Q.Describe the total degrees of freedom for monoatomic molecule, diatomic molecule and triatomic molecule.
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Start your 14-day free trial to unlock the full solution →Step 1. Monatomic. A single-atom molecule (e.g. He, Ne, Ar) has only translational motion along x, y, z: .
Step 2. Diatomic, normal temperature. Two atoms joined by a bond: 3 translational degrees of freedom (centre of mass motion) plus 2 rotational (about the two axes perpendicular to the bond; spin about the bond axis itself has negligible moment of inertia and doesn't count), giving .
Step 3. Diatomic, high temperature. At high temperature (~5000 K) vibration along the bond activates, contributing 2 more degrees of freedom (kinetic + potential energy of the vibration), giving .
Step 4. Linear triatomic. Three atoms on one straight line (e.g. CO): rotationally identical to a diatomic molecule (only 2 rotational axes, since the third atom adds no moment of inertia about the shared axis), so at normal temperature and at high temperature (with vibration). …
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