Home
Class 10
CHEMISTRY
If the electron falls from n = 3 to n = ...

If the electron falls from n = 3 to n = 2, in hydrogen atom then emitted energy is

Promotional Banner

Topper's Solved these Questions

  • STRUCTURE OF ATOM

    BEYOND PUBLICATION|Exercise EXERCISE|191 Videos
  • PRINCIPLES OF METALLURGY

    BEYOND PUBLICATION|Exercise EXERCISE|153 Videos

Similar Questions

Explore conceptually related problems

Electrons from n = 2 to n= 1 in hydrogen atom is made to fall on a metal surface with work function 1.2ev. The maximum velocity of photo electrons emitted is nearly equal to

Using Bohr's equation for the energy levels of the electron in Hydrogen atom, determine the energy of an electtron in n = 4

A hydrogen atom emits a photon corresponding to an electron transtion from n= 5 to n = 1 . The recoil speed of hydrogen atom in nearly equal to

In each of the following atoms or ions, electron jumps from n = 2 to n = 1 . The wavelength of radiation emitted will be minimum for

When an electron jumps from a level n = 4 to n = 1 , the momentum of the recoiled hydrogen atom will be

If the electron of a hydrogen atom is present in the first orbit. The total energy of the electrons is

If 13.6 ev energy is required to ionize the hydrogen atom, then the energy required to remove an electron from n=2 is

If in Hydrogen atom, an electron jumps from n_(2) = 2 to n_(1) = 1 in Bohr.r orbit, then the value of wave number of the emitted photon will be (R = 109700 cm^(-1))

If in Hydrogen atom, an electron jumps from n_(2) = 2 to n_(1) = 1 in Bohr's orbit, then the value o wave number of the mitted photon will be (R = 109700 cm^(-1))