nitrogen_cycle
{ "expression": "if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M)", "id": "CMF013", "latex": "F_T=\\left(\\frac{T_d-T_{min}}{T_{opt}-T_{min}}\\right)^{1+M}\\left(\\frac{T_{max}-T_d}{T_{max}-T_{opt}...
CMF013_branch_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling soil carbon temperature factor (土壤碳分解温度因子) Formula (LaTeX): F_T=2.4^{(T_{soil}-10)/10}\;\text{where}\;T_{soil}=T\;\text{or}\;4.4+0.76T Formula: F_T_soil = if is_soi...
Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M} Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^...
Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M} Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^...
Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max...
Relevant formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子). Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M) Operator notes: * means multiplication, / means...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling soil carbon temperature factor (土壤碳分解温度因子) Formula (LaTeX): F_T=2.4^{(T_{soil}-10)/10}\;\text{where}\;T_{soil}=T\;\text{or}\;4.4+0.76T Formula: F_T_soil = if is_soil_temp>=0....
4
Beta temperature response
branch
{ "Coef_T_M": 0.52, "Td": 25.7, "Tmax_active": 42, "Tmin_active": 3, "Topt_active": 25 }
For carbon-nitrogen cycling stress, compute the carbon-nitrogen cycling crop temperature activity factor. The inputs are Td=25.7 C, Tmin_active=3.0 C, Topt_active=25.0 C, Tmax_active=42.0 C, Coef_T_M=0.52 dimensionless. Note that this formula uses piecewise logic depending on parameter values. Report the final numeric ...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling crop temperature activity factor. Use the verified formula: \[F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M}\] In calculation-friendly notation, this is: F_T = if Td<=Tmin_active or Td>=Tmax_active:...
dev
carbon-nitrogen cycling stress
1
CMF011
0.278
cropmath-v1
null
[ "CMF055", "CMF058" ]
{ "Tbase": 6.6, "Tmean": 12.5, "Topt": 27.8 }
environmental_response
{ "expression": "if Tmean>=Topt: 1; else: max((Tmean-Tbase)/(Topt-Tbase), 0)", "id": "CMF060", "latex": "F_T=1\\;\\text{or}\\;\\max((T-T_b)/(T_o-T_b),0)", "name": "环境响应温度响应", "name_en": "environmental-response temperature response", "precision": 3, "unit": "fraction" }
CMF060_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0;...
Formula name: environmental-response temperature response (环境响应温度响应) Formula (LaTeX): F_T=1\;\text{or}\;\max((T-T_b)/(T_o-T_b),0) Formula: F_Temp = if Tmean>=Topt: 1; else: max((Tmean-Tbase)/(Topt-Tbase), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula name: environmental-response temperature response (环境响应温度响应) Formula (LaTeX): F_T=1\;\text{or}\;\max((T-T_b)/(T_o-T_b),0) Formula: F_Temp = if Tmean>=Topt: 1; else: max((Tmean-Tbase)/(Topt-Tbase), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula: F_Temp = if Tmean>=Topt: 1; else: max((Tmean-Tbase)/(Topt-Tbase), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: environmental-response temperature response (环境响应温度响应). Formula: F_Temp = if Tmean>=Topt: 1; else: max((Tmean-Tbase)/(Topt-Tbase), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larg...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_...
2
Piecewise linear
direct
{ "Tbase": 6.6, "Tmean": 12.5, "Topt": 27.8 }
In an environmental-response formula system, the environmental-response temperature response is computed as part of environmental-response formula calculation. With Tmean=12.5 C, Tbase=6.6 C, Topt=27.8 C, determine the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response temperature response. Use the verified formula: \[F_T=1\;\text{or}\;\max((T-T_b)/(T_o-T_b),0)\] In calculation-friendly notation, this is: F_Temp = if Tmean>=Topt: 1; else: max((Tmean-Tbase)/(Topt-Tbase), 0). Substitute the relevant values: Tmean=12.5 C, Tbase=6.6 ...
dev
environmental-response formula system
2
CMF055
0.0020
cropmath-v1
{ "new_value": 0.45, "old_value": 0.5, "parameter": "NNI" }
[ "CMF037", "CMF041" ]
{ "NNI": 0.45, "RP": 0.0044, "WDF": 0.92 }
growth_yield
{ "expression": "RP * min(NNI, WDF)", "id": "CMF052", "latex": "R=RP\\cdot\\min(NNI,WDF)", "name": "实际叶面积相对增长率", "name_en": "Actual LAI relative growth rate", "precision": 4, "unit": "d-1" }
CMF052_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Green leaf partitioning index (绿叶分配指数) Formula (LaTeX): PIGL=0.54-0.0046PDT\;(PDT<26),\quad1.4532e^{-0.0492PDT}\;(PDT\ge26) Formula: PIGL = if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0....
Formula name: Actual LAI relative growth rate (实际叶面积相对增长率) Formula (LaTeX): R=RP\cdot\min(NNI,WDF) Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: d-1...
Formula name: Actual LAI relative growth rate (实际叶面积相对增长率) Formula (LaTeX): R=RP\cdot\min(NNI,WDF) Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: d-1...
Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: d-1
Relevant formula name: Actual LAI relative growth rate (实际叶面积相对增长率). Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: d-1
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
2
Minimum stress multiplier
sensitivity
{ "NNI": 0.5, "RP": 0.0044, "WDF": 0.92 }
In leaf area growth, we analyze how Actual LAI relative growth rate responds to parameter changes. Baseline: RP=0.0044 d-1, NNI=0.5 fraction, WDF=0.92 fraction. After changing NNI from 0.5 to 0.45, compute the new Actual LAI relative growth rate. Give the numeric value in d-1.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Actual LAI relative growth rate. Use the verified formula: \[R=RP\cdot\min(NNI,WDF)\] In calculation-friendly notation, this is: R = RP * min(NNI, WDF). Substitute the relevant values: RP=0.0044 d-1, NNI=0.45 fraction, WDF=0.92 fraction. The computed value is 0.0020 d-1. Therefore, the f...
dev
Leaf area growth
2
CMF037
0.867
cropmath-v1
null
[ "CMF004", "CMF005" ]
{ "Crop_Water_max": 0.42, "Crop_Water_min": 0.22, "Soil_Water": 0.5740000000000001, "Wilt_point": 0.08 }
carbon_nitrogen_cycle
{ "expression": "if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max))", "id": "CMF014", "latex": "F_W=f(\\theta,\\theta_{wp},\\theta_{min},\\theta_{max})", "name": "作物水分胁迫...
CMF014_branch_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling crop nitrogen demand (作物需氮量) Formula (LaTeX): N_d=C_uN_{shoot}\;\text{or}\;\min(N_{max},r_NNPP) Formula: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Pl...
Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1...
Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1...
Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) mean...
Relevant formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子). Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max)) Operator notes: * means...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling crop nitrogen demand (作物需氮量) Formula (LaTeX): N_d=C_uN_{shoot}\;\text{or}\;\min(N_{max},r_NNPP) Formula: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_upt...
4
Piecewise water response
branch
{ "Crop_Water_max": 0.42, "Crop_Water_min": 0.22, "Soil_Water": 0.5740000000000001, "Wilt_point": 0.08 }
Calculate carbon-nitrogen cycling crop water stress factor in carbon-nitrogen cycling water with these inputs: Soil_Water=0.574 cm3/cm3, Crop_Water_max=0.42 cm3/cm3, Crop_Water_min=0.22 cm3/cm3, Wilt_point=0.08 cm3/cm3. The computation may follow different paths based on piecewise thresholds. Give the numeric result in...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling crop water stress factor. Use the verified formula: \[F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max})\] In calculation-friendly notation, this is: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wil...
dev
carbon-nitrogen cycling water
2
CMF004
0.999
cropmath-v1
null
[ "CMF007", "CMF014" ]
{ "pH": 7.85 }
carbon_nitrogen_cycle
{ "expression": "1 / (1 + exp(2.5 * (5 - pH)))", "id": "CMF010", "latex": "F_{pH}=\\frac{1}{1+e^{2.5(5-pH)}}", "name": "土壤pH分解因子", "name_en": "carbon-nitrogen cycling soil pH decomposition factor", "precision": 3, "unit": "fraction" }
CMF010_direct_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling soil pH decomposition factor (土壤pH分解因子) Formula (LaTeX): F_{pH}=\frac{1}{1+e^{2.5(5-pH)}} Formula: F_pH = 1 / (1 + exp(2.5 * (5 - pH))) Operator notes: * means mult...
Formula name: carbon-nitrogen cycling soil pH decomposition factor (土壤pH分解因子) Formula (LaTeX): F_{pH}=\frac{1}{1+e^{2.5(5-pH)}} Formula: F_pH = 1 / (1 + exp(2.5 * (5 - pH))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select...
Formula name: carbon-nitrogen cycling soil pH decomposition factor (土壤pH分解因子) Formula (LaTeX): F_{pH}=\frac{1}{1+e^{2.5(5-pH)}} Formula: F_pH = 1 / (1 + exp(2.5 * (5 - pH))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select...
Formula: F_pH = 1 / (1 + exp(2.5 * (5 - pH))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: carbon-nitrogen cycling soil pH decomposition factor (土壤pH分解因子). Formula: F_pH = 1 / (1 + exp(2.5 * (5 - pH))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling optimal photosynthetic rate (最适光合速率) Formula (LaTeX): P_{opt}=\alpha N_{leaf}\frac{PAR}{PAR+\beta} Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta) Op...
1
Logistic
direct
{ "pH": 7.85 }
A carbon-nitrogen cycling soil carbon calculation estimates carbon-nitrogen cycling soil pH decomposition factor. The measured inputs are pH=7.85 pH. What is the carbon-nitrogen cycling soil ph decomposition factor? Give the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling soil pH decomposition factor. Use the verified formula: \[F_{pH}=\frac{1}{1+e^{2.5(5-pH)}}\] In calculation-friendly notation, this is: F_pH = 1 / (1 + exp(2.5 * (5 - pH))). Substitute the relevant values: pH=7.85 pH. The computed value is 0.999 fraction. Therefor...
dev
carbon-nitrogen cycling soil carbon
0
CMF007
83.94
cropmath-v1
{ "new_value": 299.8, "old_value": 260.7, "parameter": "DTGA" }
[ "CMF035", "CMF049" ]
{ "DTGA": 299.8, "Rg": 0.28 }
growth_yield
{ "expression": "Rg * DTGA", "id": "CMF046", "latex": "RG=R_g\\cdot DTGA", "name": "生长呼吸", "name_en": "Growth respiration", "precision": 2, "unit": "kg/ha/day" }
CMF046_sensitivity_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Maintenance respiration coefficient at optimum temperature (最适温度维持呼吸系数) Formula (LaTeX): RM(T_o)=0.0091-0.0001PDT Formula: RMTo = 0.0091 - 0.0001 * PDT Operator notes: * means multiplicati...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: Growth respiration (生长呼吸). Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: High-temperature fertility factor (高温结实因子) Formula (LaTeX): HTF=\frac{1}{1+e^{0.853(T_m-36.6)}} Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator no...
2
Product
sensitivity
{ "DTGA": 260.7, "Rg": 0.28 }
Given current measurements Rg=0.28 fraction, DTGA=260.7 kg/ha/day in respiration, what would the Growth respiration be if DTGA were adjusted to 299.8? Provide the numeric value in kg/ha/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Growth respiration. Use the verified formula: \[RG=R_g\cdot DTGA\] In calculation-friendly notation, this is: RG = Rg * DTGA. Substitute the relevant values: Rg=0.28 fraction, DTGA=299.8 kg/ha/day. The computed value is 83.94 kg/ha/day. Therefore, the final numeric answer is \boxed{83.94...
dev
Respiration
1
CMF035
0.960
cropmath-v1
null
[ "CMF047", "CMF027" ]
{ "T": 26.9, "TS": 1.35, "Tb": 10, "Tm": 42, "To": 30 }
growth_yield
{ "expression": "(((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS", "id": "CMF051", "latex": "RTE=\\left[\\frac{T-T_b}{T_o-T_b}\\left(\\frac{T_m-T}{T_m-T_o}\\right)^{(T_m-T_o)/(T_o-T_b)}\\right]^{TS}", "name": "相对热效应", "name_en": "Relative thermal effectiveness", "precision": 3...
CMF051_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Intercepted photosynthetically active radiation (截获光合有效辐射) Formula (LaTeX): IPAR = PAR \cdot (1 - e^{-k \cdot LAI}) Formula: IPAR = PAR * (1 - exp(-k * LAI)) Operator notes: * means multip...
Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division...
Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division...
Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Relative thermal effectiveness (相对热效应). Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larg...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Intercepted photosynthetically active radiation (截获光合有效辐射) Formula (LaTeX): IPAR = PAR \cdot (1 - e^{-k \cdot LAI}) Formula: IPAR = PAR * (1 - exp(-k * LAI)) Operator notes: * means multiplication, ...
2
Beta temperature response
direct
{ "T": 26.9, "TS": 1.35, "Tb": 10, "Tm": 42, "To": 30 }
Given T=26.9 C, Tb=10.0 C, To=30.0 C, Tm=42.0 C, TS=1.35 dimensionless, calculate the Relative thermal effectiveness for a phenology. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Relative thermal effectiveness. Use the verified formula: \[RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS}\] In calculation-friendly notation, this is: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** T...
dev
Phenology
1
CMF047
8.259
cropmath-v1
null
[ "CMF015", "CMF024" ]
{ "Com": 7.123, "Cr": 61.55, "FEh": 0.47800000000000004, "TI": 0.924 }
methane_emission
{ "expression": "max(0, 0.27 * FEh * (TI * Cr + Com))", "id": "CMF022", "latex": "P=\\max(0,0.27F_{Eh}(TI\\cdot C_r+Com))", "name": "甲烷产生量", "name_en": "Methane production", "precision": 3, "unit": "g CH4/m2/day" }
CMF022_direct_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Soil temperature from air temperature (土壤温度估算) Formula (LaTeX): T_{soil}=4.4+0.76T_{air} Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ...
Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. O...
Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. O...
Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
Relevant formula name: Methane production (甲烷产生量). Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Root-exudate carbon substrate (根系分泌碳底物) Formula (LaTeX): C_r=0.0018VI\cdot SI\cdot W^{1.25} Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means division, ** or...
1
Maximum with chained drivers
direct
{ "Com": 7.123, "Cr": 61.55, "FEh": 0.47800000000000004, "TI": 0.924 }
In a methane, the Methane production is computed as part of methane modeling. With FEh=0.478 fraction, TI=0.924 fraction, Cr=61.55 g C/m2/day, Com=7.123 g C/m2/day, determine the numeric value in g CH4/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Methane production. Use the verified formula: \[P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com))\] In calculation-friendly notation, this is: P = max(0, 0.27 * FEh * (TI * Cr + Com)). Substitute the relevant values: FEh=0.478 fraction, TI=0.924 fraction, Cr=61.55 g C/m2/day, Com=7.123 g C/m2/day. T...
dev
Methane
2
CMF015
0.326
cropmath-v1
null
[ "CMF015", "CMF024" ]
{ "Q10": 3.52, "t_soil": 21.1 }
methane_emission
{ "expression": "Q10^((min(t_soil,30)-30)/10)", "id": "CMF023", "latex": "TI=Q_{10}^{(t_{sl}-30)/10}", "name": "甲烷温度指数", "name_en": "Methane temperature index", "precision": 3, "unit": "multiplier" }
CMF023_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Root-exudate carbon substrate (根系分泌碳底物) Formula (LaTeX): C_r=0.0018VI\cdot SI\cdot W^{1.25} Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means divis...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Methane temperature index (甲烷温度指数). Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Root-exudate carbon substrate (根系分泌碳底物) Formula (LaTeX): C_r=0.0018VI\cdot SI\cdot W^{1.25} Formula: Cr = 0.0018 * VI * SI * W ** 1.25 Operator notes: * means multiplication, / means division, ** or...
