Q.Structure of Atom :
Assertion (A) : Bohr's theory accounts for the stability and line spectrum of Li^2+ ion.
Reason (R) : Bohr's theory explain the splitting of spectral lines in the presence of a magnetic field.
(Choose the correct option for the Assertion-Reason pair.)
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Start your 14-day free trial to unlock the full solution →Assertion (A) is correct — Bohr's theory works for Li2+ since it is a hydrogen-like, single-electron species — but Reason (R) is incorrect, since Bohr's theory cannot explain the Zeeman effect (splitting of spectral lines in a magnetic field).
Bohr's model of the atom was derived specifically for one-electron (hydrogen-like) systems: H, He+, Li2+, Be3+, etc. Li2+ has only one electron (Z = 3, so it has lost 2 electrons), making it hydrogen-like, and Bohr's theory correctly accounts for its stability (quantised, non-radiating orbits) and its line spectrum (spectral lines from electron transitions between quantised energy levels), just as for hydrogen. So Assertion (A) is TRUE.
However, Bohr's original theory is a purely classical-quantum hybrid model that predicts only the gross (main) spectral lines. It could NOT explain:
- The fine structure of spectral lines (needs elliptical orbits, Sommerfeld's extension) …
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