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Q.Explain the different types of spectral series.

Telangana TsbieTelangana Board of Intermediate Education 2025Subjective· 4mImportance★★★★★
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Each spectral series of hydrogen corresponds to electron transitions from higher energy levels down to one particular fixed lower level; the series are named Lyman, Balmer, Paschen, Brackett, and Pfund.

Background

According to Bohr's model, an electron in a hydrogen atom can exist only in certain discrete energy levels (n=1,2,3,…n=1,2,3,\dots). When the electron jumps from a higher level n2n_2 to a lower level n1n_1, it emits a photon of a specific frequency, given by the Rydberg formula:

1λ=R(1n12−1n22),n2>n1\frac{1}{\lambda} = R\left(\frac{1}{n_1^2} - \frac{1}{n_2^2}\right), \quad n_2 > n_1

where RR is the Rydberg constant. All transitions that end on the same lower level n1n_1 form a group of spectral lines called a spectral series.

The five series

  1. Lyman series (n1=1n_1 = 1): transitions from n2=2,3,4,⋯→n1=1n_2 = 2,3,4,\dots \to n_1 = 1. Lies in the ultraviolet region.
  2. Balmer series (n1=2n_1 = 2): transitions from n2=3,4,5,⋯→n1=2n_2 = 3,4,5,\dots \to n_1 = 2. Lies mostly in the visible region (this is the series historically observed first, giving the famous H-alpha, H-beta lines, etc.).
  3. Paschen series (n1=3n_1 = 3): transitions from n2=4,5,6,⋯→n1=3n_2 = 4,5,6,\dots \to n_1 = 3. Lies in the infrared region. …

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