Home
Class 12
CHEMISTRY
The ratio of kinetic energy and potentia...

The ratio of kinetic energy and potential energy of an electron in a Bohr orbit of a hydrogen`-` like species is `:`

A

`1//2`

B

`-1//2`

C

1

D

`-1`

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Topper's Solved these Questions

  • STRUCTURE OF ATOM

    VMC MODULES ENGLISH|Exercise IN-CHAPTER EXERCISE-D|10 Videos
  • STRUCTURE OF ATOM

    VMC MODULES ENGLISH|Exercise IN-CHAPTER EXERCISE-E|12 Videos
  • STRUCTURE OF ATOM

    VMC MODULES ENGLISH|Exercise IN-CHAPTER EXERCISE-B|9 Videos
  • STOICHIOMETRY-II

    VMC MODULES ENGLISH|Exercise JEE Advanced (Archive)|43 Videos
  • SURFACE CHEMISTRY

    VMC MODULES ENGLISH|Exercise PRACTICE EXERCISE|9 Videos

Similar Questions

Explore conceptually related problems

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

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

The ratio of potential energy and total energy of an electron in a Bohr of a hydrogen -like species is

The potential energy of an electron in the fifth orbit of hydrogen atom is

Kinetic energy of electron in nth orbit is given by

The energy of an electron present in Bohr's second orbit of hydrogen atom is

The kinetic and potential energy (in eV) of electron present in third Bohr's orbit of hydrogen atom are respectively :

The relationship between kinetic energy (K) and potential energy (U) of electron moving in a orbit around the nucleus is

The kinetic energy of an electron in the second Bohr orbit of a hydrogen atom is [ a_(0) is Bohr radius] :

Using Bohr's postulates, obtain the expressions for (i) kinetic energy and (ii) potential energy of the electron in stationary state of hydrogen atom. Draw the energy level diagram showing how the transitions between energy levels result in the appearance of Lymann Series.