1
Q10 with temperature clipping
direct
{ "Q10": 3.52, "t_soil": 21.1 }
In a methane, the Methane temperature index is computed as part of methane modeling. With Q10=3.52 dimensionless, t_soil=21.1 C, determine the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Methane temperature index. Use the verified formula: \[TI=Q_{10}^{(t_{sl}-30)/10}\] In calculation-friendly notation, this is: TI = Q10^((min(t_soil,30)-30)/10). Substitute the relevant values: Q10=3.52 dimensionless, t_soil=21.1 C. The computed value is 0.326 fraction. Therefore, the fi...
dev
Methane
2
CMF015
0.11
cropmath-v1
null
[ "CMF031", "CMF033" ]
{ "B_above": 17858, "PDT": 34.4, "Y_grain": 7851 }
growth_yield
{ "expression": "(Y_grain / B_above / 0.87) / (1 + exp(-0.2804 * (PDT - 39)))", "id": "CMF042", "latex": "PIP=\\frac{HI/0.87}{1+e^{-0.2804(PDT-39)}}", "name": "穗分配指数", "name_en": "Panicle partitioning index", "precision": 2, "unit": "fraction" }
CMF042_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ ...
Formula name: Panicle partitioning index (穗分配指数) Formula (LaTeX): PIP=\frac{HI/0.87}{1+e^{-0.2804(PDT-39)}} Formula: PIP = (Y_grain / B_above / 0.87) / (1 + exp(-0.2804 * (PDT - 39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/...
Formula name: Panicle partitioning index (穗分配指数) Formula (LaTeX): PIP=\frac{HI/0.87}{1+e^{-0.2804(PDT-39)}} Formula: PIP = (Y_grain / B_above / 0.87) / (1 + exp(-0.2804 * (PDT - 39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/...
Formula: PIP = (Y_grain / B_above / 0.87) / (1 + exp(-0.2804 * (PDT - 39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Panicle partitioning index (穗分配指数). Formula: PIP = (Y_grain / B_above / 0.87) / (1 + exp(-0.2804 * (PDT - 39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit:...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Light interception fraction (光能截获率) Formula (LaTeX): fPAR = 1 - e^{-k \cdot LAI} Formula: fPAR = 1 - exp(-k * LAI) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(...
1
Multi-step sigmoid
direct
{ "B_above": 17858, "PDT": 34.4, "Y_grain": 7851 }
Given Y_grain=7851.0 kg/ha, B_above=17858.0 kg/ha, PDT=34.4 physiological days, calculate the Panicle partitioning index for a dry matter partitioning. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Panicle partitioning index. Use the verified formula: \[PIP=\frac{HI/0.87}{1+e^{-0.2804(PDT-39)}}\] In calculation-friendly notation, this is: PIP = (Y_grain / B_above / 0.87) / (1 + exp(-0.2804 * (PDT - 39))). Substitute the relevant values: Y_grain=7851.0 kg/ha, B_above=17858.0 kg/ha, ...
dev
Dry matter partitioning
1
CMF031
0.00
cropmath-v1
null
[ "CMF061", "CMF057" ]
{ "Tbase": 6.8, "Tmean": 3 }
environmental_response
{ "expression": "max(Tmean - Tbase, 0)", "id": "CMF056", "latex": "dTT=\\max(T_{mean}-T_{base},0)", "name": "每日有效积温", "name_en": "environmental-response daily thermal time", "precision": 2, "unit": "C day" }
CMF056_branch_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response water stress response (环境响应水分响应) Formula (LaTeX): F_W=\max(0,1-S_WARID) Formula: F_Water = max(0, 1 - S_Water * ARID) Operator notes: * means multiplication, / means...
Formula name: environmental-response daily thermal time (每日有效积温) Formula (LaTeX): dTT=\max(T_{mean}-T_{base},0) Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value...
Formula name: environmental-response daily thermal time (每日有效积温) Formula (LaTeX): dTT=\max(T_{mean}-T_{base},0) Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value...
Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
Relevant formula name: environmental-response daily thermal time (每日有效积温). Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response water stress response (环境响应水分响应) Formula (LaTeX): F_W=\max(0,1-S_WARID) Formula: F_Water = max(0, 1 - S_Water * ARID) Operator notes: * means multiplication, / means division,...
3
Maximum linear
branch
{ "Tbase": 6.8, "Tmean": 3 }
Calculate environmental-response daily thermal time in environmental-response formula system with these inputs: Tmean=3.0 C, Tbase=6.8 C. The computation may follow different paths based on piecewise thresholds. Give the numeric result in C day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response daily thermal time. Use the verified formula: \[dTT=\max(T_{mean}-T_{base},0)\] In calculation-friendly notation, this is: dTT = max(Tmean - Tbase, 0). Substitute the relevant values: Tmean=3.0 C, Tbase=6.8 C. The computed value is 0.00 C day. Therefore, the final ...
dev
environmental-response formula system
2
CMF061
29.939
cropmath-v1
null
[ "CMF002", "CMF010" ]
{ "Coef_alfa": 27.9, "Coef_beta": 146.2, "Leaf_N": 1.58, "PAR": 309.5 }
carbon_nitrogen_cycle
{ "expression": "(Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta)", "id": "CMF007", "latex": "P_{opt}=\\alpha N_{leaf}\\frac{PAR}{PAR+\\beta}", "name": "最适光合速率", "name_en": "carbon-nitrogen cycling optimal photosynthetic rate", "precision": 3, "unit": "umol CO2/m2/s" }
CMF007_chain_2_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0...
Formula name: carbon-nitrogen cycling optimal photosynthetic rate (最适光合速率) Formula (LaTeX): P_{opt}=\alpha N_{leaf}\frac{PAR}{PAR+\beta} Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means n...
Formula name: carbon-nitrogen cycling optimal photosynthetic rate (最适光合速率) Formula (LaTeX): P_{opt}=\alpha N_{leaf}\frac{PAR}{PAR+\beta} Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means n...
Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: umol CO2/m2/s
Relevant formula name: carbon-nitrogen cycling optimal photosynthetic rate (最适光合速率). Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/lar...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Oper...
3
Michaelis-Menten response
chain_2
{ "Coef_alfa": 27.9, "Coef_beta": 146.2, "Leaf_N": 1.58, "PAR": 309.5 }
In carbon-nitrogen cycling photosynthesis, the carbon-nitrogen cycling optimal photosynthetic rate is obtained by chaining intermediate calculations. With inputs Coef_alfa=27.9 umol CO2/gN/s, Coef_beta=146.2 umol/m2/s, PAR=309.5 umol/m2/s, Leaf_N=1.58 gN/m2, determine the numeric value in umol CO2/m2/s.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling optimal photosynthetic rate. Use the verified formula: \[P_{opt}=\alpha N_{leaf}\frac{PAR}{PAR+\beta}\] In calculation-friendly notation, this is: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta). Substitute the relevant values: Coef_alfa=27.9 umol ...
dev
carbon-nitrogen cycling photosynthesis
2
CMF002
0.771
cropmath-v1
null
[ "CMF031", "CMF039" ]
{ "BFF": 1.19, "DTE": 0.771, "IE": 1.24, "PDT": 22.1, "RPE": 0.81 }
growth_yield
{ "expression": "if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0", "id": "CMF027", "latex": "DPE=DTE\\cdot IE,\\;DTE\\cdot RPE,\\;DTE,\\;DTE\\cdot BFF", "name": "每日生理效应", "name_en": "Daily physiological effectiveness", "precision": 3, "unit": "physiological days/day" }
CMF027_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Low-temperature fertility factor (低温结实因子) Formula (LaTeX): LTF=1-\frac{4.6+0.054Q_t^{1.56}}{100} Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator not...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: physiological days/day
Relevant formula name: Daily physiological effectiveness (每日生理效应). Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the small...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Light interception fraction (光能截获率) Formula (LaTeX): fPAR = 1 - e^{-k \cdot LAI} Formula: fPAR = 1 - exp(-k * LAI) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(...
2
Stage-dependent product
direct
{ "BFF": 1.19, "DTE": 0.771, "IE": 1.24, "PDT": 22.1, "RPE": 0.81 }
In a phenology, the Daily physiological effectiveness is computed as part of phenology modeling. With PDT=22.1 physiological days, DTE=0.771 fraction, IE=1.24 dimensionless, RPE=0.81 fraction, BFF=1.19 dimensionless, determine the numeric value in physiological days/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Daily physiological effectiveness. Use the verified formula: \[DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF\] In calculation-friendly notation, this is: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0. Substitute the relevant values: PDT=22....
dev
Phenology
2
CMF031
5.724
cropmath-v1
{ "new_value": 0.004, "old_value": 0.0037, "parameter": "Coef_Rm" }
[ "CMF013", "CMF002" ]
{ "Biom_plant_yesterday": 941.4, "Coef_Rm": 0.004, "DVI": 0.78, "Tmn": 19 }
carbon_nitrogen_cycle
{ "expression": "0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1)", "id": "CMF008", "latex": "R_m=0.0432\\cdot24(Biom/0.45)C_m2^{(T-25)/10}", "name": "植株维持呼吸", "name_en": "carbon-nitrogen cycling plant maintenance respiration", "precision": 3, "unit": "g C/m2/day"...
CMF008_sensitivity_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^(...
Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means powe...
Formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸) Formula (LaTeX): R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10} Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means powe...
Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling plant maintenance respiration (植株维持呼吸). Formula: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M} ...
3
Q10 with DVI correction
sensitivity
{ "Biom_plant_yesterday": 941.4, "Coef_Rm": 0.0037, "DVI": 0.78, "Tmn": 19 }
Given current measurements Biom_plant_yesterday=941.4 g C/m2, Coef_Rm=0.0037 g C/g C/s, Tmn=19.0 C, DVI=0.78 dimensionless in carbon-nitrogen cycling respiration, what would the carbon-nitrogen cycling plant maintenance respiration be if Coef_Rm were adjusted to 0.004? Provide the numeric value in g C/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling plant maintenance respiration. Use the verified formula: \[R_m=0.0432\cdot24(Biom/0.45)C_m2^{(T-25)/10}\] In calculation-friendly notation, this is: Rm = 0.0432*24*(Biom_plant_yesterday/0.45)*Coef_Rm*2^((Tmn-25)/10) / (if DVI>1: DVI^2; else: 1). Substitute the rel...
dev
carbon-nitrogen cycling respiration
1
CMF013
0.842
cropmath-v1
null
[ "CMF010", "CMF004" ]
{ "BD": 1.26, "Saturate_Water": 0.48, "Soil_Water": 0.23900000000000002 }
carbon_nitrogen_cycle
{ "expression": "if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5.4*(Soil_Water/BD)^2)", "id": "CMF012", "latex": "F_W=0.49e^{3.88W-5.4W^2}", "name": "土壤碳分解水分因子", "name_en": "carbon-nitrogen cycling soil carbon water factor", "precision": 3, "unit": "fraction" }
CMF012_branch_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling soil carbon water factor (土壤碳分解水分因子) Formula (LaTeX): F_W=0.49e^{3.88W-5.4W^2} Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Wa...
Formula name: carbon-nitrogen cycling soil carbon water factor (土壤碳分解水分因子) Formula (LaTeX): F_W=0.49e^{3.88W-5.4W^2} Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5.4*(Soil_Water/BD)^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) m...
Formula name: carbon-nitrogen cycling soil carbon water factor (土壤碳分解水分因子) Formula (LaTeX): F_W=0.49e^{3.88W-5.4W^2} Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5.4*(Soil_Water/BD)^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) m...
Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5.4*(Soil_Water/BD)^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: carbon-nitrogen cycling soil carbon water factor (土壤碳分解水分因子). Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5.4*(Soil_Water/BD)^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural lo...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling soil pH decomposition factor (土壤pH分解因子) Formula (LaTeX): F_{pH}=\frac{1}{1+e^{2.5(5-pH)}} Formula: F_pH = 1 / (1 + exp(2.5 * (5 - pH))) Operator notes: * means multiplication...
4
Piecewise exponential
branch
{ "BD": 1.26, "Saturate_Water": 0.48, "Soil_Water": 0.23900000000000002 }
Calculate carbon-nitrogen cycling soil carbon water factor in carbon-nitrogen cycling soil carbon with these inputs: Soil_Water=0.239 cm3/cm3, Saturate_Water=0.48 cm3/cm3, BD=1.26 g/cm3. The computation may follow different paths based on piecewise thresholds. Give the numeric result in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling soil carbon water factor. Use the verified formula: \[F_W=0.49e^{3.88W-5.4W^2}\] In calculation-friendly notation, this is: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5.4*(Soil_Water/BD)^2). Substitute the relevant values: ...
dev
carbon-nitrogen cycling soil carbon
2
CMF010
0.978
cropmath-v1
null
[ "CMF021", "CMF016" ]
{ "WaterC": 0.393 }
methane_emission
{ "expression": "0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2)", "id": "CMF025", "latex": "WI=0.49e^{3.88W_c-5.4W_c^2}", "name": "水分分解因子", "name_en": "Water-content decomposition factor", "precision": 3, "unit": "fraction" }
CMF025_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane ebullition emission (甲烷冒泡排放) Formula (LaTeX): E_{bl}=\min(0.7\ln(t_{soil})/W_r,0.9)P Formula: Ebl = min(0.7 * ln(t_soil) / Wr, 0.9) * P Operator notes: * means multiplication, / me...
Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/l...
Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/l...
Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Water-content decomposition factor (水分分解因子). Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Soil organic matter carbon decomposition (土壤有机质碳分解量) Formula (LaTeX): OMSC=WI\cdot SI\cdot TI\cdot0.003\cdot OMS Formula: OMSC = WI * SI * TI * 0.003 * OMS Operator notes: * means multiplication, / ...
1
Exponential quadratic
direct
{ "WaterC": 0.393 }
A methane calculation estimates Water-content decomposition factor. The measured inputs are WaterC=0.393 fraction. What is the water-content decomposition factor? Give the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Water-content decomposition factor. Use the verified formula: \[WI=0.49e^{3.88W_c-5.4W_c^2}\] In calculation-friendly notation, this is: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2). Substitute the relevant values: WaterC=0.393 fraction. The computed value is 0.978 fraction. Therefore...
dev
Methane
0
CMF021
1.177
cropmath-v1
null
[ "CMF009", "CMF005" ]
{ "CO2": 459, "Coef_B_CO2": 0.59 }
carbon_nitrogen_cycle
{ "expression": "1 + Coef_B_CO2 * ln(CO2 / 340)", "id": "CMF001", "latex": "F_{CO2}=1+B\\ln(CO2/340)", "name": "作物二氧化碳施肥因子", "name_en": "carbon-nitrogen cycling CO2 fertilization factor", "precision": 3, "unit": "multiplier" }
CMF001_direct_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量) Formula (LaTeX): N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}} Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Bio...
Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smal...
Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smal...
Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子). Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失) Formula (LaTeX): R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans}) Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_textur...
1
Logarithmic
direct
{ "CO2": 459, "Coef_B_CO2": 0.59 }
In a carbon-nitrogen cycling photosynthesis, the carbon-nitrogen cycling CO2 fertilization factor is computed as part of carbon-nitrogen cycling photosynthesis modeling. With CO2=459.0 ppm, Coef_B_CO2=0.59 dimensionless, determine the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling CO2 fertilization factor. Use the verified formula: \[F_{CO2}=1+B\ln(CO2/340)\] In calculation-friendly notation, this is: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340). Substitute the relevant values: CO2=459.0 ppm, Coef_B_CO2=0.59 dimensionless. The computed value is 1...
dev
carbon-nitrogen cycling photosynthesis
2
CMF009
38.77
cropmath-v1
null
[ "CMF051", "CMF047" ]
{ "Am": 41.5, "FCO2": 1.05, "FPA": 0.93, "FT": 0.92, "NNI": 1.04, "WDF": 1.08 }
growth_yield
{ "expression": "Am * FCO2 * FPA * FT * min(NNI, WDF)", "id": "CMF026", "latex": "AMAX=Am\\cdot F_{CO2}\\cdot F_{PA}\\cdot F_T\\cdot\\min(NNI,WDF)", "name": "实际最大同化速率", "name_en": "Actual maximum assimilation rate", "precision": 2, "unit": "kg CO2/ha/h" }
CMF026_chain_2_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
Relevant formula name: Actual maximum assimilation rate (实际最大同化速率). Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((...
4
Multiplicative with minimum stress
chain_2
{ "Am": 41.5, "FCO2": 1.05, "FPA": 0.93, "FT": 0.92, "NNI": 1.04, "WDF": 1.08 }
A photosynthesis module estimates Actual maximum assimilation rate using intermediate drivers. Use the provided inputs in sequence. The measurements are Am=41.5 kg CO2/ha/h, FCO2=1.05 fraction, FPA=0.93 fraction, FT=0.92 fraction, NNI=1.04 fraction, WDF=1.08 fraction. Compute the actual maximum assimilation rate and gi...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Actual maximum assimilation rate. Use the verified formula: \[AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF)\] In calculation-friendly notation, this is: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF). Substitute the relevant values: Am=41.5 kg CO2/ha/h, FCO2=1.05 fraction, FPA...
dev
Photosynthesis
0
CMF051
5978.8
cropmath-v1
null
[ "CMF058", "CMF055" ]
{ "Biomass": 16159, "HI": 0.37 }
environmental_response
{ "expression": "Biomass * HI", "id": "CMF062", "latex": "Yield=Biomass\\cdot HI", "name": "环境响应产量", "name_en": "environmental-response yield", "precision": 1, "unit": "kg/ha" }
CMF062_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F...
Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Paramet...
Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Paramet...
Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
Relevant formula name: environmental-response yield (环境响应产量). Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max...
1
Product
direct
{ "Biomass": 16159, "HI": 0.37 }
A environmental-response formula system calculation estimates environmental-response yield. The measured inputs are Biomass=16159.0 kg/ha, HI=0.37 fraction. What is the simple yield? Give the final numeric value in kg/ha.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response yield. Use the verified formula: \[Yield=Biomass\cdot HI\] In calculation-friendly notation, this is: Yield = Biomass * HI. Substitute the relevant values: Biomass=16159.0 kg/ha, HI=0.37 fraction. The computed value is 5978.8 kg/ha. Therefore, the final numeric ans...
dev
environmental-response formula system
0
CMF058
8.285
cropmath-v1
{ "new_value": 753.4, "old_value": 684.9, "parameter": "Biom_shoot" }
[ "CMF006", "CMF011" ]
{ "Biom_root": 24.1, "Biom_shoot": 753.4, "Plant_TN_uptake": 8.55 }
carbon_nitrogen_cycle
{ "expression": "Plant_TN_uptake * Biom_shoot / (Biom_shoot + Biom_root)", "id": "CMF005", "latex": "N_{shoot}=N_{uptake}\\frac{B_{shoot}}{B_{shoot}+B_{root}}", "name": "地上部氮分配量", "name_en": "carbon-nitrogen cycling shoot nitrogen allocation", "precision": 3, "unit": "g N/m2" }
CMF005_sensitivity_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量) Formula (LaTeX): N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}} Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Bio...
Formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量) Formula (LaTeX): N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}} Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Biom_shoot + Biom_root) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量) Formula (LaTeX): N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}} Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Biom_shoot + Biom_root) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Biom_shoot + Biom_root) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g N/m2
Relevant formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量). Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Biom_shoot + Biom_root) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/la...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling canopy absorbed PAR (冠层吸收光合有效辐射) Formula (LaTeX): PAR=Radi\cdot0.44\cdot4.6(1-\rho)\frac{1-e^{-KLAI}}{KLAI} Formula: PAR = Radi * 0.44 * 4.6 * (1-Coef_rou) * (1-exp(-Coef_K*L...
2
Biomass-weighted allocation
sensitivity
{ "Biom_root": 24.1, "Biom_shoot": 684.9, "Plant_TN_uptake": 8.55 }
A carbon-nitrogen cycling nitrogen calculation involves sensitivity analysis. The current measurements are Plant_TN_uptake=8.55 g N/m2, Biom_shoot=684.9 g C/m2, Biom_root=24.1 g C/m2. A field technician asks what the carbon-nitrogen cycling shoot nitrogen allocation would become if Biom_shoot changed to 753.4. Report t...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling shoot nitrogen allocation. Use the verified formula: \[N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}}\] In calculation-friendly notation, this is: N_shoot = Plant_TN_uptake * Biom_shoot / (Biom_shoot + Biom_root). Substitute the relevant values: Plant_TN...
dev
carbon-nitrogen cycling nitrogen
0
CMF006
439.26
cropmath-v1
null
[ "CMF047", "CMF049" ]
{ "DTGA": 565.5, "RG": 53.7, "RM": 94.5, "b": 0.05 }
growth_yield
{ "expression": "(DTGA - RM - RG) / (1 - b)", "id": "CMF033", "latex": "GCR=\\frac{DTGA-RM-RG}{1-b}", "name": "日干物质增量", "name_en": "Daily dry matter increment", "precision": 2, "unit": "kg/ha/day" }
CMF033_chain_2_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ ...
Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: Daily dry matter increment (日干物质增量). Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Intercepted photosynthetically active radiation (截获光合有效辐射) Formula (LaTeX): IPAR = PAR \cdot (1 - e^{-k \cdot LAI}) Formula: IPAR = PAR * (1 - exp(-k * LAI)) Operator notes: * means multiplication, ...
3
Subtraction and conversion
chain_2
{ "DTGA": 565.5, "RG": 53.7, "RM": 94.5, "b": 0.05 }
In respiration, the Daily dry matter increment is obtained by chaining intermediate calculations. With inputs DTGA=565.5 kg/ha/day, RM=94.5 kg/ha/day, RG=53.7 kg/ha/day, b=0.05 fraction, determine the numeric value in kg/ha/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Daily dry matter increment. Use the verified formula: \[GCR=\frac{DTGA-RM-RG}{1-b}\] In calculation-friendly notation, this is: GCR = (DTGA - RM - RG) / (1 - b). Substitute the relevant values: DTGA=565.5 kg/ha/day, RM=94.5 kg/ha/day, RG=53.7 kg/ha/day, b=0.05 fraction. The computed valu...
dev
Respiration
2
CMF047
12.90
cropmath-v1
null
[ "CMF058", "CMF059" ]
{ "Tbase": 10.6, "Tmean": 23.5 }
environmental_response
{ "expression": "max(Tmean - Tbase, 0)", "id": "CMF056", "latex": "dTT=\\max(T_{mean}-T_{base},0)", "name": "每日有效积温", "name_en": "environmental-response daily thermal time", "precision": 2, "unit": "C day" }
CMF056_branch_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response daily thermal time (每日有效积温) Formula (LaTeX): dTT=\max(T_{mean}-T_{base},0) Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means divis...
Formula name: environmental-response daily thermal time (每日有效积温) Formula (LaTeX): dTT=\max(T_{mean}-T_{base},0) Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value...
Formula name: environmental-response daily thermal time (每日有效积温) Formula (LaTeX): dTT=\max(T_{mean}-T_{base},0) Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value...
Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
Relevant formula name: environmental-response daily thermal time (每日有效积温). Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max...
3
Maximum linear
branch
{ "Tbase": 10.6, "Tmean": 23.5 }
Calculate environmental-response daily thermal time in environmental-response formula system with these inputs: Tmean=23.5 C, Tbase=10.6 C. The computation may follow different paths based on piecewise thresholds. Give the numeric result in C day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response daily thermal time. Use the verified formula: \[dTT=\max(T_{mean}-T_{base},0)\] In calculation-friendly notation, this is: dTT = max(Tmean - Tbase, 0). Substitute the relevant values: Tmean=23.5 C, Tbase=10.6 C. The computed value is 12.90 C day. Therefore, the fin...
dev
environmental-response formula system
2
CMF058
0.331
cropmath-v1
null
[ "CMF018", "CMF017" ]
{ "OMS": 1246.5, "SI": 1.15, "TI": 0.28, "WI": 0.275 }
methane_emission
{ "expression": "WI * SI * TI * 0.003 * OMS", "id": "CMF021", "latex": "OMSC=WI\\cdot SI\\cdot TI\\cdot0.003\\cdot OMS", "name": "土壤有机质碳分解量", "name_en": "Soil organic matter carbon decomposition", "precision": 3, "unit": "g C/m2/day" }
CMF021_chain_2_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Soil organic matter carbon decomposition (土壤有机质碳分解量) Formula (LaTeX): OMSC=WI\cdot SI\cdot TI\cdot0.003\cdot OMS Formula: OMSC = WI * SI * TI * 0.003 * OMS Operator notes: * means multipli...
Formula name: Soil organic matter carbon decomposition (土壤有机质碳分解量) Formula (LaTeX): OMSC=WI\cdot SI\cdot TI\cdot0.003\cdot OMS Formula: OMSC = WI * SI * TI * 0.003 * OMS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula name: Soil organic matter carbon decomposition (土壤有机质碳分解量) Formula (LaTeX): OMSC=WI\cdot SI\cdot TI\cdot0.003\cdot OMS Formula: OMSC = WI * SI * TI * 0.003 * OMS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula: OMSC = WI * SI * TI * 0.003 * OMS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: Soil organic matter carbon decomposition (土壤有机质碳分解量). Formula: OMSC = WI * SI * TI * 0.003 * OMS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / mea...
3
Multiplicative
chain_2
{ "OMS": 1246.5, "SI": 1.15, "TI": 0.28, "WI": 0.275 }
In methane, the Soil organic matter carbon decomposition is obtained by chaining intermediate calculations. With inputs WI=0.275 fraction, SI=1.15 fraction, TI=0.28 fraction, OMS=1246.5 g C/m2, determine the numeric value in g C/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Soil organic matter carbon decomposition. Use the verified formula: \[OMSC=WI\cdot SI\cdot TI\cdot0.003\cdot OMS\] In calculation-friendly notation, this is: OMSC = WI * SI * TI * 0.003 * OMS. Substitute the relevant values: WI=0.275 fraction, SI=1.15 fraction, TI=0.28 fraction, OMS=1246...
dev
Methane
2
CMF018
6.319
cropmath-v1
null
[ "CMF018", "CMF016" ]
{ "CH4RiceEfC": 0.20800000000000002, "Ebl": 4.391, "P": 11.616, "W": 5453.7, "Wmax": 9178 }
methane_emission
{ "expression": "Ebl + P * CH4RiceEfC * (1 - W/Wmax)^0.25", "id": "CMF017", "latex": "E=E_{bl}+P\\cdot C(1-W/W_{max})^{0.25}", "name": "甲烷总排放", "name_en": "Total methane emission", "precision": 3, "unit": "g CH4/m2/day" }
CMF017_direct_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplicat...
Formula name: Total methane emission (甲烷总排放) Formula (LaTeX): E=E_{bl}+P\cdot C(1-W/W_{max})^{0.25} Formula: E = Ebl + P * CH4RiceEfC * (1 - W/Wmax)^0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger ...
Formula name: Total methane emission (甲烷总排放) Formula (LaTeX): E=E_{bl}+P\cdot C(1-W/W_{max})^{0.25} Formula: E = Ebl + P * CH4RiceEfC * (1 - W/Wmax)^0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger ...
Formula: E = Ebl + P * CH4RiceEfC * (1 - W/Wmax)^0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
Relevant formula name: Total methane emission (甲烷总排放). Formula: E = Ebl + P * CH4RiceEfC * (1 - W/Wmax)^0.25 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g CH4/m2/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / mea...
2
Chained sum
direct
{ "CH4RiceEfC": 0.20800000000000002, "Ebl": 4.391, "P": 11.616, "W": 5453.7, "Wmax": 9178 }
In a methane, the Total methane emission is computed as part of methane modeling. With Ebl=4.391 g CH4/m2/day, P=11.616 g CH4/m2/day, CH4RiceEfC=0.208 fraction, W=5453.7 kg/ha, Wmax=9178.0 kg/ha, determine the numeric value in g CH4/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Total methane emission. Use the verified formula: \[E=E_{bl}+P\cdot C(1-W/W_{max})^{0.25}\] In calculation-friendly notation, this is: E = Ebl + P * CH4RiceEfC * (1 - W/Wmax)^0.25. Substitute the relevant values: Ebl=4.391 g CH4/m2/day, P=11.616 g CH4/m2/day, CH4RiceEfC=0.208 fraction, W...
dev
Methane
2
CMF018
0.345
cropmath-v1
null
[ "CMF054", "CMF049" ]
{ "BFF": 0.67, "DTE": 0.515, "IE": 1.24, "PDT": 34.5, "RPE": 0.49 }
growth_yield
{ "expression": "if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0", "id": "CMF027", "latex": "DPE=DTE\\cdot IE,\\;DTE\\cdot RPE,\\;DTE,\\;DTE\\cdot BFF", "name": "每日生理效应", "name_en": "Daily physiological effectiveness", "precision": 3, "unit": "physiological days/day" }
CMF027_branch_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Maintenance respiration coefficient at optimum temperature (最适温度维持呼吸系数) Formula (LaTeX): RM(T_o)=0.0091-0.0001PDT Formula: RMTo = 0.0091 - 0.0001 * PDT Operator notes: * means multiplicati...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: physiological days/day
Relevant formula name: Daily physiological effectiveness (每日生理效应). Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the small...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Dry grain yield (稻谷干重产量) Formula (LaTeX): Y=AWSP\cdot f_{grain} Formula: Y = AWSP * grain_fraction Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln...
