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Q.Write the postulates of Bohr's model of hydrogen atom. Explain various lines in hydrogen spectra.

Telangana TsbieTelangana Board of Intermediate Education (Intermediate 1st Year) 2020Subjective· 8mImportance★★★★★
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Bohr's model places the electron in quantised circular orbits of fixed energy; transitions between these orbits emit or absorb photons of definite frequency, producing the discrete line series of the hydrogen spectrum.

Postulates of Bohr's model of the hydrogen atom:

  1. Stationary orbits: The electron in a hydrogen atom can move only in certain fixed circular paths (called stationary states or orbits) around the nucleus, without radiating energy, despite being under continuous acceleration.
  2. Quantisation of angular momentum: Only those orbits are permitted for which the angular momentum of the electron is an integral multiple of h/2πh/2\pi: mvr=nh2π,n=1,2,3,…mvr = n\frac{h}{2\pi}, \quad n = 1, 2, 3, \ldots where nn is the principal quantum number.
  3. Energy absorption/emission on transition: Energy is emitted or absorbed by the electron only when it jumps from one permitted orbit to another. If the electron jumps from a higher energy orbit E2E_2 to a lower one E1E_1, the energy difference is emitted as a photon of frequency ν\nu: ΔE=E2−E1=hν\Delta E = E_2 - E_1 = h\nu As long as the electron stays in a given stationary orbit, it does not lose or gain energy.

Hydrogen spectral lines (line series):

When electrons in excited hydrogen atoms fall from a higher orbit (n2n_2) to a lower orbit (n1n_1), they emit photons whose wavenumber is given by the Rydberg formula:

νˉ=RH(1n12−1n22)\bar\nu = R_H\left(\frac{1}{n_1^2} - \frac{1}{n_2^2}\right)

Depending on the final orbit n1n_1 the electron falls to, the emitted lines are grouped into series:

  • Lyman series (n1=1n_1 = 1) — in the ultraviolet region. …

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