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.
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Start your 14-day free trial to unlock the full solution →Bohr said the electron moves in fixed quantised orbits of definite energy and emits/absorbs energy only when jumping between them; the fixed energy gaps produce discrete spectral lines, explaining the hydrogen spectral series.
Postulates of Bohr's model of the hydrogen atom:
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Fixed circular orbits (stationary states): The electron revolves around the nucleus only in certain permitted circular orbits of fixed radius and fixed energy, called stationary states or energy levels (n = 1, 2, 3, ...). While in these orbits it does not radiate energy.
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Quantisation of angular momentum: Only those orbits are allowed in which the angular momentum of the electron is an integral multiple of h/2pi:
mvr = n(h / 2pi), where n = 1, 2, 3, ... (n is the principal quantum number).
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Energy change only during transitions: Energy is emitted or absorbed only when an electron jumps from one stationary state to another. When it falls from a higher level (energy E2) to a lower level (energy E1), a photon is emitted:
E2 - E1 = h(nu), where nu is the frequency of the radiation.
Energy of the nth orbit (for hydrogen):
E(n) = -R(H) / n^2 (R(H) = Rydberg constant), so the levels are discrete and crowd together as n increases.
Importance in explaining the hydrogen line spectrum:
Because the energy levels are quantised, an electron can jump only between definite levels, so only photons of definite (fixed) frequencies are emitted. This is why hydrogen gives a line spectrum (sharp lines) rather than a continuous spectrum.
The various series correspond to transitions ending on different lower levels:
- Lyman series: transitions to n = 1 (ultraviolet region).
- Balmer series: transitions to n = 2 (visible region). …
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