4
Stage-dependent product
branch
{ "BFF": 0.67, "DTE": 0.515, "IE": 1.24, "PDT": 34.5, "RPE": 0.49 }
A phenology involves a stage that may fall on either side of a piecewise threshold. The measured inputs are PDT=34.5 physiological days, DTE=0.515 fraction, IE=1.24 dimensionless, RPE=0.49 fraction, BFF=0.67 dimensionless. Determine the daily physiological effectiveness and report the final numeric value in physiologic...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Daily physiological effectiveness. Use the verified formula: \[DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF\] In calculation-friendly notation, this is: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0. Substitute the relevant values: PDT=34....
dev
Phenology
0
CMF054
27.20
cropmath-v1
null
[ "CMF019", "CMF016" ]
{ "Tair": 30 }
methane_emission
{ "expression": "4.4 + 0.76 * Tair", "id": "CMF024", "latex": "T_{soil}=4.4+0.76T_{air}", "name": "土壤温度估算", "name_en": "Soil temperature from air temperature", "precision": 2, "unit": "C" }
CMF024_direct_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Plant methane transport factor (植株传输因子) Formula (LaTeX): F_p=C(1-W/W_{max})^{0.25} Formula: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25 Operator notes: * means multiplication, / means divisio...
Formula name: Soil temperature from air temperature (土壤温度估算) Formula (LaTeX): T_{soil}=4.4+0.76T_{air} Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output un...
Formula name: Soil temperature from air temperature (土壤温度估算) Formula (LaTeX): T_{soil}=4.4+0.76T_{air} Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output un...
Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C
Relevant formula name: Soil temperature from air temperature (土壤温度估算). Formula: Tsoil = 4.4 + 0.76 * Tair Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Plant methane transport factor (植株传输因子) Formula (LaTeX): F_p=C(1-W/W_{max})^{0.25} Formula: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25 Operator notes: * means multiplication, / means division, ** or ^...
1
Linear
direct
{ "Tair": 30 }
A methane calculation estimates Soil temperature from air temperature. The measured inputs are Tair=30.0 C. What is the soil temperature from air temperature? Give the final numeric value in C.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Soil temperature from air temperature. Use the verified formula: \[T_{soil}=4.4+0.76T_{air}\] In calculation-friendly notation, this is: Tsoil = 4.4 + 0.76 * Tair. Substitute the relevant values: Tair=30.0 C. The computed value is 27.20 C. Therefore, the final numeric answer is \boxed{27...
dev
Methane
0
CMF019
0.700
cropmath-v1
null
[ "CMF004", "CMF002" ]
{ "Crop_Water_max": 0.42, "Crop_Water_min": 0.22, "Soil_Water": 0.178, "Wilt_point": 0.08 }
carbon_nitrogen_cycle
{ "expression": "if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max))", "id": "CMF014", "latex": "F_W=f(\\theta,\\theta_{wp},\\theta_{min},\\theta_{max})", "name": "作物水分胁迫...
CMF014_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Wa...
Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1...
Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1...
Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) mean...
Relevant formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子). Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wilt_point); if Soil_Water<Crop_Water_max: 1; else: 0.5*(1+(1-Soil_Water)/(1-Crop_Water_max)) Operator notes: * means...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling crop nitrogen demand (作物需氮量) Formula (LaTeX): N_d=C_uN_{shoot}\;\text{or}\;\min(N_{max},r_NNPP) Formula: N_demand = if NPP<0: 0; if N_shoot<3.5 and DVI<0.3: Coef_Plant_TN_upt...
2
Piecewise water response
direct
{ "Crop_Water_max": 0.42, "Crop_Water_min": 0.22, "Soil_Water": 0.178, "Wilt_point": 0.08 }
Given Soil_Water=0.178 cm3/cm3, Crop_Water_max=0.42 cm3/cm3, Crop_Water_min=0.22 cm3/cm3, Wilt_point=0.08 cm3/cm3, calculate the carbon-nitrogen cycling crop water stress factor for a carbon-nitrogen cycling water. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling crop water stress factor. Use the verified formula: \[F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max})\] In calculation-friendly notation, this is: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_Water_min: (Soil_Water-Wilt_point)/(Crop_Water_min-Wil...
dev
carbon-nitrogen cycling water
1
CMF004
151.50
cropmath-v1
{ "new_value": 0.41, "old_value": 0.36, "parameter": "Rg" }
[ "CMF033", "CMF035" ]
{ "DTGA": 369.5, "Rg": 0.41000000000000003 }
growth_yield
{ "expression": "Rg * DTGA", "id": "CMF046", "latex": "RG=R_g\\cdot DTGA", "name": "生长呼吸", "name_en": "Growth respiration", "precision": 2, "unit": "kg/ha/day" }
CMF046_sensitivity_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) m...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: Growth respiration (生长呼吸). Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means powe...
2
Product
sensitivity
{ "DTGA": 369.5, "Rg": 0.36 }
Given current measurements Rg=0.36 fraction, DTGA=369.5 kg/ha/day in respiration, what would the Growth respiration be if Rg were adjusted to 0.41? Provide the numeric value in kg/ha/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Growth respiration. Use the verified formula: \[RG=R_g\cdot DTGA\] In calculation-friendly notation, this is: RG = Rg * DTGA. Substitute the relevant values: Rg=0.41 fraction, DTGA=369.5 kg/ha/day. The computed value is 151.50 kg/ha/day. Therefore, the final numeric answer is \boxed{151....
dev
Respiration
1
CMF033
0.475
cropmath-v1
{ "new_value": 1.22, "old_value": 1.35, "parameter": "ARID" }
[ "CMF062", "CMF056" ]
{ "ARID": 1.22, "S_Water": 0.43 }
environmental_response
{ "expression": "max(0, 1 - S_Water * ARID)", "id": "CMF061", "latex": "F_W=\\max(0,1-S_WARID)", "name": "环境响应水分响应", "name_en": "environmental-response water stress response", "precision": 3, "unit": "response factor" }
CMF061_sensitivity_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response daily thermal time (每日有效积温) Formula (LaTeX): dTT=\max(T_{mean}-T_{base},0) Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means divis...
Formula name: environmental-response water stress response (环境响应水分响应) Formula (LaTeX): F_W=\max(0,1-S_WARID) Formula: F_Water = max(0, 1 - S_Water * ARID) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger...
Formula name: environmental-response water stress response (环境响应水分响应) Formula (LaTeX): F_W=\max(0,1-S_WARID) Formula: F_Water = max(0, 1 - S_Water * ARID) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger...
Formula: F_Water = max(0, 1 - S_Water * ARID) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: environmental-response water stress response (环境响应水分响应). Formula: F_Water = max(0, 1 - S_Water * ARID) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means...
2
Maximum linear
sensitivity
{ "ARID": 1.35, "S_Water": 0.43 }
Given current measurements ARID=1.35 dimensionless, S_Water=0.43 dimensionless in environmental-response formula system, what would the environmental-response water stress response be if ARID were adjusted to 1.22? Provide the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response water stress response. Use the verified formula: \[F_W=\max(0,1-S_WARID)\] In calculation-friendly notation, this is: F_Water = max(0, 1 - S_Water * ARID). Substitute the relevant values: ARID=1.22 dimensionless, S_Water=0.43 dimensionless. The computed value is 0....
dev
environmental-response formula system
1
CMF062
0.08
cropmath-v1
null
[ "CMF051", "CMF037" ]
{ "PDT": 51 }
growth_yield
{ "expression": "1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63)", "id": "CMF043", "latex": "PIRO=1-PISH", "name": "地下部分配指数", "name_en": "Root partitioning index", "precision": 2, "unit": "fraction" }
CMF043_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Root partitioning index (地下部分配指数) Formula (LaTeX): PIRO=1-PISH Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ me...
Formula name: Root partitioning index (地下部分配指数) Formula (LaTeX): PIRO=1-PISH Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
Formula name: Root partitioning index (地下部分配指数) Formula (LaTeX): PIRO=1-PISH Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Root partitioning index (地下部分配指数). Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((...
1
Residual from shoot partitioning
direct
{ "PDT": 51 }
Given PDT=51.0 physiological days, calculate the Root partitioning index for a dry matter partitioning. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Root partitioning index. Use the verified formula: \[PIRO=1-PISH\] In calculation-friendly notation, this is: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63). Substitute the relevant values: PDT=51.0 physiological days. The computed value is 0.08 fraction. Therefore, the final numeric an...
dev
Dry matter partitioning
1
CMF051
0.0077
cropmath-v1
null
[ "CMF042", "CMF041" ]
{ "PDT": 14.5 }
growth_yield
{ "expression": "0.0091 - 0.0001 * PDT", "id": "CMF049", "latex": "RM(T_o)=0.0091-0.0001PDT", "name": "最适温度维持呼吸系数", "name_en": "Maintenance respiration coefficient at optimum temperature", "precision": 4, "unit": "d-1" }
CMF049_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Maintenance respiration coefficient at optimum temperature (最适温度维持呼吸系数) Formula (LaTeX): RM(T_o)=0.0091-0.0001PDT Formula: RMTo = 0.0091 - 0.0001 * PDT Operator notes: * means multiplicati...
Formula name: Maintenance respiration coefficient at optimum temperature (最适温度维持呼吸系数) Formula (LaTeX): RM(T_o)=0.0091-0.0001PDT Formula: RMTo = 0.0091 - 0.0001 * PDT Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the sma...
Formula name: Maintenance respiration coefficient at optimum temperature (最适温度维持呼吸系数) Formula (LaTeX): RM(T_o)=0.0091-0.0001PDT Formula: RMTo = 0.0091 - 0.0001 * PDT Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the sma...
Formula: RMTo = 0.0091 - 0.0001 * PDT Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: d-1
Relevant formula name: Maintenance respiration coefficient at optimum temperature (最适温度维持呼吸系数). Formula: RMTo = 0.0091 - 0.0001 * PDT Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Panicle partitioning index (穗分配指数) Formula (LaTeX): PIP=\frac{HI/0.87}{1+e^{-0.2804(PDT-39)}} Formula: PIP = (Y_grain / B_above / 0.87) / (1 + exp(-0.2804 * (PDT - 39))) Operator notes: * means mult...
1
Linear decline
direct
{ "PDT": 14.5 }
In a respiration, the Maintenance respiration coefficient at optimum temperature is computed as part of respiration modeling. With PDT=14.5 physiological days, determine the numeric value in d-1.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Maintenance respiration coefficient at optimum temperature. Use the verified formula: \[RM(T_o)=0.0091-0.0001PDT\] In calculation-friendly notation, this is: RMTo = 0.0091 - 0.0001 * PDT. Substitute the relevant values: PDT=14.5 physiological days. The computed value is 0.0077 d-1. There...
dev
Respiration
2
CMF042
0.34
cropmath-v1
null
[ "CMF052", "CMF031" ]
{ "PDT": 50, "a": 0.049 }
growth_yield
{ "expression": "if PDT<28: 1; else: exp(-a*(PDT-28))", "id": "CMF030", "latex": "F_{PA}=1\\;(PDT<28),\\quad e^{-a(PDT-28)}\\;(PDT\\ge 28)", "name": "生理年龄因子", "name_en": "Physiological age factor", "precision": 2, "unit": "fraction" }
CMF030_branch_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Actual LAI relative growth rate (实际叶面积相对增长率) Formula (LaTeX): R=RP\cdot\min(NNI,WDF) Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means...
Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Physiological age factor (生理年龄因子). Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Actual LAI relative growth rate (实际叶面积相对增长率) Formula (LaTeX): R=RP\cdot\min(NNI,WDF) Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
4
Piecewise exponential decay
branch
{ "PDT": 50, "a": 0.049 }
Calculate Physiological age factor in photosynthesis with these inputs: PDT=50.0 physiological days, a=0.049 dimensionless. The computation may follow different paths based on piecewise thresholds. Give the numeric result in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Physiological age factor. Use the verified formula: \[F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28)\] In calculation-friendly notation, this is: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)). Substitute the relevant values: PDT=50.0 physiological days, a=0.049 dimensionless. The comp...
dev
Photosynthesis
2
CMF052
14.04
cropmath-v1
{ "new_value": 0.08, "old_value": 0.083, "parameter": "PS" }
[ "CMF029", "CMF045" ]
{ "PS": 0.08, "Po": 10.5 }
growth_yield
{ "expression": "Po + sqrt(1 / PS)", "id": "CMF040", "latex": "P_c=P_o+\\sqrt{1/PS}", "name": "临界日长", "name_en": "Critical daylength", "precision": 2, "unit": "h" }
CMF040_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means ...
Formula name: Critical daylength (临界日长) Formula (LaTeX): P_c=P_o+\sqrt{1/PS} Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h Parameters: - Po: optim...
Formula name: Critical daylength (临界日长) Formula (LaTeX): P_c=P_o+\sqrt{1/PS} Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h Parameters: - Po: optim...
Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h
Relevant formula name: Critical daylength (临界日长). Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: h
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp...
2
Power response
sensitivity
{ "PS": 0.083, "Po": 10.5 }
In phenology, we analyze how Critical daylength responds to parameter changes. Baseline: Po=10.5 h, PS=0.083 dimensionless. After changing PS from 0.083 to 0.08, compute the new Critical daylength. Give the numeric value in h.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Critical daylength. Use the verified formula: \[P_c=P_o+\sqrt{1/PS}\] In calculation-friendly notation, this is: Pc = Po + sqrt(1 / PS). Substitute the relevant values: Po=10.5 h, PS=0.08 dimensionless. The computed value is 14.04 h. Therefore, the final numeric answer is \boxed{14.04}. ...
dev
Phenology
2
CMF029
1.000
cropmath-v1
null
[ "CMF025", "CMF018" ]
{ "Q10": 2.2, "t_soil": 39.9 }
methane_emission
{ "expression": "Q10^((min(t_soil,30)-30)/10)", "id": "CMF023", "latex": "TI=Q_{10}^{(t_{sl}-30)/10}", "name": "甲烷温度指数", "name_en": "Methane temperature index", "precision": 3, "unit": "multiplier" }
CMF023_branch_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplicat...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Methane temperature index (甲烷温度指数). Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / means divi...
3
Q10 with temperature clipping
branch
{ "Q10": 2.2, "t_soil": 39.9 }
For methane, compute the Methane temperature index. The inputs are Q10=2.2 dimensionless, t_soil=39.9 C. Note that this formula uses piecewise logic depending on parameter values. Report the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Methane temperature index. Use the verified formula: \[TI=Q_{10}^{(t_{sl}-30)/10}\] In calculation-friendly notation, this is: TI = Q10^((min(t_soil,30)-30)/10). Substitute the relevant values: Q10=2.2 dimensionless, t_soil=39.9 C. The computed value is 1.000 fraction. Therefore, the fin...
dev
Methane
1
CMF025
1.18
cropmath-v1
null
[ "CMF052", "CMF051" ]
{ "Cx": 419, "beta": 0.86 }
growth_yield
{ "expression": "1 + beta * ln(Cx / 340)", "id": "CMF029", "latex": "F_{CO2}=1+\\beta\\ln(C_x/340)", "name": "二氧化碳影响因子", "name_en": "CO2 response factor", "precision": 2, "unit": "multiplier" }
CMF029_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Actual LAI relative growth rate (实际叶面积相对增长率) Formula (LaTeX): R=RP\cdot\min(NNI,WDF) Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means...
Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: CO2 response factor (二氧化碳影响因子). Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Actual LAI relative growth rate (实际叶面积相对增长率) Formula (LaTeX): R=RP\cdot\min(NNI,WDF) Formula: R = RP * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
1
Logarithmic
direct
{ "Cx": 419, "beta": 0.86 }
Given Cx=419.0 ppm, beta=0.86 dimensionless, calculate the CO2 response factor for a photosynthesis. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as CO2 response factor. Use the verified formula: \[F_{CO2}=1+\beta\ln(C_x/340)\] In calculation-friendly notation, this is: FCO2 = 1 + beta * ln(Cx / 340). Substitute the relevant values: Cx=419.0 ppm, beta=0.86 dimensionless. The computed value is 1.18 fraction. Therefore, the final numer...
dev
Photosynthesis
1
CMF052
0.198
cropmath-v1
{ "new_value": -7, "old_value": -6.1, "parameter": "Eh" }
[ "CMF023", "CMF021" ]
{ "Eh": -7 }
methane_emission
{ "expression": "if Eh<-150: 1; else: exp(-1.7*(1+Eh/150))", "id": "CMF018", "latex": "F_{Eh}=1\\;(Eh<-150),\\quad e^{-1.7(1+Eh/150)}", "name": "氧化还原电位因子", "name_en": "Redox potential factor", "precision": 3, "unit": "fraction" }
CMF018_sensitivity_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplicat...
Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the sm...
Formula name: Redox potential factor (氧化还原电位因子) Formula (LaTeX): F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)} Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the sm...
Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Redox potential factor (氧化还原电位因子). Formula: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means powe...
3
Piecewise exponential
sensitivity
{ "Eh": -6.1 }
A methane calculation involves sensitivity analysis. The current measurements are Eh=-6.1 mV. A field technician asks what the redox potential factor would become if Eh changed to -7.0. Report the new final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Redox potential factor. Use the verified formula: \[F_{Eh}=1\;(Eh<-150),\quad e^{-1.7(1+Eh/150)}\] In calculation-friendly notation, this is: FEh = if Eh<-150: 1; else: exp(-1.7*(1+Eh/150)). Substitute the relevant values: Eh=-7.0 mV. The computed value is 0.198 fraction. Therefore, the ...
dev
Methane
0
CMF023
71.6
cropmath-v1
{ "new_value": 3.8, "old_value": 4.2, "parameter": "SDEPTH" }
[ "CMF033", "CMF034" ]
{ "SDEPTH": 3.8 }
growth_yield
{ "expression": "45 + 7 * SDEPTH", "id": "CMF028", "latex": "EMGDD=45+7SDEPTH", "name": "出苗热量需求", "name_en": "Emergence thermal requirement", "precision": 1, "unit": "C day" }
CMF028_sensitivity_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Harvest index (收获指数) Formula (LaTeX): HI=\frac{Y_{grain}}{B_{above}} Formula: HI = Y_grain / B_above Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) m...
Formula name: Emergence thermal requirement (出苗热量需求) Formula (LaTeX): EMGDD=45+7SDEPTH Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day Paramete...
Formula name: Emergence thermal requirement (出苗热量需求) Formula (LaTeX): EMGDD=45+7SDEPTH Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day Paramete...
Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
Relevant formula name: Emergence thermal requirement (出苗热量需求). Formula: EMGDD = 45 + 7 * SDEPTH Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: C day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Daily dry matter increment (日干物质增量) Formula (LaTeX): GCR=\frac{DTGA-RM-RG}{1-b} Formula: GCR = (DTGA - RM - RG) / (1 - b) Operator notes: * means multiplication, / means division, ** or ^ means powe...
2
Linear
sensitivity
{ "SDEPTH": 4.2 }
Given current measurements SDEPTH=4.2 cm in phenology, what would the Emergence thermal requirement be if SDEPTH were adjusted to 3.8? Provide the numeric value in C day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Emergence thermal requirement. Use the verified formula: \[EMGDD=45+7SDEPTH\] In calculation-friendly notation, this is: EMGDD = 45 + 7 * SDEPTH. Substitute the relevant values: SDEPTH=3.8 cm. The computed value is 71.6 C day. Therefore, the final numeric answer is \boxed{71.6}. #### 71....
dev
Phenology
1
CMF033
10.69
cropmath-v1
null
[ "CMF031", "CMF027" ]
{ "Am": 28.3, "FCO2": 1.13, "FPA": 0.91, "FT": 0.54, "NNI": 0.68, "WDF": 0.73 }
growth_yield
{ "expression": "Am * FCO2 * FPA * FT * min(NNI, WDF)", "id": "CMF026", "latex": "AMAX=Am\\cdot F_{CO2}\\cdot F_{PA}\\cdot F_T\\cdot\\min(NNI,WDF)", "name": "实际最大同化速率", "name_en": "Actual maximum assimilation rate", "precision": 2, "unit": "kg CO2/ha/h" }
CMF026_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Light interception fraction (光能截获率) Formula (LaTeX): fPAR = 1 - e^{-k \cdot LAI} Formula: fPAR = 1 - exp(-k * LAI) Operator notes: * means multiplication, / means division, ** or ^ means p...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
Relevant formula name: Actual maximum assimilation rate (实际最大同化速率). Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Light interception fraction (光能截获率) Formula (LaTeX): fPAR = 1 - e^{-k \cdot LAI} Formula: fPAR = 1 - exp(-k * LAI) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(...
2
Multiplicative with minimum stress
direct
{ "Am": 28.3, "FCO2": 1.13, "FPA": 0.91, "FT": 0.54, "NNI": 0.68, "WDF": 0.73 }
A photosynthesis calculation estimates Actual maximum assimilation rate. The measured inputs are Am=28.3 kg CO2/ha/h, FCO2=1.13 fraction, FPA=0.91 fraction, FT=0.54 fraction, NNI=0.68 fraction, WDF=0.73 fraction. What is the actual maximum assimilation rate? Give the final numeric value in kg CO2/ha/h.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Actual maximum assimilation rate. Use the verified formula: \[AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF)\] In calculation-friendly notation, this is: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF). Substitute the relevant values: Am=28.3 kg CO2/ha/h, FCO2=1.13 fraction, FPA...
dev
Photosynthesis
0
CMF031
0.962
cropmath-v1
null
[ "CMF045", "CMF054" ]
{ "BFF": 1.04, "DTE": 0.925, "IE": 0.89, "PDT": 48.6, "RPE": 0.52 }
growth_yield
{ "expression": "if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0", "id": "CMF027", "latex": "DPE=DTE\\cdot IE,\\;DTE\\cdot RPE,\\;DTE,\\;DTE\\cdot BFF", "name": "每日生理效应", "name_en": "Daily physiological effectiveness", "precision": 3, "unit": "physiological days/day" }
CMF027_chain_2_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: physiological days/day
Relevant formula name: Daily physiological effectiveness (每日生理效应). Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the small...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Ope...
4
Stage-dependent product
chain_2
{ "BFF": 1.04, "DTE": 0.925, "IE": 0.89, "PDT": 48.6, "RPE": 0.52 }
A phenology module estimates Daily physiological effectiveness using intermediate drivers. Use the provided inputs in sequence. The measurements are PDT=48.6 physiological days, DTE=0.925 fraction, IE=0.89 dimensionless, RPE=0.52 fraction, BFF=1.04 dimensionless. Compute the daily physiological effectiveness and give t...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Daily physiological effectiveness. Use the verified formula: \[DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF\] In calculation-friendly notation, this is: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0. Substitute the relevant values: PDT=48....
dev
Phenology
0
CMF045
0.07
cropmath-v1
{ "new_value": 57, "old_value": 56.5, "parameter": "PDT" }
[ "CMF031", "CMF036" ]
{ "PDT": 57 }
growth_yield
{ "expression": "1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63)", "id": "CMF043", "latex": "PIRO=1-PISH", "name": "地下部分配指数", "name_en": "Root partitioning index", "precision": 2, "unit": "fraction" }
CMF043_sensitivity_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Canopy extinction coefficient (冠层消光系数) Formula (LaTeX): K=0.0087PDT+0.2222 Formula: K = 0.0087 * PDT + 0.2222 Operator notes: * means multiplication, / means division, ** or ^ means power,...
Formula name: Root partitioning index (地下部分配指数) Formula (LaTeX): PIRO=1-PISH Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
Formula name: Root partitioning index (地下部分配指数) Formula (LaTeX): PIRO=1-PISH Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Root partitioning index (地下部分配指数). Formula: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Light interception fraction (光能截获率) Formula (LaTeX): fPAR = 1 - e^{-k \cdot LAI} Formula: fPAR = 1 - exp(-k * LAI) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(...
2
Residual from shoot partitioning
sensitivity
{ "PDT": 56.5 }
A dry matter partitioning calculation involves sensitivity analysis. The current measurements are PDT=56.5 physiological days. A field technician asks what the root partitioning index would become if PDT changed to 57.0. Report the new final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Root partitioning index. Use the verified formula: \[PIRO=1-PISH\] In calculation-friendly notation, this is: PIRO = 1 - (-0.0000842*PDT^2 + 0.01*PDT + 0.63). Substitute the relevant values: PDT=57.0 physiological days. The computed value is 0.07 fraction. Therefore, the final numeric an...
dev
Dry matter partitioning
0
CMF031
0.982
cropmath-v1
null
[ "CMF048", "CMF036" ]
{ "T": 27.7, "TS": 1.07, "Tb": 10, "Tm": 42, "To": 30 }
growth_yield
{ "expression": "(((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS", "id": "CMF051", "latex": "RTE=\\left[\\frac{T-T_b}{T_o-T_b}\\left(\\frac{T_m-T}{T_m-T_o}\\right)^{(T_m-T_o)/(T_o-T_b)}\\right]^{TS}", "name": "相对热效应", "name_en": "Relative thermal effectiveness", "precision": 3...
CMF051_branch_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - ...
Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division...
Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division...
Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Relative thermal effectiveness (相对热效应). Formula: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** TS Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larg...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes:...
4
Beta temperature response
branch
{ "T": 27.7, "TS": 1.07, "Tb": 10, "Tm": 42, "To": 30 }
A phenology involves a stage that may fall on either side of a piecewise threshold. The measured inputs are T=27.7 C, Tb=10.0 C, To=30.0 C, Tm=42.0 C, TS=1.07 dimensionless. Determine the relative thermal effectiveness and report the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Relative thermal effectiveness. Use the verified formula: \[RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS}\] In calculation-friendly notation, this is: RTE = (((T - Tb)/(To - Tb)) * (((Tm - T)/(Tm - To)) ** ((Tm - To)/(To - Tb)))) ** T...
dev
Phenology
0
CMF048
0.045
cropmath-v1
null
[ "CMF007", "CMF003" ]
{ "Coef_K_Decom": 0.0057, "Coef_K_Trans": 0.08600000000000001, "F_notill": 0.93, "F_pH": 0.101, "F_temp": 1.373, "F_texture": 0.899, "F_water": 0.266, "Pool": 281.7 }
carbon_nitrogen_cycle
{ "expression": "Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans)", "id": "CMF009", "latex": "R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans})", "name": "碳库呼吸损失", "name_en": "carbon-nitrogen cycling carbon pool respiration loss", "precision": 3, "unit": "g C/m2/day" }
CMF009_direct_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Nitrogen use efficiency (氮利用效率) Formula (LaTeX): NUE=\frac{GrainYield}{NUptake} Formula: NUE = GrainYield / NUptake Operator notes: * means multiplication, / means division, ** or ^ means ...
Formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失) Formula (LaTeX): R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans}) Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means pow...
Formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失) Formula (LaTeX): R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans}) Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means pow...
Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失). Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/m...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling optimal photosynthetic rate (最适光合速率) Formula (LaTeX): P_{opt}=\alpha N_{leaf}\frac{PAR}{PAR+\beta} Formula: Photo_Rate_opt = (Coef_alfa * Leaf_N) * PAR / (PAR + Coef_beta) Op...
2
Chained multiplicative decomposition
direct
{ "Coef_K_Decom": 0.0057, "Coef_K_Trans": 0.08600000000000001, "F_notill": 0.93, "F_pH": 0.101, "F_temp": 1.373, "F_texture": 0.899, "F_water": 0.266, "Pool": 281.7 }
A carbon-nitrogen cycling soil carbon calculation estimates carbon-nitrogen cycling carbon pool respiration loss. The measured inputs are Pool=281.7 g C/m2, Coef_K_Decom=0.0057 d-1, F_temp=1.373 fraction, F_water=0.266 fraction, F_texture=0.899 fraction, F_pH=0.101 fraction, F_notill=0.93 fraction, Coef_K_Trans=0.086 f...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling carbon pool respiration loss. Use the verified formula: \[R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans})\] In calculation-friendly notation, this is: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans). Substitute the re...
dev
carbon-nitrogen cycling soil carbon
0
CMF007
0.17
cropmath-v1
null
[ "CMF037", "CMF040" ]
{ "PDT": 33.5, "Tmax_day": 38.5 }
growth_yield
{ "expression": "if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1", "id": "CMF035", "latex": "HTF=\\frac{1}{1+e^{0.853(T_m-36.6)}}", "name": "高温结实因子", "name_en": "High-temperature fertility factor", "precision": 2, "unit": "fraction" }
CMF035_branch_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Critical daylength (临界日长) Formula (LaTeX): P_c=P_o+\sqrt{1/PS} Formula: Pc = Po + sqrt(1 / PS) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e...
Formula name: High-temperature fertility factor (高温结实因子) Formula (LaTeX): HTF=\frac{1}{1+e^{0.853(T_m-36.6)}} Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural lo...
Formula name: High-temperature fertility factor (高温结实因子) Formula (LaTeX): HTF=\frac{1}{1+e^{0.853(T_m-36.6)}} Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural lo...
Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: High-temperature fertility factor (高温结实因子). Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/lar...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
4
Piecewise logistic
branch
{ "PDT": 33.5, "Tmax_day": 38.5 }
A temperature stress involves a stage that may fall on either side of a piecewise threshold. The measured inputs are PDT=33.5 physiological days, Tmax_day=38.5 C. Determine the high-temperature fertility factor and report the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as High-temperature fertility factor. Use the verified formula: \[HTF=\frac{1}{1+e^{0.853(T_m-36.6)}}\] In calculation-friendly notation, this is: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1. Substitute the relevant values: PDT=33.5 physiological days, ...
dev
Temperature stress
0
CMF037
0.17
cropmath-v1
{ "new_value": 34.8, "old_value": 38.7, "parameter": "PDT" }
[ "CMF037", "CMF046" ]
{ "PDT": 34.8, "Tmax_day": 38.5 }
growth_yield
{ "expression": "if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1", "id": "CMF035", "latex": "HTF=\\frac{1}{1+e^{0.853(T_m-36.6)}}", "name": "高温结实因子", "name_en": "High-temperature fertility factor", "precision": 2, "unit": "fraction" }
CMF035_sensitivity_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) m...
Formula name: High-temperature fertility factor (高温结实因子) Formula (LaTeX): HTF=\frac{1}{1+e^{0.853(T_m-36.6)}} Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural lo...
