MHT CET · Physics · Atomic Physics
Using Bohr's quantisation condition, what is the rotational energy in the second orbit for a diatomic molecule?
( \(I=\) moment of inertia of diatomic molecule and \(h=\) Planck's constant)
- A \(\frac{h}{2 I \pi^2}\)
- B \(\frac{h^2}{2 I \pi^2}\)
- C \(\frac{h^2}{2 I^2 \pi^2}\)
- D \(\frac{h}{2 \mathrm{I}^2 \pi}\)
Answer & Solution
Correct Answer
(B) \(\frac{h^2}{2 I \pi^2}\)
Step-by-step Solution
Detailed explanation
\(L = n \frac{h}{2\pi}\) \(L = 2 \frac{h}{2\pi} = \frac{h}{\pi}\)
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