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The number of vibrational degrees of freedom of a diatomic molecule is
(a)
(b)
(c)
(d)

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Important Questions on Kinetic Theory
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(R-Universal gas constant)

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Match the ratio for ideal gases with different type of molecules:
Molecule Type | |
(A) Monoatomic | (I) |
(B) Diatomic rigid molecules | (II) |
(C) Diatomic non-rigid molecules | (III) |
(D) Triatomic rigid molecules | (IV) |

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Given below are two statements:
Statement I: In a diatomic molecule, the rotational energy at a given temperature obeys Maxwell's distribution.
Statement II : In a diatomic molecule, the rotational energy at a given temperature equals the translational kinetic energy for each molecule.
In the light of the above statements, choose the correct answer from the options given below:

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Consider a gas of triatomic molecules. The molecules are assumed to be triangular and made of massless rigid rods whose vertices are occupied by atoms. The internal energy of a mole of the gas at temperature T is:

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