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The wavelength of maximum emitted energy...

The wavelength of maximum emitted energy of a body at 700 K is `4.08 mu m`. If the temperature of the body is raised to 1400 K , the wavelength of maximum emitted energy will be

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The wave length of maximum emitted energy of a body at 700 K is 4.08 mu m . If the temperature of the body is raised to 1400 K, the wavelength of maximum emitted energy will be

The wavelength of maximum emitted energy of a body at 700K is 4.08 um . If the temperature of the body is raised to 1400 K, the wavelength of maximum emitted energy will be

The wavelength of radiation of maximum intensity is lamda when the temperature of a body is 2000 K . If now temperature is raised to 4000 K . the wavelength of radiation of maximum intensity will be

A black body emits radiations of maximum intensity at wavelength of 5000Å When the temperature of the body is 1227^(@)C . If the temperature of the body is increased by 1000^(@)C , the maximum intensity of emitted radiation would be observed at . . . . . . .

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A black body emits radiations of maximum intensity at a wavelength of 5000 A, when the temperature of the body is 1227° C. If the temperature of the body is increased by 2227 °C, the maximum intensity of emitted radiation would be observed at

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A black body emits radiations of maximum intensity at a wavelength of Å 5000 , when the temperature of the body is 1227^(@)C . If the temperature of the body is increased by 1000^(@)C , the maximum intensity of emitted radiation would be observed at

A black body emits radiation of maximum intensity at a wavelength of 5000A when the temperature of the body is 1227^(@) C. If the temperature of the body is increased by 1000^(@) C, calculate the wavelength corresponding to the maximum intensity.