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Q.Explain Bohr's model of the atom. OR The energy of an electron of an excited hydrogen atom is −3.4-3.4 eV. Determine the angular momentum of the electron.

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2023Subjective· 3mImportance★★★★★
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Bohr proposed stable quantised orbits (mvr=nh/2πmvr=nh/2\pi) in which electrons do not radiate, with radiation emitted only on jumps between orbits (hν=E2−E1h\nu=E_2-E_1).

Bohr's model of the hydrogen atom (main stem — this is one of an OR choice):

Postulate 1 — Stationary orbits. An electron revolves around the nucleus in certain fixed circular orbits called stationary orbits. While in such an orbit it does not radiate energy, even though it is accelerating. The necessary centripetal force is provided by the electrostatic attraction between the nucleus and electron:

14πε0Ze2r2=mv2r.\frac{1}{4\pi\varepsilon_0}\frac{Ze^2}{r^2}=\frac{mv^2}{r}.

Postulate 2 — Quantisation of angular momentum. Only those orbits are allowed in which the electron's angular momentum is an integral multiple of h2π\dfrac{h}{2\pi}:

mvr=nh2π,n=1,2,3,…mvr=\frac{nh}{2\pi},\qquad n=1,2,3,\dots

where nn is the principal quantum number.

Postulate 3 — Frequency (transition) condition. Energy is emitted or absorbed only when an electron jumps from one allowed orbit of energy E2E_2 to another of energy E1E_1; the emitted/absorbed photon has

hν=E2−E1.h\nu=E_2-E_1.

…

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