Question: QUESTION 9 2 points During a nuclear explosion, the core of the explosion reaches temperatures of about 10,000,000 K. What wavelength of light would be

 QUESTION 9 2 points During a nuclear explosion, the core of

QUESTION 9 2 points During a nuclear explosion, the core of the explosion reaches temperatures of about 10,000,000 K. What wavelength of light would be emitted by such explosion? QUESTION 10 2 points What is the lowest temperature that will cause a blackbody to emit radiation that peaks in the visible light range? (Hint: this is going to be a very large number!) QUESTION 11 2 points The equation for the power emitted by the human body is P= (5.67x 10-8) AT4. If the area of the human body is 3.5 m2, what is the power radiated by the human body when the temperature is 25 degrees celsius?QUESTION 9 2 points During a nuclear explosion, the core of the explosion reaches temperatures of about 10,000,000 K. What wavelength of light would be emitted by such explosion? QUESTION 10 2 points What is the lowest temperature that will cause a blackbody to emit radiation that peaks in the visible light range? (Hint: this is going to be a very large number!) QUESTION 11 2 points The equation for the power emitted by the human body is P= (5.67x 10-8) AT4. If the area of the human body is 3.5 m2, what is the power radiated by the human body when the temperature is 25 degrees celsius

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