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Question 31 of 38

Q.When a magnet is taken towards a coil, the induced emf depends on

(a) the number of turns in the coil
(b) the speed of the magnet
(c) the resistance of the coil
(d) magnetic moment of the magnet.
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2024MCQ· 1mImportance★★★★★
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By Faraday's law, induced emf = rate of change of flux linkage; for a given coil and magnet, that rate is controlled by the magnet's speed.

Faraday's law of electromagnetic induction states

ε=−Ndϕdt\varepsilon = -N\dfrac{d\phi}{dt}

where NN is the number of turns and dϕ/dtd\phi/dt is the rate of change of magnetic flux through the coil.

When a magnet is moved towards a coil, the flux linked with the coil changes because the magnet's distance from the coil changes with time. The FASTER the magnet moves, the more rapidly the flux changes, and hence the larger the induced emf — this is the direct meaning of dϕ/dtd\phi/dt.

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