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Q.The second law of thermodynamics disallows many phenomena consistent with the first law of thermodynamics. Discuss this statement in detail with suitable examples.

Bihar BsebBihar Board Intermediate 1st Year 2026Subjective· 5mImportance★★★★★
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The first law only requires energy conservation; the second law fixes the direction of natural processes and rules out many energy-conserving but impossible processes.

The first law of thermodynamics (dQ = dU + dW) is simply the conservation of energy. It says energy cannot be created or destroyed, but it says NOTHING about the DIRECTION in which a process can occur. Many imaginary processes satisfy the first law yet are never observed; the second law explains why.

Examples of processes consistent with the first law but forbidden by the second law:

  1. Heat flowing from a cold body to a hot body on its own. If a cold and a hot body exchanged heat so the cold got colder and the hot got hotter, energy would still be conserved (first law satisfied). But heat never flows spontaneously from cold to hot (Clausius statement of the second law).

  2. Complete conversion of heat into work in a cycle. A heat engine that took heat from a single reservoir and turned ALL of it into work would conserve energy. But the second law (Kelvin-Planck statement) forbids it: some heat must always be rejected to a colder sink, so efficiency is always less than 100%.

  3. Spontaneous un-mixing / reversal of natural processes. A gas that filled a container will never crowd back into one corner by itself; a broken glass will not reassemble; these reverse processes conserve energy but never happen.

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