Q.Assertion (A): Spontaneous process is an irreversible process and may be reversed by some external agency.
Reason (R): Decrease in enthalpy is a contributory factor for spontaneity.
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Start your 14-day free trial to unlock the full solution →Spontaneous processes are indeed irreversible and can be reversed by external work; enthalpy decrease contributes to spontaneity but doesn't explain irreversibility. Both statements are true, but R does not explain A.
Understanding Spontaneity and Irreversibility
A spontaneous process is one that occurs naturally under given conditions without continuous external intervention. The deep connection between spontaneity and irreversibility lies in the second law of thermodynamics: every spontaneous process increases the entropy of the universe.
The key insight is that while a spontaneous process proceeds in one direction on its own, reversing it requires an external agency to do work on the system. When you reverse a spontaneous process, you're fighting against the natural tendency of the universe to maximize entropy.
Evaluating the Assertion
Let's examine whether assertion (A) is correct.
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Spontaneous processes are irreversible: This is true in the thermodynamic sense. A truly reversible process is an idealization that proceeds infinitely slowly through equilibrium states. Real spontaneous processes happen at finite rates and generate entropy, making them irreversible.
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Can be reversed by external agency: Absolutely true. Consider a gas spontaneously expanding into a vacuum (irreversible). You can compress it back using a piston (external work), but the universe as a whole has still experienced a net entropy increase when you account for the surroundings. The refrigerator is a perfect everyday example—heat spontaneously flows from hot to cold, but a refrigerator (external agency) pumps heat from cold to hot.
Assertion (A) is true.
Evaluating the Reason
Now let's examine whether reason (R) is correct.
- Does enthalpy decrease contribute to spontaneity? Yes, it does. The Gibbs free energy criterion for spontaneity at constant temperature and pressure is:
A negative (exothermic process) makes a negative contribution to , favoring spontaneity. Many spontaneous processes—combustion, crystallization, acid-base neutralization—are exothermic.
Enthalpy decrease alone does not guarantee spontaneity. Endothermic processes can be spontaneous if the entropy increase is large enough (like ice melting above 0°C or dissolution of ammonium nitrate in water).
Reason (R) is true.
Does R Explain A? …
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