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Q.What are the limitations of Bohr's atomic model ?

Jammu Kashmir JkboseJKBOSE Class 12 Annual Regular Examination 2018Subjective· 3mImportance★★★★★
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Bohr's model, though it correctly explained the hydrogen spectrum, has several serious limitations: it fails for multi-electron atoms, cannot explain fine structure or field-induced splitting of spectral lines, and violates the later uncertainty principle by assuming sharply defined orbits.

Bohr's atomic model (postulating quantised circular orbits with angular momentum L=nℏL=n\hbar) successfully explained the observed line spectrum of the hydrogen atom, but it has the following limitations:

  1. Fails for multi-electron atoms: the model works well only for hydrogen and hydrogen-like ions (single electron, e.g. He+^+, Li2+^{2+}). For atoms with more than one electron, electron-electron repulsions and other effects are not accounted for, so the model fails to predict their spectra accurately.

  2. Cannot explain fine structure: careful spectroscopy shows hydrogen's spectral lines are actually made up of several closely spaced lines (fine structure); the model, being non-relativistic and ignoring electron spin, cannot account for this splitting.

  3. Cannot explain relative intensities of spectral lines: the model gives no information about why some spectral lines are brighter (more probable transitions) than others.

  4. Cannot explain Zeeman and Stark effects: the splitting of spectral lines in an external magnetic field (Zeeman effect) or electric field (Stark effect) is not explained by Bohr's simple circular-orbit picture.

  5. Arbitrary quantisation postulate: Bohr simply postulated that angular momentum is quantised in units of ℏ\hbar, without physical justification from a deeper theory; it was later shown (de Broglie, Schrödinger) to follow from the wave nature of the electron, but Bohr's own model gave no such derivation.

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