COMEDK · Physics · 28. Atomic Physics
The minimum radial distance between first orbit and second orbit in \(\mathrm{He}^{+}\)ion, if the de-Broglie wavelength of an electron in first orbit is \(\lambda\), will be
- A \(2 \lambda\)
- B \(\frac{2 \lambda}{\pi}\)
- C \(\frac{\lambda}{2 \pi}\)
- D \(\frac{\pi}{4}\)
Answer & Solution
Correct Answer
(C) \(\frac{\lambda}{2 \pi}\)
Step-by-step Solution
Detailed explanation
By de-Broglie hypothesis, \(2 \pi r_n=n \lambda\) For first orbit, \(n=1, r=r_1\), then \(2 \pi r_1=\lambda \text { or } r_1=\frac{\lambda}{2 \pi}\) For second orbit, \(n=2, r=r_2\), then…
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