A sample of an ideal gas is expanded to twice its original volume of 1m3 in a reversible process for which P=αv2 where α=5 atm/m6 . If Cv,m=20Jmol−1K−1, determine the approximate molar change in entropy for the process.
A
4Jmol−1K−1
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B
47.35Jmol−1K−1
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C
40Jmol−1K−1
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D
4Jmol−1K−1
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Solution
The correct option is B47.35Jmol−1K−1 We know formula for molar entropy change is : ΔS=nCvlnT2T1+nRlnV2V1 V1andV2 are given and we have to calculate temperature in terms of pressure by using ideal gas equation P1V1T1=P2V2T2
or T2T1=(P2P1)(V2V1)
P = αV2
So P1=αV21 and P2=αV22 put up in eq. (1), we get T2T1=(αV22αV21)(V2V1) T2T1=(V32V31)
where V2V1=21 T2T1=8 ΔS=nCvlnT2T1+nRlnV2V1 ( n=1) ΔS=1×20ln8+1×Rln2 ΔS=47.35Jmol−1K−1