Question 9 The radius of a star is 3.79 x 10° m, and its total power output is 9.92 x 1026 W. Find Amax for the star, assuming the star's surface emits as a black body. Take the Stefan-Boltzmann constant to be o = 5.670*10*8 W/m2K4. Give your answer in nanometers to the nearest 1nm. Your Answer: Answer
Question 9 The radius of a star is 3.79 x 10° m, and its total power output is 9.92 x 1026 W. Find Amax for the star, assuming the star's surface emits as a black body. Take the Stefan-Boltzmann constant to be o = 5.670*10*8 W/m2K4. Give your answer in nanometers to the nearest 1nm. Your Answer: Answer
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The radius of a star is 3.79 x 10° m, and its total power output is 9.92 x 1026
W. Find Amax for the star, assuming the star's surface emits as a black body.
Take the Stefan-Boltzmann constant to be o = 5.670*108 W/m2K4.
Give your answer in nanometers to the nearest 1nm.
Your Answer:
Answer"
Transcribed Image Text:Question 9
The radius of a star is 3.79 x 10° m, and its total power output is 9.92 x 1026
W. Find Amax for the star, assuming the star's surface emits as a black body.
Take the Stefan-Boltzmann constant to be o = 5.670*108 W/m2K4.
Give your answer in nanometers to the nearest 1nm.
Your Answer:
Answer
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