Question
Question: The maximum energy in the thermal radiation from a hot source occurs at a wavelength of \(12\times {...
The maximum energy in the thermal radiation from a hot source occurs at a wavelength of 12×10−5cm. According to Wien's displacement law, the temperature of this source will be n times the temperature of another source for which the wavelength at maximum energy is 6×10−5cm. Then the value of n will be
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Solution
The Wien’s displacement law is a law which states the relationship between the emitted radiations and temperature of a black body. The wavelength is selected as the wavelength possessed by the most of the radiation. According to this law, the wavelength will be inversely proportional to the temperature of the black body. Here we can compare both the situations and finally we can find the value of n. These all may help you to solve this question.
Complete step by step answer:
As we all know, the wavelength of the light will be inversely proportional to the temperature of the body. This can be expressed mathematically as,
λ∝T1
That is we can write this as,
λ2λ1=T1T2
Where λ1be the wavelength of the radiation in the first case. This can be written as per the question as,
λ1=12×10−5cm
λ2be the wavelength of the radiation mentioned in the second case. This can be written as,
λ2=6×10−5cm
T1 be the temperature at which the maximum wavelength in the first case is radiating.
It can be written as,
T1=nT
And T2be the temperature at which the maximum wavelength in the second case is radiating,
The value can be expressed as,
T2=T
Substituting all these values in the Wien’s displacement law, we can write that,