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Two charged particles, \(P\) and \(Q\), each having charge \(q\) but of masses m 1 and m 2 are accelerated through the s…

Q1

Two charged particles, \(P\) and \(Q\), each having charge \(q\) but of masses m1 and m2 are accelerated through the same potential difference V. They enter a region of magnetic field \(\vec{\mathrm{B}}(⊥\vec{\mathrm{v}})\) and describe the circular paths of radii \(a\) and \(b\) respectively. Then \(\left(\frac{{m}_{1}}{{m}_{2}}\right)\) is equal to :

a

\(\frac{\mathrm{a}}{\mathrm{b}}\)

b

\(\frac{\mathrm{b}}{\mathrm{a}}\)

c

\({\left(\frac{\mathrm{a}}{\mathrm{b}}\right)}^{2}\)

d

\({\left(\frac{\mathrm{b}}{\mathrm{a}}\right)}^{2}\)

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