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(i) Deduce the expression for the frequency
of revolution of a charged particle in a
magnetic field and show that, it is
independent of velocity or energy of the
particle.
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Answer:
This is equal to the centripetal force acting on the particle. Hence, frequency is independent of velocity of the particle. ... The particle feels a centripetal force due to the magnetic field and an accelerating force due to the electric field
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(a) Deduce an expression for the frequency of revolution of a charged particle in a magnetic field and show that it is independent of velocity or energy of the particle.
(b) Draw a schematic sketch of a cylotron. Explain, giving the essential details of its construction, how it is used to accelerate the charged particles.
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