MHT CET · Physics · Atomic Physics
Frequency of the series limit of Balmer series of hydrogen atom of Rydberg's constant ' \(R\) ' and velocity of light ' C ' is
- A \(\frac{\mathrm{RC}}{4}\)
- B RC
- C \(\frac{4}{\mathrm{RC}}\)
- D 4 RC
Answer & Solution
Correct Answer
(A) \(\frac{\mathrm{RC}}{4}\)
Step-by-step Solution
Detailed explanation
Wavelength of Balmer series is given as, \(\frac{1}{\lambda}=R\left(\frac{1}{\mathrm{n}^2}-\frac{1}{\mathrm{~m}^2}\right)\) where \(\mathrm{n}=2\)
For series limit, \(\mathrm{m}=\infty\)
\(\therefore \quad \frac{1}{\lambda}=\mathrm{R}\left(\frac{1}{4}-\frac{1}{\infty}\right)=\mathrm{R}\left(\frac{1}{4}\right)\)
Now, \(v=\frac{C}{\lambda}\)
\(\therefore \quad v=\frac{R C}{4}\)
For series limit, \(\mathrm{m}=\infty\)
\(\therefore \quad \frac{1}{\lambda}=\mathrm{R}\left(\frac{1}{4}-\frac{1}{\infty}\right)=\mathrm{R}\left(\frac{1}{4}\right)\)
Now, \(v=\frac{C}{\lambda}\)
\(\therefore \quad v=\frac{R C}{4}\)
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