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When a system is taken from a state `i` to a state `f` in Figure, along the path `iaf`, we find `DeltaQ=50cal` and `DeltaW=20cal` while during the path `ibf`, `DeltaQ=36cal`. If `U_i=10cal`. (a) What is U? What is `W` along the path `ibf`? (c ) If `W=-13cal`, along the curved path `fi`, what is `DeltaQ` for this path? (d) If `U_b=22cal`, what is `DeltaQ` for the process `ib`? for `bf`? |
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Answer» `DeltaQ_(iaf)=50cal`,`DeltaW_(iaf)=20cal`,`DeltaQ_(ibf)=36cal` `U_i=10cal` (a) Path iaf: `DeltaU=U_f-U_k=U_f-10` `DeltaQ=DeltaU+DeltaW` `50=U_f-10+20impliesU_f=40cal` (b) Path ibf: `DeltaU=U_f-U_i=40-10=30cal` `DeltaQ=DeltaU+DeltaW` `36-30+DeltaWimpliesDeltaW=6cal` (c ) Path fi: `DeltaU=U_i-U_f=10-40=-30cal` `DeltaQ=DeltaU+DeltaW=-30-13=-43cal` Path ib: `DeltaU=U_b-U_i=22-10=12cal` `DeltaQ=DeltaU+DeltaW=12+6=18cal` `(DeltaW_(ib)=DeltaW_(ibf))` Path bf: `DeltaU=U_f-U_b=40-22=18cal` `DeltaQ=DeltaU+DeltaW=18+0=18cal` |
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