Q.State law of equipartition of energy. Write the number of degrees of freedom of monoatomic, diatomic and triatomic gas.
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Start your 14-day free trial to unlock the full solution →Each degree of freedom of a molecule contributes (1/2)kT of energy on average; the number of degrees of freedom differs for monoatomic, diatomic and triatomic gases.
Law of equipartition of energy: For a system in thermal equilibrium at absolute temperature T, the total energy is equally distributed among all the degrees of freedom of the constituent molecules, and the energy associated with each degree of freedom (whether translational, rotational, or vibrational-quadratic) is (1/2) k T per molecule, where k is Boltzmann's constant.
Degrees of freedom (f) for different types of gas molecules (ignoring vibration, which is usually 'frozen out' except at high temperature):
- Monoatomic gas (e.g. He, Ar): the molecule can only move (translate) along the three independent directions x, y, z. So f = 3 (all translational). Average energy per molecule = 3 x (1/2)kT = (3/2)kT. …
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