Home
Class 12
PHYSICS
A black body emits radiation of maximum ...

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.

A

`4000 Å`

B

`5000 Å`

C

`6000 Å`

D

`3000 Å`

Text Solution

Verified by Experts

The correct Answer is:
d
Promotional Banner

Similar Questions

Explore conceptually related problems

When the temperature of a body increases

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

If the temperature of the body is increases from 27°C to 327°C then wavelength corresponding to maximum intensity becomes

A heated body emits radiation which has maximum intensity at frequency v_m If the temperature of the body is doubled:

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

A heated body emits radiation which has maximum intensity near the frequency v_(0) The emissivity of the material is 0.5 . If the absolute temperature of the body is doubled,

A body, which emits radiations of all possible wavelengths, is known as

The temperature of human body is 98.4^(@)F . Calculate the temperature in ""^(@)C and in Kelvin.

If the temperature of a black body is increased, then the maximum of the spectrum will

IF the temperature of a black , body is doubled, the wavelength at which the spectral radiancy has its maximum is