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Q.State second law of thermodynamics. How is heat engine different from a refrigerator?

Telangana TsbieTelangana Board of Intermediate Education (Intermediate 1st Year) 2026Subjective· 8mImportance★★★★★
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The second law fixes the direction of heat flow and limits heat-to-work conversion; a heat engine converts heat into work, while a refrigerator uses work to pump heat from cold to hot - they are reverse processes.

Second Law of Thermodynamics:

The second law can be stated in two equivalent forms:

  • Kelvin-Planck statement (engine form): It is impossible to construct a device that, operating in a cycle, produces no effect other than the complete conversion of heat absorbed from a single reservoir into work. In other words, no heat engine can have 100% efficiency; some heat must always be rejected to a colder reservoir.

  • Clausius statement (refrigerator form): It is impossible for a self-acting device, operating in a cycle, to transfer heat from a colder body to a hotter body without the aid of external work. Heat cannot flow spontaneously from a cold body to a hot body.

Both statements are equivalent and express that natural processes are irreversible and proceed in a definite direction (increasing entropy).

Heat engine: A heat engine is a device that converts heat energy into mechanical work through a cyclic process. It:

  • absorbs heat Q1 from a hot reservoir (source) at temperature T1,
  • converts a part of it into useful work W,
  • rejects the remaining heat Q2 to a cold reservoir (sink) at temperature T2. By energy conservation W = Q1 - Q2, and its efficiency is eta = W/Q1 = 1 - Q2/Q1 (always less than 1).

Refrigerator (heat pump): A refrigerator works in the reverse direction to a heat engine. It:

  • extracts heat Q2 from a cold body (the contents of the fridge),
  • has external work W done on it (by the compressor), …

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