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In solar radiation, the intensity of rad...

In solar radiation, the intensity of radiation is maximum around the wavelength `lambda_(m)`. If R is the radius of the sun and c is the velocity of light, the mass lost by the sum per unit time is proportional to

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The power radiated by a black body is P, and it radiates maximum energy around the wavelength lambda_(0) . If the temperature of the black body is now changed so that it radiates maximum energy around a wavelength 3lambda_(0)//4 , the power radiated by it will increase by a factor of

The power radiated by a black body is P, and it radiates maximum energy around the wavelength lambda_(0) . If the temperature of the black body is now changed so that it radiates maximum energy around a wavelength 3lambda_(0)//4 , the power radiated by it will increase by a factor of

The power radiated by a black body is P, and it radiates maximum energy around thee wavelength lambda_(0) . If the temperature of the black body is now changed so that it radiates maximum energy around a wavelength 3lambda_(0)//4 , the power radiated by it will increase by a factor of

The power radiated by a black is P and it radiates maximum energy around the wavelength lambda_(0) If the temperature of the black body is now changed so that it radiates maximum energy around a wavelength 3lambda_(0)//4 the power radiated by it will increase by a factor of .

The power radiated by a black body is P, and it radiates maximum energy around the wavelength lambda_(0) . If the temperature of the black body is now changed so that it radiates maximum energy around a wavelength 3lambda_(0)//4 , the power radiated by it will increase by a factor of