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Q.State and explain Faraday's laws of electromagnetic induction.

Jammu Kashmir JkboseJKBOSE Class 12 Annual Regular Examination 2026Subjective· 3mImportance★★★★★
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Faraday's laws establish that a changing magnetic flux through a circuit induces an EMF, and that this EMF is proportional to how fast the flux changes — with the negative sign (Lenz's law) fixing the induced EMF's direction to oppose the change.

First Law. Whenever the magnetic flux (ΦB\Phi_B) linked with a closed circuit (coil) changes, an electromotive force (EMF) is induced in the circuit. This induced EMF lasts only as long as the flux keeps changing — if a current-carrying closed loop exists, this induced EMF drives an induced current. The flux can change due to relative motion between coil and magnet, a changing current in a nearby circuit, or a changing orientation/area of the coil.

Second Law. The magnitude of the induced EMF is directly proportional to the rate of change of magnetic flux linkage:

ε=−dΦBdt\varepsilon = -\frac{d\Phi_B}{dt}

For a coil of NN turns, this generalises to

ε=−NdΦBdt\varepsilon = -N\frac{d\Phi_B}{dt}

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