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No work is done on the system, but heat ...

No work is done on the system, but heat (q) is taken out from the system by the surroundings. What type of wall does the system have?

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Express the change in internal energy of a system when 1) No heat is absorbed by the system from the surroundings, but work (w) is done on the system. What type of wall does the system have ? ii) No work is done on the system, but a amount of heat is taken out from the system and given to the surroundings. What type of wall does the system have? iii) w amount of work is done by the system and q amount of heat is supplied to the system. What type of system would it be?

The system loses 'q' amount of heat though no work is done on the system. What type of wall does the system have?

No heat is absorbed by the system from the surroundings, but work (w) is done on the system. What type of wall does the system have?

Work is done by the system and heat (q) is supplied to the system. What type of system would it be?

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VIKRAM PUBLICATION ( ANDHRA PUBLICATION)-THERMODYNAMICS-Important Questions
  1. State the first law of thermodynamics. Explain its mathematical notati...

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  2. What are the sign conventions of the work done on the system and work ...

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  3. No work is done on the system, but heat (q) is taken out from the syst...

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  4. What are intensive and extensive properties?

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  5. 1 g of graphite is burnt in a bomb calorimeter in excess of O(2) at 29...

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  6. What is Delta(r)H for CH(4(g))+20(2(g))to CO(2(g))+2H(2)O(l) in terms ...

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  7. Explain the relationship between Gibbs energy change and equilibrium c...

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  8. State the third law of thermodynamics.

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  9. What are open, closed and isolated systems ? Give one example for each...

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  10. Define the state function and state variables. Give examples.

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  11. "Internal energy is a state function." Explain.

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  12. "Work is not a state function." Explain.

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  13. Explain the state function 'enthalpy, H'. What is the relationship bet...

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  14. Explain extensive and intensive properties.

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  15. Define heat capacity. What are C(p) and C(v)? Show that C(p)-C(v)=R.

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  16. Explain the determination of DeltaU of a reaction calorimetrically.

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  17. Explain the determination of DeltaH of a reaction calorimetrically:

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  18. What is enthalpy of a reaction? Explain the standard enthalpy of a rea...

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  19. What is the standard enthalpy of formation? Explain it with example.

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  20. Define and explain the enthalpy of combustion (Delta(c)H^(theta)).

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