Formula name: High-temperature fertility factor (高温结实因子) Formula (LaTeX): HTF=\frac{1}{1+e^{0.853(T_m-36.6)}} Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural lo...
Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: High-temperature fertility factor (高温结实因子). Formula: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/lar...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Potential leaf area index (潜在叶面积指数) Formula (LaTeX): LAI_P=LAI_0e^{RP\cdot GDD} Formula: LAIP = LAI0 * exp(RP * GDD) Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
3
Piecewise logistic
sensitivity
{ "PDT": 38.7, "Tmax_day": 38.5 }
Given current measurements PDT=38.7 physiological days, Tmax_day=38.5 C in temperature stress, what would the High-temperature fertility factor be if PDT were adjusted to 34.8? Provide the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as High-temperature fertility factor. Use the verified formula: \[HTF=\frac{1}{1+e^{0.853(T_m-36.6)}}\] In calculation-friendly notation, this is: HTF = if 32<=PDT<=39 and Tmax_day>36.6: 1/(1+exp(0.853*(Tmax_day-36.6))); else: 1. Substitute the relevant values: PDT=34.8 physiological days, ...
dev
Temperature stress
1
CMF037
14.11
cropmath-v1
null
[ "CMF056", "CMF058" ]
{ "F_CO2": 1.33, "F_Heat": 0.84, "F_Temp": 0.77, "F_Water": 0.47000000000000003, "RUE": 1.44, "SRAD": 12.72, "fSolar": 0.16 }
environmental_response
{ "expression": "10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_Heat)", "id": "CMF055", "latex": "dB=10RUEfSolarSRADF_{CO2}F_T\\min(F_W,F_H)", "name": "环境响应日生物量增量", "name_en": "environmental-response daily biomass increment", "precision": 2, "unit": "kg/ha/day" }
CMF055_chain_2_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F...
Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_Heat) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x)...
Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_Heat) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x)...
Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_Heat) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: environmental-response daily biomass increment (环境响应日生物量增量). Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_Heat) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response daily thermal time (每日有效积温) Formula (LaTeX): dTT=\max(T_{mean}-T_{base},0) Formula: dTT = max(Tmean - Tbase, 0) Operator notes: * means multiplication, / means division, ** or...
4
Multiplicative minimum stress
chain_2
{ "F_CO2": 1.33, "F_Heat": 0.84, "F_Temp": 0.77, "F_Water": 0.47000000000000003, "RUE": 1.44, "SRAD": 12.72, "fSolar": 0.16 }
In environmental-response formula system, the environmental-response daily biomass increment is obtained by chaining intermediate calculations. With inputs RUE=1.44 g/MJ, fSolar=0.16 fraction, SRAD=12.72 MJ/m2/day, F_CO2=1.33 fraction, F_Temp=0.77 fraction, F_Water=0.47 fraction, F_Heat=0.84 fraction, determine the num...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response daily biomass increment. Use the verified formula: \[dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H)\] In calculation-friendly notation, this is: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_Heat). Substitute the relevant values: RUE=1.44 g/MJ, f...
dev
environmental-response formula system
2
CMF056
0.58
cropmath-v1
null
[ "CMF051", "CMF042" ]
{ "B_above": 12702, "PDT": 26, "Y_grain": 6715 }
growth_yield
{ "expression": "1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39)))", "id": "CMF045", "latex": "PIS=1-PIGL-PIP", "name": "茎鞘分配指数", "name_en": "Stem partitioning index", "precision": 2, "unit": "fraction" }
CMF045_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT...
Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means na...
Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means na...
Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Relevant formula name: Stem partitioning index (茎鞘分配指数). Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and m...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Relative thermal effectiveness (相对热效应) Formula (LaTeX): RTE=\left[\frac{T-T_b}{T_o-T_b}\left(\frac{T_m-T}{T_m-T_o}\right)^{(T_m-T_o)/(T_o-T_b)}\right]^{TS} Formula: RTE = (((T - Tb)/(To - Tb)) * (((...
2
Residual with piecewise components
direct
{ "B_above": 12702, "PDT": 26, "Y_grain": 6715 }
A dry matter partitioning calculation estimates Stem partitioning index. The measured inputs are PDT=26.0 physiological days, Y_grain=6715.0 kg/ha, B_above=12702.0 kg/ha. What is the stem partitioning index? Give the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Stem partitioning index. Use the verified formula: \[PIS=1-PIGL-PIP\] In calculation-friendly notation, this is: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))). Substitute the relevant values: PDT=26.0 physiologica...
dev
Dry matter partitioning
0
CMF051
0.327
cropmath-v1
{ "new_value": 1, "old_value": 1.11, "parameter": "SI" }
[ "CMF019", "CMF023" ]
{ "OMN": 23.3, "SI": 1, "TI": 0.749, "WI": 0.6950000000000001 }
methane_emission
{ "expression": "WI * SI * TI * 0.027 * OMN", "id": "CMF020", "latex": "OMNC=WI\\cdot SI\\cdot TI\\cdot0.027\\cdot OMN", "name": "新鲜有机质碳分解量", "name_en": "Fresh organic matter carbon decomposition", "precision": 3, "unit": "g C/m2/day" }
CMF020_sensitivity_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ ...
Formula name: Fresh organic matter carbon decomposition (新鲜有机质碳分解量) Formula (LaTeX): OMNC=WI\cdot SI\cdot TI\cdot0.027\cdot OMN Formula: OMNC = WI * SI * TI * 0.027 * OMN Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select th...
Formula name: Fresh organic matter carbon decomposition (新鲜有机质碳分解量) Formula (LaTeX): OMNC=WI\cdot SI\cdot TI\cdot0.027\cdot OMN Formula: OMNC = WI * SI * TI * 0.027 * OMN Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select th...
Formula: OMNC = WI * SI * TI * 0.027 * OMN Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: Fresh organic matter carbon decomposition (新鲜有机质碳分解量). Formula: OMNC = WI * SI * TI * 0.027 * OMN Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Plant methane transport factor (植株传输因子) Formula (LaTeX): F_p=C(1-W/W_{max})^{0.25} Formula: Fp = CH4RiceEfC * (1 - W / Wmax) ** 0.25 Operator notes: * means multiplication, / means division, ** or ^...
2
Multiplicative
sensitivity
{ "OMN": 23.3, "SI": 1.11, "TI": 0.749, "WI": 0.6950000000000001 }
Given current measurements WI=0.695 fraction, SI=1.11 fraction, TI=0.749 fraction, OMN=23.3 g C/m2 in methane, what would the Fresh organic matter carbon decomposition be if SI were adjusted to 1.0? Provide the numeric value in g C/m2/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Fresh organic matter carbon decomposition. Use the verified formula: \[OMNC=WI\cdot SI\cdot TI\cdot0.027\cdot OMN\] In calculation-friendly notation, this is: OMNC = WI * SI * TI * 0.027 * OMN. Substitute the relevant values: WI=0.695 fraction, SI=1.0 fraction, TI=0.749 fraction, OMN=23....
dev
Methane
1
CMF019
14.86
cropmath-v1
{ "new_value": 0.95, "old_value": 1, "parameter": "FCO2" }
[ "CMF047", "CMF029" ]
{ "Am": 49.4, "FCO2": 0.9500000000000001, "FPA": 0.6900000000000001, "FT": 0.85, "NNI": 0.54, "WDF": 0.66 }
growth_yield
{ "expression": "Am * FCO2 * FPA * FT * min(NNI, WDF)", "id": "CMF026", "latex": "AMAX=Am\\cdot F_{CO2}\\cdot F_{PA}\\cdot F_T\\cdot\\min(NNI,WDF)", "name": "实际最大同化速率", "name_en": "Actual maximum assimilation rate", "precision": 2, "unit": "kg CO2/ha/h" }
CMF026_sensitivity_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Intercepted photosynthetically active radiation (截获光合有效辐射) Formula (LaTeX): IPAR = PAR \cdot (1 - e^{-k \cdot LAI}) Formula: IPAR = PAR * (1 - exp(-k * LAI)) Operator notes: * means multip...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
Relevant formula name: Actual maximum assimilation rate (实际最大同化速率). Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Intercepted photosynthetically active radiation (截获光合有效辐射) Formula (LaTeX): IPAR = PAR \cdot (1 - e^{-k \cdot LAI}) Formula: IPAR = PAR * (1 - exp(-k * LAI)) Operator notes: * means multiplication, ...
3
Multiplicative with minimum stress
sensitivity
{ "Am": 49.4, "FCO2": 1, "FPA": 0.6900000000000001, "FT": 0.85, "NNI": 0.54, "WDF": 0.66 }
A photosynthesis calculation involves sensitivity analysis. The current measurements are Am=49.4 kg CO2/ha/h, FCO2=1.0 fraction, FPA=0.69 fraction, FT=0.85 fraction, NNI=0.54 fraction, WDF=0.66 fraction. A field technician asks what the actual maximum assimilation rate would become if FCO2 changed to 0.95. Report the n...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Actual maximum assimilation rate. Use the verified formula: \[AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF)\] In calculation-friendly notation, this is: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF). Substitute the relevant values: Am=49.4 kg CO2/ha/h, FCO2=0.95 fraction, FPA...
dev
Photosynthesis
0
CMF047
8.687
cropmath-v1
null
[ "CMF014", "CMF005" ]
{ "Day_Length_hour": 15.46, "F_CO2": 0.99, "F_T": 0.39, "F_Water": 0.66, "Photo_Rate_opt": 51.04 }
carbon_nitrogen_cycle
{ "expression": "Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432", "id": "CMF002", "latex": "GPP=P_{opt}F_TF_WF_{CO2}DL\\cdot0.0432", "name": "总初级生产力", "name_en": "carbon-nitrogen cycling gross primary production", "precision": 3, "unit": "g C/m2/day" }
CMF002_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling gross primary production (总初级生产力). Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smalle...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling crop water stress factor (作物水分胁迫因子) Formula (LaTeX): F_W=f(\theta,\theta_{wp},\theta_{min},\theta_{max}) Formula: F_Water = if Soil_Water<=Wilt_point: 0; if Soil_Water<Crop_W...
2
Multiplicative conversion
direct
{ "Day_Length_hour": 15.46, "F_CO2": 0.99, "F_T": 0.39, "F_Water": 0.66, "Photo_Rate_opt": 51.04 }
A carbon-nitrogen cycling photosynthesis calculation estimates carbon-nitrogen cycling gross primary production. The measured inputs are Photo_Rate_opt=51.04 umol CO2/m2/s, F_T=0.39 fraction, F_Water=0.66 fraction, F_CO2=0.99 fraction, Day_Length_hour=15.46 h. What is the carbon-nitrogen cycling gross primary productio...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling gross primary production. Use the verified formula: \[GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432\] In calculation-friendly notation, this is: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432. Substitute the relevant values: Photo_Rate_opt=51.04 u...
dev
carbon-nitrogen cycling photosynthesis
0
CMF014
6835.8
cropmath-v1
null
[ "CMF061", "CMF057" ]
{ "Biomass": 12428.7, "HI": 0.55 }
environmental_response
{ "expression": "Biomass * HI", "id": "CMF062", "latex": "Yield=Biomass\\cdot HI", "name": "环境响应产量", "name_en": "environmental-response yield", "precision": 1, "unit": "kg/ha" }
CMF062_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Paramet...
Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Paramet...
Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
Relevant formula name: environmental-response yield (环境响应产量). Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response water stress response (环境响应水分响应) Formula (LaTeX): F_W=\max(0,1-S_WARID) Formula: F_Water = max(0, 1 - S_Water * ARID) Operator notes: * means multiplication, / means division,...
1
Product
direct
{ "Biomass": 12428.7, "HI": 0.55 }
Given Biomass=12428.7 kg/ha, HI=0.55 fraction, calculate the environmental-response yield for an environmental-response formula system. The result should be in kg/ha.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response yield. Use the verified formula: \[Yield=Biomass\cdot HI\] In calculation-friendly notation, this is: Yield = Biomass * HI. Substitute the relevant values: Biomass=12428.7 kg/ha, HI=0.55 fraction. The computed value is 6835.8 kg/ha. Therefore, the final numeric ans...
dev
environmental-response formula system
1
CMF061
0.904
cropmath-v1
{ "new_value": 0.63, "old_value": 0.55, "parameter": "RPE" }
[ "CMF029", "CMF037" ]
{ "BFF": 0.78, "DTE": 0.904, "IE": 1.23, "PDT": 26.3, "RPE": 0.63 }
growth_yield
{ "expression": "if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0", "id": "CMF027", "latex": "DPE=DTE\\cdot IE,\\;DTE\\cdot RPE,\\;DTE,\\;DTE\\cdot BFF", "name": "每日生理效应", "name_en": "Daily physiological effectiveness", "precision": 3, "unit": "physiological days/day" }
CMF027_sensitivity_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means ...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ...
Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: physiological days/day
Relevant formula name: Daily physiological effectiveness (每日生理效应). Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the small...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: CO2 response factor (二氧化碳影响因子) Formula (LaTeX): F_{CO2}=1+\beta\ln(C_x/340) Formula: FCO2 = 1 + beta * ln(Cx / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp...
3
Stage-dependent product
sensitivity
{ "BFF": 0.78, "DTE": 0.904, "IE": 1.23, "PDT": 26.3, "RPE": 0.55 }
A phenology calculation involves sensitivity analysis. The current measurements are PDT=26.3 physiological days, DTE=0.904 fraction, IE=1.23 dimensionless, RPE=0.55 fraction, BFF=0.78 dimensionless. A field technician asks what the daily physiological effectiveness would become if RPE changed to 0.63. Report the new fi...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Daily physiological effectiveness. Use the verified formula: \[DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF\] In calculation-friendly notation, this is: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BFF; else: 0. Substitute the relevant values: PDT=26....
dev
Phenology
0
CMF029
0.500
cropmath-v1
null
[ "CMF005", "CMF007" ]
{ "Coef_K_Decom": 0.0026000000000000003, "Coef_K_Trans": 0.197, "F_notill": 0.97, "F_pH": 0.43, "F_temp": 0.649, "F_texture": 0.875, "F_water": 0.5660000000000001, "Pool": 1787 }
carbon_nitrogen_cycle
{ "expression": "Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans)", "id": "CMF009", "latex": "R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans})", "name": "碳库呼吸损失", "name_en": "carbon-nitrogen cycling carbon pool respiration loss", "precision": 3, "unit": "g C/m2/day" }
CMF009_chain_2_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失) Formula (LaTeX): R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans}) Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_wate...
Formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失) Formula (LaTeX): R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans}) Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means pow...
Formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失) Formula (LaTeX): R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans}) Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means pow...
Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失). Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/m...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling shoot nitrogen allocation (地上部氮分配量) Formula (LaTeX): N_{shoot}=N_{uptake}\frac{B_{shoot}}{B_{shoot}+B_{root}} Formula: N_shoot = Plant_TN_uptake * Biom_shoot / (Biom_shoot + ...
