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<math>CD_{r}=\frac{YL_{r,t=1}}{{KAG_{r,t=1}^{CDALF_{r,s=1}}}*{LABS_{r,s=1,t=1}^{(1-CDALF_{r,s=1})}}}</math> BLOOP <math>ClimateEffect_{t+1}=100*(\frac{e^{-0.5*\frac{(TO_{r}+DeltaT_{r}-Topt)^{2}}{SigmaTsqd}}*ln(PO_{r}*(\frac{DeltaP_{r}}{100}+1))}{e^{-0.5*\frac{(TO_{r}-Topt)^{2}}{SigmaTsqd}*ln(PO_{r})}-1)</math>
<math>CD_{r}=\frac{YL_{r,t=1}}&#x7B;&#x7B;KAG_{r,t=1}^{CDALF_{r,s=1&#x7D;&#x7D;}*{LABS_{r,s=1,t=1}^{(1-CDALF_{r,s=1})}}}</math> BLOOP <math>ClimateEffect_{t+1}=100*(\frac{e^{-0.5*\frac{(TO_{r}+DeltaT_{r}-Topt)^{2}}{SigmaTsqd}}*ln(PO_{r}*(\frac{DeltaP_{r}}{100}+1))}{e^{-0.5*\frac{(TO_{r}-Topt)^{2}}{SigmaTsqd}*ln(PO_{r})}-1)</math> \dfrac{ \tfrac{1}{2}[1-(\tfrac{1}{2})^n] }{ 1-\tfrac{1}{2} } BLOOP <math>ProdCost_{r,f=3,t}=FISH_{r,t}*FPRI_{r,f=2,t+1}</math>
 
\dfrac{ \tfrac{1}{2}[1-(\tfrac{1}{2})^n] }{ 1-\tfrac{1}{2} } BLOOP <math>ProdCost_{r,f=3,t}=FISH_{r,t}*FPRI_{r,f=2,t+1}

Revision as of 17:47, 10 April 2017

Failed to parse (syntax error): {\displaystyle CD_{r}=\frac{YL_{r,t=1}}&#x7B;&#x7B;KAG_{r,t=1}^{CDALF_{r,s=1&#x7D;&#x7D;}*{LABS_{r,s=1,t=1}^{(1-CDALF_{r,s=1})}}}} BLOOP Failed to parse (syntax error): {\displaystyle ClimateEffect_{t+1}=100*(\frac{e^{-0.5*\frac{(TO_{r}+DeltaT_{r}-Topt)^{2}}{SigmaTsqd}}*ln(PO_{r}*(\frac{DeltaP_{r}}{100}+1))}{e^{-0.5*\frac{(TO_{r}-Topt)^{2}}{SigmaTsqd}*ln(PO_{r})}-1)} \dfrac{ \tfrac{1}{2}[1-(\tfrac{1}{2})^n] }{ 1-\tfrac{1}{2} } BLOOP