Among the following,which transition in the hydrogen spectrum would have the same wavelength as the Balmer transition,$n=4$ to $n=2$ in the $He^{+}$ spectrum?

  • A
    $n=3 \longrightarrow n=1$
  • B
    $n=3 \longrightarrow n=2$
  • C
    $n=4 \longrightarrow n=1$
  • D
    $n=2 \longrightarrow n=1$

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$A$ certain transition in the hydrogen spectrum from an excited state in one or more steps gives rise to a total of $10$ lines. The number of lines lying in the visible spectrum is:

In the Balmer series of the hydrogen atom spectrum,which electronic transition causes the third line?

Match the following for hydrogen atom $(Z=1)$ :-
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The energy of an electron in the first Bohr orbit of the $H$ atom is $-13.6 \, eV$. The energy value of an electron in the first excited state of the $H$ atom is ............ $eV$.

The angular momentum of the $2^{nd}$ Bohr orbit of the $H$ atom is $x$. Find the angular momentum of the $1^{st}$ excited state of $Li^{+2}$.

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