4
Chained multiplicative decomposition
chain_2
{ "Coef_K_Decom": 0.0026000000000000003, "Coef_K_Trans": 0.197, "F_notill": 0.97, "F_pH": 0.43, "F_temp": 0.649, "F_texture": 0.875, "F_water": 0.5660000000000001, "Pool": 1787 }
Given Pool=1787.0 g C/m2, Coef_K_Decom=0.0026 d-1, F_temp=0.649 fraction, F_water=0.566 fraction, F_texture=0.875 fraction, F_pH=0.43 fraction, F_notill=0.97 fraction, Coef_K_Trans=0.197 fraction, compute carbon-nitrogen cycling carbon pool respiration loss in carbon-nitrogen cycling soil carbon. This requires sequenti...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling carbon pool respiration loss. Use the verified formula: \[R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans})\] In calculation-friendly notation, this is: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_texture*F_pH*F_notill*(1-Coef_K_Trans). Substitute the re...
dev
carbon-nitrogen cycling soil carbon
1
CMF005
0.269
cropmath-v1
null
[ "CMF057", "CMF056" ]
{ "ExtremeT": 43.5, "MaxT": 33.1, "Tmax": 40.7 }
environmental_response
{ "expression": "if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0)", "id": "CMF058", "latex": "F_H=1,\\;0,\\;\\text{or}\\;1-\\frac{T_{max}-MaxT}{ExtremeT-MaxT}", "name": "环境响应高温响应", "name_en": "environmental-response heat stress response", "precision": 3, "unit": "fraction...
CMF058_direct_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response CO2 response (环境响应二氧化碳响应) Formula (LaTeX): F_{CO2}=f(CO2,CO2_{RUE}) Formula: F_CO2 = if CO2>=700: 1+CO2_RUE*350/100; else: max(CO2_RUE*CO2*0.01+1-0.01*350*CO2_RUE, 1...
Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means p...
Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means p...
Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: environmental-response heat stress response (环境响应高温响应). Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response CO2 response (环境响应二氧化碳响应) Formula (LaTeX): F_{CO2}=f(CO2,CO2_{RUE}) Formula: F_CO2 = if CO2>=700: 1+CO2_RUE*350/100; else: max(CO2_RUE*CO2*0.01+1-0.01*350*CO2_RUE, 1) Operator...
2
Piecewise linear stress
direct
{ "ExtremeT": 43.5, "MaxT": 33.1, "Tmax": 40.7 }
A environmental-response formula system calculation estimates environmental-response heat stress response. The measured inputs are Tmax=40.7 C, MaxT=33.1 C, ExtremeT=43.5 C. What is the simple heat stress response? Give the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response heat stress response. Use the verified formula: \[F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT}\] In calculation-friendly notation, this is: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0). Substitute the re...
dev
environmental-response formula system
0
CMF057
0.37
cropmath-v1
{ "new_value": 0.044, "old_value": 0.049, "parameter": "a" }
[ "CMF027", "CMF028" ]
{ "PDT": 50.7, "a": 0.044 }
growth_yield
{ "expression": "if PDT<28: 1; else: exp(-a*(PDT-28))", "id": "CMF030", "latex": "F_{PA}=1\\;(PDT<28),\\quad e^{-a(PDT-28)}\\;(PDT\\ge 28)", "name": "生理年龄因子", "name_en": "Physiological age factor", "precision": 2, "unit": "fraction" }
CMF030_sensitivity_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<...
Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula name: Physiological age factor (生理年龄因子) Formula (LaTeX): F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28) Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the...
Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Physiological age factor (生理年龄因子). Formula: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Daily physiological effectiveness (每日生理效应) Formula (LaTeX): DPE=DTE\cdot IE,\;DTE\cdot RPE,\;DTE,\;DTE\cdot BFF Formula: DPE = if PDT<8: DTE*IE; if PDT<18: DTE*RPE; if PDT<32: DTE; if PDT<57: DTE*BF...
3
Piecewise exponential decay
sensitivity
{ "PDT": 50.7, "a": 0.049 }
A photosynthesis calculation involves sensitivity analysis. The current measurements are PDT=50.7 physiological days, a=0.049 dimensionless. A field technician asks what the physiological age factor would become if a changed to 0.044. Report the new final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Physiological age factor. Use the verified formula: \[F_{PA}=1\;(PDT<28),\quad e^{-a(PDT-28)}\;(PDT\ge 28)\] In calculation-friendly notation, this is: FPA = if PDT<28: 1; else: exp(-a*(PDT-28)). Substitute the relevant values: PDT=50.7 physiological days, a=0.044 dimensionless. The comp...
dev
Photosynthesis
0
CMF027
0.57
cropmath-v1
null
[ "CMF048", "CMF046" ]
{ "B_above": 18531, "PDT": 40.8, "Y_grain": 6146 }
growth_yield
{ "expression": "1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39)))", "id": "CMF045", "latex": "PIS=1-PIGL-PIP", "name": "茎鞘分配指数", "name_en": "Stem partitioning index", "precision": 2, "unit": "fraction" }
CMF045_chain_2_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) m...
Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means na...
Formula name: Stem partitioning index (茎鞘分配指数) Formula (LaTeX): PIS=1-PIGL-PIP Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means na...
Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: frac...
Relevant formula name: Stem partitioning index (茎鞘分配指数). Formula: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and m...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes:...
4
Residual with piecewise components
chain_2
{ "B_above": 18531, "PDT": 40.8, "Y_grain": 6146 }
A dry matter partitioning module estimates Stem partitioning index using intermediate drivers. Use the provided inputs in sequence. The measurements are PDT=40.8 physiological days, Y_grain=6146.0 kg/ha, B_above=18531.0 kg/ha. Compute the stem partitioning index and give the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Stem partitioning index. Use the verified formula: \[PIS=1-PIGL-PIP\] In calculation-friendly notation, this is: PIS = 1 - (if PDT<26: 0.54-0.0046*PDT; else: 1.4532*exp(-0.0492*PDT)) - (Y_grain/B_above/0.87)/(1+exp(-0.2804*(PDT-39))). Substitute the relevant values: PDT=40.8 physiologica...
dev
Dry matter partitioning
0
CMF048
128.56
cropmath-v1
null
[ "CMF048", "CMF043" ]
{ "DTGA": 321.4, "Rg": 0.4 }
growth_yield
{ "expression": "Rg * DTGA", "id": "CMF046", "latex": "RG=R_g\\cdot DTGA", "name": "生长呼吸", "name_en": "Growth respiration", "precision": 2, "unit": "kg/ha/day" }
CMF046_direct_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) m...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula name: Growth respiration (生长呼吸) Formula (LaTeX): RG=R_g\cdot DTGA Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day Parameters: - Rg: growth r...
Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
Relevant formula name: Growth respiration (生长呼吸). Formula: RG = Rg * DTGA Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha/day
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Maintenance respiration (维持呼吸) Formula (LaTeX): RM=(0.0091-0.0001\cdot PDT)\cdot ABIOMASS\cdot Q_{10}^{(T-T_o)/10} Formula: RM = (0.0091 - 0.0001 * PDT) * ABIOMASS * Q10**((T-To)/10) Operator notes:...
1
Product
direct
{ "DTGA": 321.4, "Rg": 0.4 }
A respiration calculation estimates Growth respiration. The measured inputs are Rg=0.4 fraction, DTGA=321.4 kg/ha/day. What is the growth respiration? Give the final numeric value in kg/ha/day.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Growth respiration. Use the verified formula: \[RG=R_g\cdot DTGA\] In calculation-friendly notation, this is: RG = Rg * DTGA. Substitute the relevant values: Rg=0.4 fraction, DTGA=321.4 kg/ha/day. The computed value is 128.56 kg/ha/day. Therefore, the final numeric answer is \boxed{128.5...
dev
Respiration
0
CMF048
4114.4
cropmath-v1
null
[ "CMF053", "CMF032" ]
{ "AWSP": 4622.9, "grain_fraction": 0.89 }
growth_yield
{ "expression": "AWSP * grain_fraction", "id": "CMF054", "latex": "Y=AWSP\\cdot f_{grain}", "name": "稻谷干重产量", "name_en": "Dry grain yield", "precision": 1, "unit": "kg/ha" }
CMF054_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Specific leaf area (比叶面积) Formula (LaTeX): SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200) Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Op...
Formula name: Dry grain yield (稻谷干重产量) Formula (LaTeX): Y=AWSP\cdot f_{grain} Formula: Y = AWSP * grain_fraction Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Parameters: - A...
Formula name: Dry grain yield (稻谷干重产量) Formula (LaTeX): Y=AWSP\cdot f_{grain} Formula: Y = AWSP * grain_fraction Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Parameters: - A...
Formula: Y = AWSP * grain_fraction Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
Relevant formula name: Dry grain yield (稻谷干重产量). Formula: Y = AWSP * grain_fraction Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Specific leaf area (比叶面积) Formula (LaTeX): SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200) Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Operator not...
1
Product
direct
{ "AWSP": 4622.9, "grain_fraction": 0.89 }
Given AWSP=4622.9 kg/ha, grain_fraction=0.89 fraction, calculate the Dry grain yield for a yield formation. The result should be in kg/ha.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Dry grain yield. Use the verified formula: \[Y=AWSP\cdot f_{grain}\] In calculation-friendly notation, this is: Y = AWSP * grain_fraction. Substitute the relevant values: AWSP=4622.9 kg/ha, grain_fraction=0.89 fraction. The computed value is 4114.4 kg/ha. Therefore, the final numeric ans...
dev
Yield formation
1
CMF053
0.915
cropmath-v1
null
[ "CMF022", "CMF018" ]
{ "Q10": 3.04, "t_soil": 29.2 }
methane_emission
{ "expression": "Q10^((min(t_soil,30)-30)/10)", "id": "CMF023", "latex": "TI=Q_{10}^{(t_{sl}-30)/10}", "name": "甲烷温度指数", "name_en": "Methane temperature index", "precision": 3, "unit": "multiplier" }
CMF023_direct_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Methane temperature index (甲烷温度指数). Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Methane production (甲烷产生量) Formula (LaTeX): P=\max(0,0.27F_{Eh}(TI\cdot C_r+Com)) Formula: P = max(0, 0.27 * FEh * (TI * Cr + Com)) Operator notes: * means multiplication, / means division, ** or ^ ...
1
Q10 with temperature clipping
direct
{ "Q10": 3.04, "t_soil": 29.2 }
Given Q10=3.04 dimensionless, t_soil=29.2 C, calculate the Methane temperature index for a methane. The result should be in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Methane temperature index. Use the verified formula: \[TI=Q_{10}^{(t_{sl}-30)/10}\] In calculation-friendly notation, this is: TI = Q10^((min(t_soil,30)-30)/10). Substitute the relevant values: Q10=3.04 dimensionless, t_soil=29.2 C. The computed value is 0.915 fraction. Therefore, the fi...
dev
Methane
1
CMF022
3886.3
cropmath-v1
null
[ "CMF055", "CMF058" ]
{ "Biomass": 14393.7, "HI": 0.27 }
environmental_response
{ "expression": "Biomass * HI", "id": "CMF062", "latex": "Yield=Biomass\\cdot HI", "name": "环境响应产量", "name_en": "environmental-response yield", "precision": 1, "unit": "kg/ha" }
CMF062_direct_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, ex...
Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Paramet...
Formula name: environmental-response yield (环境响应产量) Formula (LaTeX): Yield=Biomass\cdot HI Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha Paramet...
Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
Relevant formula name: environmental-response yield (环境响应产量). Formula: Yield = Biomass * HI Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg/ha
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_...
1
Product
direct
{ "Biomass": 14393.7, "HI": 0.27 }
In an environmental-response formula system, the environmental-response yield is computed as part of environmental-response formula calculation. With Biomass=14393.7 kg/ha, HI=0.27 fraction, determine the numeric value in kg/ha.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response yield. Use the verified formula: \[Yield=Biomass\cdot HI\] In calculation-friendly notation, this is: Yield = Biomass * HI. Substitute the relevant values: Biomass=14393.7 kg/ha, HI=0.27 fraction. The computed value is 3886.3 kg/ha. Therefore, the final numeric ans...
dev
environmental-response formula system
2
CMF055
1.000
cropmath-v1
{ "new_value": 28.7, "old_value": 25, "parameter": "Tmax" }
[ "CMF055", "CMF057" ]
{ "ExtremeT": 47.1, "MaxT": 34.3, "Tmax": 28.7 }
environmental_response
{ "expression": "if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0)", "id": "CMF058", "latex": "F_H=1,\\;0,\\;\\text{or}\\;1-\\frac{T_{max}-MaxT}{ExtremeT-MaxT}", "name": "环境响应高温响应", "name_en": "environmental-response heat stress response", "precision": 3, "unit": "fraction...
CMF058_sensitivity_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F...
Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means p...
Formula name: environmental-response heat stress response (环境响应高温响应) Formula (LaTeX): F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT} Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means p...
Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: environmental-response heat stress response (环境响应高温响应). Formula: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: environmental-response daily biomass increment (环境响应日生物量增量) Formula (LaTeX): dB=10RUEfSolarSRADF_{CO2}F_T\min(F_W,F_H) Formula: dBiomass = 10 * RUE * fSolar * SRAD * F_CO2 * F_Temp * min(F_Water, F_...
3
Piecewise linear stress
sensitivity
{ "ExtremeT": 47.1, "MaxT": 34.3, "Tmax": 25 }
In environmental-response formula system, we analyze how environmental-response heat stress response responds to parameter changes. Baseline: Tmax=25.0 C, MaxT=34.3 C, ExtremeT=47.1 C. After changing Tmax from 25.0 to 28.7, compute the new environmental-response heat stress response. Give the numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as environmental-response heat stress response. Use the verified formula: \[F_H=1,\;0,\;\text{or}\;1-\frac{T_{max}-MaxT}{ExtremeT-MaxT}\] In calculation-friendly notation, this is: F_Heat = if Tmax<=MaxT: 1; if Tmax>ExtremeT: 0; else: max(1-(Tmax-MaxT)/(ExtremeT-MaxT), 0). Substitute the re...
dev
environmental-response formula system
2
CMF055
0.395
cropmath-v1
{ "new_value": 22.6, "old_value": 20.5, "parameter": "t_soil" }
[ "CMF020", "CMF025" ]
{ "Q10": 3.51, "t_soil": 22.6 }
methane_emission
{ "expression": "Q10^((min(t_soil,30)-30)/10)", "id": "CMF023", "latex": "TI=Q_{10}^{(t_{sl}-30)/10}", "name": "甲烷温度指数", "name_en": "Methane temperature index", "precision": 3, "unit": "multiplier" }
CMF023_sensitivity_t0_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Water-content decomposition factor (水分分解因子) Formula (LaTeX): WI=0.49e^{3.88W_c-5.4W_c^2} Formula: WI = 0.49 * exp(3.88 * WaterC - 5.4 * WaterC^2) Operator notes: * means multiplication, / ...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula name: Methane temperature index (甲烷温度指数) Formula (LaTeX): TI=Q_{10}^{(t_{sl}-30)/10} Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit...
Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Methane temperature index (甲烷温度指数). Formula: TI = Q10^((min(t_soil,30)-30)/10) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Fresh organic matter carbon decomposition (新鲜有机质碳分解量) Formula (LaTeX): OMNC=WI\cdot SI\cdot TI\cdot0.027\cdot OMN Formula: OMNC = WI * SI * TI * 0.027 * OMN Operator notes: * means multiplication, /...
