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[" Example "$13" .Show that the shortest...

[" Example "$13" .Show that the shortest "],[" wavelength lines in Lyman,Balmer and Paschen "],[" series have their wavelengths in the ratio "1:4:9" ."]

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Show that the shortest wavelength lines in Lyman,Balmer and Paschen series have their wavelength in the ratio 1:4:9.

Show that the shortest wavelength lines of Lyman, Balmer and Paschen series have their wavelengths in the ratio of 1:4:9 .

The ratio of shortest wavelength lines in Lyman , Balmer and Paschen series is 1:4:x. Calculate the value of x ?

Calculate the wavelengths of the member of Lyman, Balmer and Paschen series.

Calculate the ratio of shortest wavelength possible in Lyman and Balmer series.

The ratio of the longest to the shortest wavelength lines in the Balmer series is

The shortest wavelength of Lyman series is 912 Å . That of paschen series is

The shortest wavelength line in Lyman series is 911.33 overset(@) (A) . Calculate the shortest wavelength in paschen series.

if the shortest wavelength of H-atom in Lyman series is X, then longest wavelength in Paschen series of He^(+) is-