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Dependence of Spontaneity on Temperature...

Dependence of Spontaneity on Temperature:
For a process to be spontaneous , at constant temperature and pressure , there must be decrease in free energy of the system in the direction of the process , i.e. `DeltaG_(P.T) lt 0. DeltaG_(P.T) =0` implies the equilibrium condition and `DeltaG_(P.T) gt 0` corresponds to non- spontaneity.
Gibbs- Helmholtz equation relates the free energy change to the enthalpy and entropy changes of the process as : `" "DeltaG_(P.T) = DeltaH-TDeltaS" ""..."(1)`
The magnitude of `DeltaH` does not change much with the change in temperature but the entropy factor `TDeltaS` change appreciably . Thus, spontaneity of a process depends very much on temperature.
For endothermic process, both `DeltaH` and `DeltaS` are positive . The energy factor, the first factor of equation, opposes the spontaneity whereas entorpy factor favours it. At low temperature the favourable factor `TDeltaS` will be small and may be less than `DeltaH, DeltaG` will have positive value indicated the nonspontaneity of the process. On raising temperature , the factor `TDeltaS` Increases appreciably and when it exceeds `DeltaH, DeltaG` would become negative and the process would be spontaneous .
For an expthermic process, both `DeltaH` and `DeltaS` would be negative . In this case the first factor of eq.1 favours the spontaneity whereas the second factor opposes it. At high temperature , when `T DeltaS gt DeltaH, DeltaG` will have positive value, showing thereby the non-spontaneity fo the process . However , on decreasing temperature , the factor ,`TDeltaS` decreases rapidly and when `TDeltaS lt DeltaH, DeltaG` becomes negative and the process occurs spontaneously. Thus , an exothermic process may be spontaneous at low temperature and non-spontaneous at high temperature.
For the reaction at `25^(@), X_(2)O_(4)(l) rarr 2XO_(2)(g)`
`DeltaH=2.1 Kcal` and `DeltaS = 20 cal K^(-1)`. The reaction would be

A

`+, -`

B

`+, +`

C

`-, -`

D

`-, +`

Text Solution

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The correct Answer is:
A
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MODERN PUBLICATION-THERMODYNAMICS-Competition File MCQ
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  2. Which of the following are favourable conditions for spontaneous proce...

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  3. Among the following, state function(s) is/are

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  4. A sample containing 1.0 mol of an ideal gas is expanded isothermally a...

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  6. The reversible expansion of an ideal gas under adiabatic and isotherma...

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  7. Benzene and naphthalene form an ideal solution at room temperature. Fo...

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  8. For a spontaneous process, the correct statement(s) is (are)

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  9. An ideal gas in a thermally insulated vessel at internal pressure = P(...

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  10. An ideal gas is expand from (p(1),V(1),T(1)) to (p(2),V(2),T(2)) under...

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  11. A reversible cycle process for an ideal gas is shown below. Here P, V ...

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  12. Choose the reaction, for which the standard enthalpy of reaction is eq...

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  13. Dependence of Spontaneity on Temperature: For a process to be sponta...

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  14. The DeltaG values for the following reactions at 800^(@)C are S(2)(g...

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  15. For the equilibrium H(2)O(l) iff H(2)O(g) at 1 atm and 298 K

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  16. For the water gas reaction: C(s) +H(2)O(g) hArr CO(g) +H(2)(g) the...

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  17. If DeltaG^(@) is zero for a reaction, then

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  18. Which of the following conditions is not favourable for a spontaneous ...

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