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For a Body Emitting Blackbody Radiation,the Total Power Emitted Is

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For a body emitting blackbody radiation,the total power emitted is proportional to the 4th power of the body's absolute temperature: For a body emitting blackbody radiation,the total power emitted is proportional to the 4th power of the body's absolute temperature:   (T in kelvins) and the wavelength of the emitted EM radiation that has the highest intensity is inversely proportional to the body's absolute temperature according to:   (   in meters,T in kelvins) Assume an object is emitting blackbody radiation. -If the Kelvin temperature of an object is doubled,the amount of radiant energy emitted each second is __________ the original amount. (T in kelvins)
and the wavelength of the emitted EM radiation that has the highest intensity is inversely proportional to the body's absolute temperature according to: For a body emitting blackbody radiation,the total power emitted is proportional to the 4th power of the body's absolute temperature:   (T in kelvins) and the wavelength of the emitted EM radiation that has the highest intensity is inversely proportional to the body's absolute temperature according to:   (   in meters,T in kelvins) Assume an object is emitting blackbody radiation. -If the Kelvin temperature of an object is doubled,the amount of radiant energy emitted each second is __________ the original amount. ( For a body emitting blackbody radiation,the total power emitted is proportional to the 4th power of the body's absolute temperature:   (T in kelvins) and the wavelength of the emitted EM radiation that has the highest intensity is inversely proportional to the body's absolute temperature according to:   (   in meters,T in kelvins) Assume an object is emitting blackbody radiation. -If the Kelvin temperature of an object is doubled,the amount of radiant energy emitted each second is __________ the original amount. in meters,T in kelvins)
Assume an object is emitting blackbody radiation.
-If the Kelvin temperature of an object is doubled,the amount of radiant energy emitted each second is __________ the original amount.

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