The kinetic energy of an electron in an orbit of radius in a hydrogen atom is ( is the electronic charge)?
Step 1: Given data:
The radius of the orbit of an electron in a hydrogen atom is given as =
We can calculate the kinetic energy of the electron, by using the postulates of Bohr theory.
Step 2: Formula for the kinetic energy:
The formula used for calculating the kinetic energy of the electron in a Hydrogen atom is given as:
Where Kinetic energy of the electron
The velocity of the electron
Step 3: Calculating the value of velocity ():
To calculate the K.E of electrons in an orbit of a hydrogen atom, we have to use Bohr’s atomic model, which states that the electrons revolve around the nucleus in a circular orbit i.e stationary states, under the influence of Coulomb force.
Corresponding to each of the stationary states, the orbital angular momentum of the electron is equal to an integral multiple of , given as:
To maintain the stability of the circular orbit of the electrons, the Coulomb’s force of attraction is balanced by the centripetal force, given as:
Step 4: Calculating the value of kinetic energy:
Substituting the value of in this expression of kinetic energy we can get,
Hence, the kinetic energy of an electron in an orbit of radius in a hydrogen atom is .