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Q.What are the postulates of Bohr's model of hydrogen atom? Discuss the importance of this model to explain various series of line spectra in hydrogen atom.

Andhra Pradesh BieapBIEAP Intermediate Board (1st Year) 2022Subjective· 8mImportance★★★★★
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Bohr proposed quantised stationary orbits with mvr = nh/2pi; jumps between them emit/absorb photons of energy h nu, which explains the discrete spectral series of hydrogen.

Postulates of Bohr's model of the hydrogen atom:

  1. The electron in a hydrogen atom moves around the nucleus only in certain fixed circular paths called stationary states or orbits. In these orbits the electron does not radiate energy.
  2. Only those orbits are permitted in which the angular momentum of the electron is an integral multiple of h/2pi: mvr = n h / (2 pi), where n = 1, 2, 3, ... is the principal quantum number.
  3. Each orbit has a definite (quantised) energy. As long as the electron stays in a given orbit, its energy remains constant.
  4. Energy is emitted or absorbed only when the electron jumps from one orbit to another. When it jumps from a higher orbit (energy E2) to a lower orbit (energy E1), the energy difference is emitted as a photon: delta E = E2 - E1 = h nu where nu is the frequency of the emitted radiation.

The energy of the electron in the nth orbit of hydrogen is:

E(n) = -R(H) / n^2 (R(H) = 2.18 x 10^-18 J), which is negative and increases (becomes less negative) with n.

Importance - explanation of the hydrogen line spectra:

When excited hydrogen atoms return from higher energy levels to lower ones, they emit radiation of definite frequencies, giving a line spectrum. Transitions ending at a fixed lower level give a spectral series:

  • To n = 1 (Lyman series) - ultraviolet region.
  • To n = 2 (Balmer series) - visible region.
  • To n = 3 (Paschen series) - infrared region.
  • To n = 4 (Brackett series) - infrared region. …

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