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Q.An ideal gas is compressed at constant temperature. Will its internal energy increase or decrease? Explain. OR Define isothermal change. Write the expression for work done during an isothermal change.

Meghalaya MboseMBOSE Meghalaya 11th Board 2018Subjective· 2mImportance★★★★★
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Internal energy of an ideal gas is purely a function of temperature; since an isothermal compression keeps T fixed, the internal energy does not change even though work is being done on the gas.

For an ideal gas, the internal energy U depends ONLY on its absolute temperature T (there are no intermolecular forces to store potential energy in an ideal gas, so U is purely kinetic, and average kinetic energy depends only on T).

When the gas is compressed at constant temperature (isothermal process), T does not change, so:

Delta U = 0

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