surface Consider the earth to be a black body with average 14 temperture 15 C and 2898 equal to 5.1X10" m². By (λ ), find applying Wien's displacement rule (X max (Sum) = 7(K) is radiated by the earth the enter rate at which energy (288k) and the wavelength at which maximum power is radiated. Compare this peak wavelength with that for a 5800k blackbody (the sun). ( 0 = 5.67 x 108 W/m² K², 4 areq
surface Consider the earth to be a black body with average 14 temperture 15 C and 2898 equal to 5.1X10" m². By (λ ), find applying Wien's displacement rule (X max (Sum) = 7(K) is radiated by the earth the enter rate at which energy (288k) and the wavelength at which maximum power is radiated. Compare this peak wavelength with that for a 5800k blackbody (the sun). ( 0 = 5.67 x 108 W/m² K², 4 areq
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![black body with average
equal to 5.1x1014 m²
surface
Consider the earth to be a
temperture
15 °C
and area
By
7(K)
applying
Wien's displacement rule (λ max (sum) = 1(k) ), find
rate at which energy
the exer
is radiated by the earth
(288k)
and the wavelength at which maximum power
is radiated. Compare this peak wavelength with that for a
5800k blackbody (the sun). ( 0 = 5.67 x 108 W/m² 1²)
-8](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5fef8308-1d4b-42ec-a94f-867561a3203c%2F376cdc99-444e-4a62-811c-5161774584bf%2F0s8cdkq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:black body with average
equal to 5.1x1014 m²
surface
Consider the earth to be a
temperture
15 °C
and area
By
7(K)
applying
Wien's displacement rule (λ max (sum) = 1(k) ), find
rate at which energy
the exer
is radiated by the earth
(288k)
and the wavelength at which maximum power
is radiated. Compare this peak wavelength with that for a
5800k blackbody (the sun). ( 0 = 5.67 x 108 W/m² 1²)
-8
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