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please help me to do question 2.3 with a clear solution. thank you very much log am to estimate the incoming solar flux of the

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please help me to do question 2.3 with a clear solution. thank you very much

log am to estimate the incoming solar flux of the above "planets"? Estimate their blackbody equivalent temperature? Plot the results: surface temperature and blackbody equivalent temperature versus - distance. Comment on the obtained results! 2.3 Parameterizing Albedo Planetary albedo depends on surface temperature. Let's assume the following relations -IfTsf > T,and , -!and Tf -T If land icelanddTi where aice 0.6: 1nd-0,32 "0.62, Tee-_10C is the temperature where the Earth becomes a Snowball, llan,-10 C/i remains in the nowadays state. is the temperature where the Earth 1) Write a python program to estimate the equilibrium surface temperature with the initial temperature varies from 13'C to 3'C with a step of 1'C. Plot a figure showing the dependency of the equilibrium temperature on the inital one. The solar constamt keeps unchanged at So 1368W/m Write a python program to estimate the equilibrium surface temperature with a changing solar flux S (S/So varies from 0.2 to 2 with a step of 0.05). The initial temperature varies from 15'C down to -15 C with a step of l'C. 2) log am to estimate the incoming solar flux of the above "planets"? Estimate their blackbody equivalent temperature? Plot the results: surface temperature and blackbody equivalent temperature versus - distance. Comment on the obtained results! 2.3 Parameterizing Albedo Planetary albedo depends on surface temperature. Let's assume the following relations -IfTsf > T,and , -!and Tf -T If land icelanddTi where aice 0.6: 1nd-0,32 "0.62, Tee-_10C is the temperature where the Earth becomes a Snowball, llan,-10 C/i remains in the nowadays state. is the temperature where the Earth 1) Write a python program to estimate the equilibrium surface temperature with the initial temperature varies from 13'C to 3'C with a step of 1'C. Plot a figure showing the dependency of the equilibrium temperature on the inital one. The solar constamt keeps unchanged at So 1368W/m Write a python program to estimate the equilibrium surface temperature with a changing solar flux S (S/So varies from 0.2 to 2 with a step of 0.05). The initial temperature varies from 15'C down to -15 C with a step of l'C. 2)

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