Whenever a hydrogen atom emits a photon in the Balmer series,

  • A
    It need not emit any more photon.
  • B
    It may emit another photon in the Paschen series.
  • C
    It must emit another photon in the Lyman series.
  • D
    It may emit another photon in the Balmer series.

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The ratio of wavelengths of the second line in the Balmer series and the first line in the Lyman series of a hydrogen atom is:

The first line in the Lyman series has wavelength $\lambda$. The wavelength of the first line in the Balmer series is

The atomic hydrogen emits a line spectrum consisting of various series. Which series of hydrogen atomic spectra lies in the visible region?

Number of visible lines in Balmer's series

The transition from the state $n = 4$ to $n = 3$ in a hydrogen-like atom results in ultraviolet radiation. Infrared radiation will be obtained in the transition from:

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