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NCERT Exemplar · Q25

Q.Calculate the number of degrees of freedom of molecules of hydrogen in 1 cc of hydrogen gas at NTP.

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The number of degrees of freedom for a molecule depends on its structure and the temperature range.

  1. Molecular Structure: Hydrogen (H2H_2) is a diatomic molecule.
  2. Translational Degrees of Freedom: Any molecule can move in three independent directions (along x, y, and z axes), contributing 3 translational degrees of freedom.
  3. Rotational Degrees of Freedom: A diatomic molecule can rotate about two independent axes perpendicular to the internuclear axis and passing through its center of mass, contributing 2 rotational degrees of freedom. Rotation about the internuclear axis is generally neglected as its moment of inertia is very small.
  4. Vibrational Degrees of Freedom: At Normal Temperature and Pressure (NTP), the vibrational modes of diatomic molecules like hydrogen are generally not excited. Therefore, vibrational degrees of freedom are not considered at NTP.

The total number of degrees of freedom per hydrogen molecule at NTP is the sum of its translational and rotational degrees of freedom:

f=3(translational)+2(rotational)=5f = 3 (\text{translational}) + 2 (\text{rotational}) = 5 …

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