Energy of the electron in `nth` orbit of hydrogen atom is given by `E_(n) =-(13.6)/(n^(2))eV`. The amount of energy needed to transfer electron from first orbit to third orbit is
The energy of an electron in the nth Bohr orbit of hydrogen atom is
Energy of electron in its nth orbit is given by (E_n=-(13.6)/n^2 xxz)ev . Consider a hydrogen atom , find the amount of energy needed to transfer electron from 1st orbit to 3rd orbit:
Total energy of electron in nth stationary orbit of hydrogen atom is
Energy Of Electron In Nth Orbit
The kinetic energy of the electron in the nth orbit of an atom is given by the relation
In the nth orbit, the energy of an electron E_(n)= -( 13.6)/(n^(2)) eV for hydrogen atom. The energy rquired to take the electron from first orbit to second orbit will be
The energy of electron in the nth orbit of hydrogen atom is expressed as E_(n) = (-13.6)/(n^(2))eV . The shortest and longest wavelength of Lyman series will be