24. The Lyman series of the hydrogen spectrum can be represented by the equation v = 3.2881 × 1015 s 1 1 (where n = 2,3, ...) %3D %3D (a) Calculate the maximum and minimum wave- length lines, in nanometers, in this series. (b) What value of n corresponds to a spectral line at 95.0 nm?

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24. The Lyman series of the hydrogen spectrum can be
represented by the equation
v = 3.2881 × 1015 s 1
1
(where n = 2,3, ...)
%3D
%3D
(a) Calculate the maximum and minimum wave-
length lines, in nanometers, in this series.
(b) What value of n corresponds to a spectral line at
95.0 nm?
Transcribed Image Text:24. The Lyman series of the hydrogen spectrum can be represented by the equation v = 3.2881 × 1015 s 1 1 (where n = 2,3, ...) %3D %3D (a) Calculate the maximum and minimum wave- length lines, in nanometers, in this series. (b) What value of n corresponds to a spectral line at 95.0 nm?
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