* Definition of limit 2.5 x co2 results mat.up(t) = 1491; solve CO2 maximizing UTILITY using nlp ; solve CO2 maximizing UTILITY using nlp ; solve CO2 maximizing UTILITY using nlp ; * Definition of lim25xco2 results Parameters Year(t) Date lim25xco2_y(t) lim25xco2_cpc(t) lim25xco2_s(t) lim25xco2_indem(t) lim25xco2_sigma(t) lim25xco2_tatm(t) lim25xco2_mat(t) lim25xco2_tax(t) lim25xco2_ri(t) lim25xco2_rr(t) lim25xco2_al(t) lim25xco2_forcoth(t) lim25xco2_l(t) lim25xco2_etree(t) lim25xco2_yy(t) lim25xco2_cc(t) lim25xco2_miu(t) lim25xco2_wem(t) lim25xco2_dam(t) lim25xco2_abate(t) lim25xco2_mcemis(t) lim25xco2_utility ; Year(t) = 2005 +10*(ord(t)-1); lim25xco2_y(t)=y.l(t); lim25xco2_cpc(t)=cpc.l(t); lim25xco2_s(t)=s.l(t) ; lim25xco2_indem(t)= e.l(t)-etree(t);; lim25xco2_sigma(t)=sigma(t) ; lim25xco2_tatm(t)=tatm.l(t) ; lim25xco2_mat(t)=mat.l(t) ; lim25xco2_tax(t)=-1*ee.m(t)*1000/(kk.m(t)+.0000001) ; lim25xco2_ri(t)=ri.l(t); lim25xco2_rr(t)=rr(t) ; lim25xco2_al(t)=al(t) ; lim25xco2_forcoth(t)=forcoth(t); lim25xco2_l(t)=l(t); lim25xco2_etree(t)=etree(t); lim25xco2_yy(t)=yy.m(t) ; lim25xco2_cc(t)=cc.m(t) ; lim25xco2_miu(t)=miu.l(t) ; lim25xco2_wem(t)= e.l(t); lim25xco2_dam(t)= damages.l(t); lim25xco2_abate(t) = abatecost.l(t); lim25xco2_utility=utility.l ; lim25xco2_mcemis(t)= expcost2*cost1(t)*miu.l(t)**(expcost2-1)/sigma(t)*1000;