Home
Class 12
PHYSICS
In any Bohr orbit of the hydrogen atom, ...

In any Bohr orbit of the hydrogen atom, the ratio of kinetic energy to potential eenrgy of the electron is

A

`1//2`

B

2

C

`-1//2`

D

`-2`

Text Solution

Verified by Experts

The correct Answer is:
C
Promotional Banner

Topper's Solved these Questions

  • ATOMIC AND NUCLEAR PHYSICS

    ERRORLESS |Exercise Ordinary|15 Videos
  • ATOMIC AND NUCLEAR PHYSICS

    ERRORLESS |Exercise Nuckeus, Nuclear Reaction|2 Videos
  • ALTERNATING CURRENT

    ERRORLESS |Exercise SET|15 Videos
  • COMMUNICATION SYSTEM

    ERRORLESS |Exercise S E T|14 Videos

Similar Questions

Explore conceptually related problems

In the Bohr model of the hydrogen atom, the ratio of the kinetic energy to the total energy of the electron in a quantum state n is ……..

In the Bohr's model of hydrogen atom, the ratio of the kinetic energy to the total energy of the electron in n^(th) quantum state is:

The ratio of the kinetic energy to the total energy of an electron in a Bohr orbit is

In the Bohr's orbit, what is the ratio of total kinetic energy and total energy of the electron

The energy of the electron in the ground state of hydrogen atom is -13.6 eV . Find the kinetic energy and potential energy of electron in this state.

The ratio of the magnitude of the kinetic energy to the potential energy of an electron in the 5^(" th ") excited state of a hydrogen atom is :

According to Bohr's theory of hydrogen atom , the product of the binding energy of the electron in the nth orbit and its radius in the nth orbit