Q.Describe the total degree of freedom for monatomic, diatomic, and triatomic molecules.
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Start your 14-day free trial to unlock the full solution →Monatomic = 3 (translational only); diatomic = 5 (3 translational + 2 rotational); non-linear triatomic = 6 (3 translational + 3 rotational).
The degrees of freedom of a molecule are the independent number of ways/coordinates in which it can possess (kinetic) energy — that is, the number of independent quantities required to specify the position and configuration of the molecule.
Monatomic molecules (e.g. He, Ne, Ar): being essentially a point mass, they have only translational motion possible along the three independent directions (x, y, z). So the total degrees of freedom = 3 (all translational).
Diatomic molecules (e.g. O2, N2, treated as a rigid rotor, ignoring vibration at ordinary temperatures): in addition to 3 translational degrees of freedom, the molecule can rotate about two axes perpendicular to the line joining the two atoms (rotation about the bond axis itself is not counted, since the moment of inertia about that axis is negligible). So total = 3 translational + 2 rotational = 5. (At high temperatures, 2 additional vibrational degrees of freedom become active, giving 7 total.)
Triatomic molecules: this depends on the molecular geometry. …
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