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Q.What are the limitations of Bohr's theory of hydrogen atom?

Telangana TsbieTelangana Board of Intermediate Education 2022Subjective· 4mImportance★★★★★
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Bohr's model successfully explains the hydrogen spectrum but has several fundamental limitations that later quantum mechanics resolved.

Limitations of Bohr's theory of the hydrogen atom

  1. Applicable only to single-electron (hydrogen-like) systems: Bohr's theory gives accurate results only for hydrogen and hydrogen-like ions (He⁺, Li²⁺, etc.) having a single electron. It fails to explain the spectra of multi-electron atoms, where electron-electron interactions become important.

  2. Cannot explain fine structure of spectral lines: Experimentally, each spectral line of hydrogen, when examined with high resolution, is found to consist of several closely spaced lines (fine structure). Bohr's theory, based on simple circular orbits, does not account for this.

  3. Cannot explain Zeeman and Stark effects: The splitting of spectral lines when the atom is placed in an external magnetic field (Zeeman effect) or electric field (Stark effect) cannot be explained by Bohr's model.

  4. Cannot explain relative intensities of spectral lines: Bohr's theory predicts which transitions (frequencies) are possible but gives no explanation for why some spectral lines are more intense (more probable) than others.

  5. Arbitrary/ad-hoc quantization postulate: Bohr postulated that angular momentum is quantized in integral multiples of h/2πh/2\pi (mvr=nh/2πmvr = nh/2\pi) without any physical justification from first principles; this was only later justified by de Broglie's matter-wave hypothesis (that a stationary orbit contains a whole number of electron wavelengths).

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