2
Q10 with temperature clipping
sensitivity
{ "Q10": 3.51, "t_soil": 20.5 }
A methane calculation involves sensitivity analysis. The current measurements are Q10=3.51 dimensionless, t_soil=20.5 C. A field technician asks what the methane temperature index would become if t_soil changed to 22.6. Report the new final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Methane temperature index. Use the verified formula: \[TI=Q_{10}^{(t_{sl}-30)/10}\] In calculation-friendly notation, this is: TI = Q10^((min(t_soil,30)-30)/10). Substitute the relevant values: Q10=3.51 dimensionless, t_soil=22.6 C. The computed value is 0.395 fraction. Therefore, the fi...
dev
Methane
0
CMF020
3.432
cropmath-v1
null
[ "CMF012", "CMF010" ]
{ "Day_Length_hour": 10.37, "F_CO2": 1.28, "F_T": 0.49, "F_Water": 0.33, "Photo_Rate_opt": 37.01 }
carbon_nitrogen_cycle
{ "expression": "Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432", "id": "CMF002", "latex": "GPP=P_{opt}F_TF_WF_{CO2}DL\\cdot0.0432", "name": "总初级生产力", "name_en": "carbon-nitrogen cycling gross primary production", "precision": 3, "unit": "g C/m2/day" }
CMF002_chain_2_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling soil pH decomposition factor (土壤pH分解因子) Formula (LaTeX): F_{pH}=\frac{1}{1+e^{2.5(5-pH)}} Formula: F_pH = 1 / (1 + exp(2.5 * (5 - pH))) Operator notes: * means mult...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling gross primary production (总初级生产力). Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smalle...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling soil carbon water factor (土壤碳分解水分因子) Formula (LaTeX): F_W=0.49e^{3.88W-5.4W^2} Formula: F_W_soil = if Soil_Water>=Saturate_Water: 0.65; else: 0.49*exp(3.88*(Soil_Water/BD)-5....
4
Multiplicative conversion
chain_2
{ "Day_Length_hour": 10.37, "F_CO2": 1.28, "F_T": 0.49, "F_Water": 0.33, "Photo_Rate_opt": 37.01 }
A carbon-nitrogen cycling photosynthesis module estimates carbon-nitrogen cycling gross primary production using intermediate drivers. Use the provided inputs in sequence. The measurements are Photo_Rate_opt=37.01 umol CO2/m2/s, F_T=0.49 fraction, F_Water=0.33 fraction, F_CO2=1.28 fraction, Day_Length_hour=10.37 h. Com...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling gross primary production. Use the verified formula: \[GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432\] In calculation-friendly notation, this is: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432. Substitute the relevant values: Photo_Rate_opt=37.01 u...
dev
carbon-nitrogen cycling photosynthesis
0
CMF012
17.02
cropmath-v1
null
[ "CMF053", "CMF028" ]
{ "Am": 31.1, "FCO2": 1.2, "FPA": 0.92, "FT": 0.67, "NNI": 0.74, "WDF": 0.92 }
growth_yield
{ "expression": "Am * FCO2 * FPA * FT * min(NNI, WDF)", "id": "CMF026", "latex": "AMAX=Am\\cdot F_{CO2}\\cdot F_{PA}\\cdot F_T\\cdot\\min(NNI,WDF)", "name": "实际最大同化速率", "name_en": "Actual maximum assimilation rate", "precision": 2, "unit": "kg CO2/ha/h" }
CMF026_chain_2_t1_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and ...
Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
Relevant formula name: Actual maximum assimilation rate (实际最大同化速率). Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: kg CO2/ha/h
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Specific leaf area (比叶面积) Formula (LaTeX): SLA=(-0.0002GDD^2-0.5604GDD+581.04)(SLA_c/200) Formula: SLA = if GDD<=1200: (-0.0002*GDD^2-0.5604*GDD+581.04)*(SLAc/200); else: 200*(SLAc/200) Operator not...
4
Multiplicative with minimum stress
chain_2
{ "Am": 31.1, "FCO2": 1.2, "FPA": 0.92, "FT": 0.67, "NNI": 0.74, "WDF": 0.92 }
Given Am=31.1 kg CO2/ha/h, FCO2=1.2 fraction, FPA=0.92 fraction, FT=0.67 fraction, NNI=0.74 fraction, WDF=0.92 fraction, compute Actual maximum assimilation rate in photosynthesis. This requires sequential calculation through intermediate variables. Report the final numeric value in kg CO2/ha/h.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Actual maximum assimilation rate. Use the verified formula: \[AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF)\] In calculation-friendly notation, this is: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF). Substitute the relevant values: Am=31.1 kg CO2/ha/h, FCO2=1.2 fraction, FPA=...
dev
Photosynthesis
1
CMF053
1.310
cropmath-v1
{ "new_value": 0.68, "old_value": 0.75, "parameter": "Coef_B_CO2" }
[ "CMF002", "CMF013" ]
{ "CO2": 536, "Coef_B_CO2": 0.68 }
carbon_nitrogen_cycle
{ "expression": "1 + Coef_B_CO2 * ln(CO2 / 340)", "id": "CMF001", "latex": "F_{CO2}=1+B\\ln(CO2/340)", "name": "作物二氧化碳施肥因子", "name_en": "carbon-nitrogen cycling CO2 fertilization factor", "precision": 3, "unit": "multiplier" }
CMF001_sensitivity_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0...
Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smal...
Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smal...
Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子). Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: ...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Oper...
2
Logarithmic
sensitivity
{ "CO2": 536, "Coef_B_CO2": 0.75 }
In carbon-nitrogen cycling photosynthesis, we analyze how carbon-nitrogen cycling CO2 fertilization factor responds to parameter changes. Baseline: CO2=536.0 ppm, Coef_B_CO2=0.75 dimensionless. After changing Coef_B_CO2 from 0.75 to 0.68, compute the new carbon-nitrogen cycling CO2 fertilization factor. Give the numeri...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling CO2 fertilization factor. Use the verified formula: \[F_{CO2}=1+B\ln(CO2/340)\] In calculation-friendly notation, this is: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340). Substitute the relevant values: CO2=536.0 ppm, Coef_B_CO2=0.68 dimensionless. The computed value is 1...
dev
carbon-nitrogen cycling photosynthesis
2
CMF002
0.94
cropmath-v1
null
[ "CMF050", "CMF026" ]
{ "PDT": 28.5, "Qt": 6.2, "Tmean": 16.2 }
growth_yield
{ "expression": "if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1", "id": "CMF039", "latex": "LTF=1-\\frac{4.6+0.054Q_t^{1.56}}{100}", "name": "低温结实因子", "name_en": "Low-temperature fertility factor", "precision": 2, "unit": "fraction" }
CMF039_branch_t1_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes...
Formula name: Low-temperature fertility factor (低温结实因子) Formula (LaTeX): LTF=1-\frac{4.6+0.054Q_t^{1.56}}{100} Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, an...
Formula name: Low-temperature fertility factor (低温结实因子) Formula (LaTeX): LTF=1-\frac{4.6+0.054Q_t^{1.56}}{100} Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, an...
Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Low-temperature fertility factor (低温结实因子). Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Ou...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Relative photoperiod effectiveness (相对光周期效应) Formula (LaTeX): RPE=1,\;1-PS(P-P_o)^2,\;0 Formula: RPE = if P<=Po: 1; if P<=Po+sqrt(1/PS): 1-PS*(P-Po)^2; else: 0 Operator notes: * means multiplication...
4
Piecewise power penalty
branch
{ "PDT": 28.5, "Qt": 6.2, "Tmean": 16.2 }
For temperature stress, compute the Low-temperature fertility factor. The inputs are PDT=28.5 physiological days, Tmean=16.2 C, Qt=6.2 C day. Note that this formula uses piecewise logic depending on parameter values. Report the final numeric value in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Low-temperature fertility factor. Use the verified formula: \[LTF=1-\frac{4.6+0.054Q_t^{1.56}}{100}\] In calculation-friendly notation, this is: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1. Substitute the relevant values: PDT=28.5 physiological days, Tmean=16.2 ...
dev
Temperature stress
1
CMF050
0.900
cropmath-v1
null
[ "CMF009", "CMF008" ]
{ "Coef_T_M": 0.16, "Td": 19.3, "Tmax_active": 42, "Tmin_active": 3, "Topt_active": 25 }
carbon_nitrogen_cycle
{ "expression": "if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M)", "id": "CMF013", "latex": "F_T=\\left(\\frac{T_d-T_{min}}{T_{opt}-T_{min}}\\right)^{1+M}\\left(\\frac{T_{max}-T_d}{T_{max}-T_{opt}...
CMF013_direct_t0_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\rig...
Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M} Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^...
Formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子) Formula (LaTeX): F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M} Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^...
Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M) Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max...
Relevant formula name: carbon-nitrogen cycling crop temperature activity factor (作物温度活性因子). Formula: F_T = if Td<=Tmin_active or Td>=Tmax_active: 0; else: ((Td-Tmin_active)/(Topt_active-Tmin_active))^(1+Coef_T_M) * ((Tmax_active-Td)/(Tmax_active-Topt_active))^(1-Coef_T_M) Operator notes: * means multiplication, / means...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling carbon pool respiration loss (碳库呼吸损失) Formula (LaTeX): R=PoolK F_TF_WF_{texture}F_{pH}F_{notill}(1-K_{trans}) Formula: Respiration = Pool*Coef_K_Decom*F_temp*F_water*F_textur...
2
Beta temperature response
direct
{ "Coef_T_M": 0.16, "Td": 19.3, "Tmax_active": 42, "Tmin_active": 3, "Topt_active": 25 }
A carbon-nitrogen cycling stress calculation estimates carbon-nitrogen cycling crop temperature activity factor. The measured inputs are Td=19.3 C, Tmin_active=3.0 C, Topt_active=25.0 C, Tmax_active=42.0 C, Coef_T_M=0.16 dimensionless. What is the carbon-nitrogen cycling crop temperature activity factor? Give the final...
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling crop temperature activity factor. Use the verified formula: \[F_T=\left(\frac{T_d-T_{min}}{T_{opt}-T_{min}}\right)^{1+M}\left(\frac{T_{max}-T_d}{T_{max}-T_{opt}}\right)^{1-M}\] In calculation-friendly notation, this is: F_T = if Td<=Tmin_active or Td>=Tmax_active:...
dev
carbon-nitrogen cycling stress
0
CMF009
0.95
cropmath-v1
null
[ "CMF026", "CMF046" ]
{ "PDT": 30.8, "Qt": 4.3, "Tmean": 20.6 }
growth_yield
{ "expression": "if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1", "id": "CMF039", "latex": "LTF=1-\\frac{4.6+0.054Q_t^{1.56}}{100}", "name": "低温结实因子", "name_en": "Low-temperature fertility factor", "precision": 2, "unit": "fraction" }
CMF039_branch_t2_0001
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes...
Formula name: Low-temperature fertility factor (低温结实因子) Formula (LaTeX): LTF=1-\frac{4.6+0.054Q_t^{1.56}}{100} Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, an...
Formula name: Low-temperature fertility factor (低温结实因子) Formula (LaTeX): LTF=1-\frac{4.6+0.054Q_t^{1.56}}{100} Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, an...
Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: fraction
Relevant formula name: Low-temperature fertility factor (低温结实因子). Formula: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Ou...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: Actual maximum assimilation rate (实际最大同化速率) Formula (LaTeX): AMAX=Am\cdot F_{CO2}\cdot F_{PA}\cdot F_T\cdot\min(NNI,WDF) Formula: AMAX = Am * FCO2 * FPA * FT * min(NNI, WDF) Operator notes: * means ...
4
Piecewise power penalty
branch
{ "PDT": 30.8, "Qt": 4.3, "Tmean": 20.6 }
Calculate Low-temperature fertility factor in temperature stress with these inputs: PDT=30.8 physiological days, Tmean=20.6 C, Qt=4.3 C day. The computation may follow different paths based on piecewise thresholds. Give the numeric result in fraction.
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as Low-temperature fertility factor. Use the verified formula: \[LTF=1-\frac{4.6+0.054Q_t^{1.56}}{100}\] In calculation-friendly notation, this is: LTF = if 26<=PDT<=39 and Tmean<22: 1-(4.6+0.054*Qt^1.56)/100; else: 1. Substitute the relevant values: PDT=30.8 physiological days, Tmean=20.6 ...
dev
Temperature stress
2
CMF026
3.943
cropmath-v1
{ "new_value": 10.12, "old_value": 11.24, "parameter": "Day_Length_hour" }
[ "CMF001", "CMF007" ]
{ "Day_Length_hour": 10.12, "F_CO2": 1.15, "F_T": 0.64, "F_Water": 0.44, "Photo_Rate_opt": 27.85 }
carbon_nitrogen_cycle
{ "expression": "Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432", "id": "CMF002", "latex": "GPP=P_{opt}F_TF_WF_{CO2}DL\\cdot0.0432", "name": "总初级生产力", "name_en": "carbon-nitrogen cycling gross primary production", "precision": 3, "unit": "g C/m2/day" }
CMF002_sensitivity_t2_0000
false
Candidate formulas are listed below. Select the physiologically appropriate formula before calculating. Candidate 1: Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula name: carbon-nitrogen cycling gross primary production (总初级生产力) Formula (LaTeX): GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432 Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means nat...
Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smaller/larger value. Output unit: g C/m2/day
Relevant formula name: carbon-nitrogen cycling gross primary production (总初级生产力). Formula: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432 Operator notes: * means multiplication, / means division, ** or ^ means power, exp(x) means e^x, ln(x) means natural logarithm, and min/max select the smalle...
A retrieved formula is listed below. It may look relevant, but use it only if it truly matches the problem. Formula name: carbon-nitrogen cycling CO2 fertilization factor (作物二氧化碳施肥因子) Formula (LaTeX): F_{CO2}=1+B\ln(CO2/340) Formula: F_CO2 = 1 + Coef_B_CO2 * ln(CO2 / 340) Operator notes: * means multiplication, / means...
3
Multiplicative conversion
sensitivity
{ "Day_Length_hour": 11.24, "F_CO2": 1.15, "F_T": 0.64, "F_Water": 0.44, "Photo_Rate_opt": 27.85 }
In carbon-nitrogen cycling photosynthesis, we analyze how carbon-nitrogen cycling gross primary production responds to parameter changes. Baseline: Photo_Rate_opt=27.85 umol CO2/m2/s, F_T=0.64 fraction, F_Water=0.44 fraction, F_CO2=1.15 fraction, Day_Length_hour=11.24 h. After changing Day_Length_hour from 11.24 to 10....
{ "C": "<|im_start|>system\nYou are a scientific reasoning assistant. Solve the following problem step by step. Show your reasoning clearly, then end with exactly one line in this format: The answer is [number].\nDo not write multiple answers. Do not include units in the final line.\nExample:\nStep 1: ...\nStep 2: .....
Identify the target quantity as carbon-nitrogen cycling gross primary production. Use the verified formula: \[GPP=P_{opt}F_TF_WF_{CO2}DL\cdot0.0432\] In calculation-friendly notation, this is: GPP = Photo_Rate_opt * F_T * F_Water * F_CO2 * Day_Length_hour * 0.0432. Substitute the relevant values: Photo_Rate_opt=27.85 u...
dev
carbon-nitrogen cycling photosynthesis
2
CMF001