Let \( v_{1} \) be the frequency of the series limit of the Lyman series, \( v_{2} \) be the fre....
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Let \( v_{1} \) be the frequency of the series limit of the
\( \mathrm{P} \)
Lyman series, \( v_{2} \) be the frequency of the first line of
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the Lyman series, and \( v_{3} \) be the frequency of the series limit of the Balmer series, then
(1) \( v_{1}-v_{2}=v_{3} \)
(2) \( v_{2}-v_{1}=v_{3} \)
(3) \( v_{3}=\frac{1}{2}\left(v_{1}+v_{2}\right) \)
(4) \( v_{1}+v_{2}=v_{3} \)
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