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Question 43 of 58

Q.Under the influence of a uniform magnetic field, a charged particle is moving in a circle of radius R with constant speed V. The time period of the motion

(a) depends on both R and V
(b) is independent of both R and V
(c) depends on R and not on V
(d) depends on V and not on R
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2023MCQ· 1mImportance★★★★★
74% · 43/58 Questions
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The magnetic force supplies the centripetal force; in this relation the speed cancels out of the time-period expression, so T depends only on the particle's charge, mass, and B.

For a charged particle moving in a circle of radius RR with speed VV in a magnetic field BB, the magnetic force provides the centripetal force:

qVB=mV2R  ⟹  R=mVqBqVB = \dfrac{mV^2}{R} \implies R = \dfrac{mV}{qB}

The time period is:

T=2πRV=2πV⋅mVqB=2πmqBT = \dfrac{2\pi R}{V} = \dfrac{2\pi}{V}\cdot\dfrac{mV}{qB} = \dfrac{2\pi m}{qB} …

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