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. Al, 1") = a0
URL : https://hal.archives-ouvertes.fr/hal-00787388

*. ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^, Expectation of discounted utility *control * a(t,s(s1,s2))

*. Seq, T) Savings rate equation RIEQ Interest rate equation

*. ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^-*, Measurability of controls $Ontext * Preferable de tout egaliser a un seul commun a tous p.ex. s

U. J. =e= and . Sum, (s)* 10, pp.1-2
URL : https://hal.archives-ouvertes.fr/in2p3-00116684

*. ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^-*, Solution options option iterlim = 99900; option reslim = 99999; option solprint = on; option limrow = 0; 29 * Carbon cycle is from William D. Nordhaus. Code is from Philippe Ambrosi. 30 * Temperature evolution comes from S.H. Schneider. Calibration and code 31 * from Philipe Ambrosi, 32 * Damage function from Patrice Dumas and Minh Ha-Duong. Calibration and code 33 * from Philippe Ambrosi 34 * Other contributions by, p.35

D. Tfirst and T. , 79 tinfo date of arrival of info (ordinal) **computed 80 81 SRTP Initial rate of social time preference per year /.03/ 82 DR Decline rate of social time preference per year /.0025719/ 83 84 GL0 Growth rate of population per decade /.157/ 85 DLAB Decline rate of pop growth per decade /.2220/ 86 87 A0 Initial level of total factor productivity /.01685/ 88 GA0 Initial growth rate for technology per decade /.055/ 89 DELA Decline rate of technol. change per decade /.0016/ 90 DK Depreciation rate on capital per year /.10/ 91 GAMA Capital elasticity in production function, pp.75-7601600052, 1990.

. Bio, t,s) conc. biosphere + oc. sup date t (GtC, p.242

. Atmo, s) =e= Ctrans11*Atmo(t,s) + Ctrans12*Bio(t,s) 341 + 10*SIGMA(T)*(1-a(T,s)), T, vol.1