If the radius and energy of the second Bohr orbit of a hydrogen atom are $r_2$ and $E_2$, respectively, then the radius and energy of the third Bohr orbit will be, respectively:

  • A
    $\frac{4}{9} r_2, \frac{9}{4} E_2$
  • B
    $\frac{4}{9} r_2, \frac{4}{9} E_2$
  • C
    $\frac{9}{4} r_2, \frac{4}{9} E_2$
  • D
    $\frac{9}{4} r_2, \frac{9}{4} E_2$

Explore More

Similar Questions

In the hydrogen spectrum,the energy during the first Lyman transition is $E = 10.2 \ eV$. The same energy is observed during the second Balmer series transition in which of the following species?

In the hydrogen spectrum,a line corresponds to a transition from the $3^{rd}$ to the $5^{th}$ orbit. Identify the series to which this transition belongs.

Which of the following transitions will emit the shortest wavelength?

The nuclear theory of the atom was put forward by:

When electromagnetic radiation of wavelength $300 \, nm$ falls on the surface of sodium,electrons are emitted with a kinetic energy of $1.68 \times 10^{5} \, J \, mol^{-1}$. What is the minimum energy needed to remove an electron from sodium? What is the maximum wavelength that will cause a photoelectron to be emitted?

Difficult
View Solution

Vedclass Products

For Students

Vedclass Test Series

Mock tests in real JEE/NEET style with performance analysis. 5-day free trial.

Start Free Trial
For Teachers

Exam Paper Generator

Generate Set A/B/C/D exam papers from 7.5L+ questions in 2 minutes. 3 chapters free.

Try Free
For Institutes

Online Exam Module

Live online exams with unlimited students, 360° analytics & white-label branding.

See Demo