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[" Hydrogen atom in ground state is excited by a "],[" monochromatic radiation of "lambda=975A^(0)." Number "],[" of spectral lines in the resulting spectrum "],[" emitted will be "],[[" 1) "3," 2) "2," 3) "6," 4) "10]]

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Hydrogen atom in ground state is excited by a monochromatic radiation of lambda=975 Å . Number of spectral lines in the resulting spectrum emitted will be

Hydrogen atom in ground state is excited by a monochromatic radiation of lambda = 975 Å. Number of spectral lines in the resulting spectrum emitted will be

Hydrogen atom in ground state is excited by a monochromatic radiation of lambda=975"Å" . Number of spectral lines in the resulting spectrum emitted will be

Hydrogen atom in ground state is excited by a monochromatic radiation of lambda = 975 Å . Number of spectral lines in the resulting spectrum emitted will be

Hydrogen atom in ground state is excited by a monochromatic radiation of lambda = 975 Å . Number of spectral lines in the resulting spectrum emitted will be

Hydrogen atom in ground state is excited by a monochromatic radiation of wavelength lambda = 975 Å then number of spectral lines in resulting spectrum emitted will be ......

The hydrogen atom in ground state is excited by a monochromatic radiation of wavelength lambda = 1025 A . The possible number of emmision spectral lines in the spectrum will be (hc = 12400 eV A)

The hydrogen atom in ground state is excited by a monochromatic radiation of wavelength lambda = 1025 A . The possible number of emmision spectral lines in the spectrum will be (hc = 12400 eV A)

A gas of hydrogen atoms in its ground state, is excited by means of monochromatic radiation of wavelength 975A^(0) . How many different spectral lines are possible in the resulting spectrum? (hc=12431.25eV-A^(0))

H atom in its ground state is excited by means of a radiation of lambda =970.6 Å. How many different wavelengths are possible in the resulting emission spectrum ?