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Q.

A spherical balloon is filled with an ideal mono-atomic gas. At some instant its pressure was  P0, volume V0  and temperature  T0. If the balloon expanded in such a manner so that the rate of radiation from the balloon remained constant. It was found that the work done by gas inside the balloon was 6P0V0[11n]  when its volume increased to  8V0. Find the value of n.
(assume ambient temperature to be close to 0K)

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answer is 2.

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Detailed Solution

Rate of radiation =σeAT4 = constant
or  r2T4= constant   or  43πr3T6= constant
or VT6=C 
or  TV1/6= constant        (1)
Comparing it with polytropic equation    TVK1= constant
We get  K1=16 K=76

Work done by gas =  =nR(T1T2)K1=nR(1/6)(T0T2)

=6nR(T0T02)=6nR(T0T02)}[T2=T02 according to(1)]

=6P0V0(112)
So, n = 2

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