In the hydrogen atom,if the reference level of potential energy is assumed to be zero at the ground state level,choose the incorrect statement.

  • A
    The total energy of the shell increases with an increase in the value of $n$.
  • B
    The total energy of the shell decreases with an increase in the value of $n$.
  • C
    The difference in total energy of any two shells remains the same.
  • D
    The total energy at the ground state becomes $13.6 \ eV$.

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Similar Questions

The energy of an electron in the $n^{th}$ orbit of a hydrogen atom is given by $E_n = -\frac{13.6}{n^2} \, eV$. How much energy in $eV$ is required to move an electron from the $n = 2$ orbit to the $n = 3$ orbit?

Energy of the electron in $n^{th}$ orbit of hydrogen atom is given by $E_n = - \frac{13.6}{n^2} \ eV$. The amount of energy needed to transfer an electron from the first orbit to the third orbit is........$eV$.

The ground state energy of the hydrogen atom is $-13.6 \ eV$. The kinetic and potential energy of the electron in the second excited state are,respectively:

The number of spectral lines emitted by atomic hydrogen that is in the $4^{\text{th}}$ energy level is

If energy of $15 \ eV$ is given to an electron in the $4^{th}$ orbit,find its final energy when it comes out of the $H$-atom. (in $eV$)

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