WBJEE · Chemistry · Structure of Atom
The time taken for an electron to complete one revolution in Bohr orbit of hydrogen atom is
- A \(\frac{4 m^{2} \pi r^{2}}{n^{2} h^{2}}\)
- B \(\frac{n^{2} h^{2}}{4 m r^{2}}\)
- C \(\frac{4 \pi^{2} m r^{2}}{n h}\)
- D \(\frac{n h}{4 \pi^{2} m r^{2}}\)
Answer & Solution
Correct Answer
(C) \(\frac{4 \pi^{2} m r^{2}}{n h}\)
Step-by-step Solution
Detailed explanation
Let the distance travelled in \(T\) time \(=2 \pi r\) (Circumference of orbit) \(\therefore \quad\) Velocity \((v)=\frac{2 \pi r}{T}\) Also, \(v=\frac{n \cdot h}{2 \pi m r}\) \(\therefore \quad \frac{1}{T \text { (Time period) }}=\) frequency…
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