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`3` moles of an ideal mono atomic gas performs a cycle as shown in fig. `If` gas temperature `T_(A)=400 K` `T_(B)=800K,T_(C)=2400K`, and `T_(D)=1200K`. Then total work done by gas is |
Answer» Processes A to B and C to D are parts os straightline graphs of forms y=mx and `P=(nR)/(V)T (n=3) i.e. PaT` So, volume remains constant for the graphs AB and CD. So, no work is done during processes for A to B and C to D. `W_(AB)=W_(CD)=0` and `W_(BC)=P_(2)(V_(C)-V_(B))` `=nR(T_(C)-T_(B))=3R(2400-800)=4800R` `W_(DA)=P_(1)(V_(A)-V_(D))=nR(T_(A)T_(D))` `=3R(400-1200)=-2400R` Work done in the complete cycle `W=W_(AB)+W_(BC)+W_(CD)+W_(DA)` `=0+4800R+0+(-2400)R` `=2400R=19953.6 Japprox20KJ` |
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