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Question 26 of 38

Q.a) State Lenz's law related to the electromagnetic induction. b) What is eddy current? c) What is meant by 'self-inductance of a coil is 1 H'? d) Establish an expression for self-inductance of a solenoid. OR

a) An a.c. source generating voltage e = e0 sinωt is connected to a capacitor of capacitance C. Find the expression for the current i flowing through it. Plot a graph of e and i versus ωt. b) Determine the resonance frequency ωr of a series LCR circuit with L = 2.0 H, C = 32 μF and R = 10 Ω. What is the Q-value of this circuit?
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2019Subjective· 5mImportance★★★★★
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Lenz's law fixes the direction of induced emf to oppose the flux change (energy conservation); eddy currents are induced currents circulating within a bulk conductor; a self-inductance of 1 H means a 1 A/s current-change induces 1 V emf; and a solenoid's self-inductance is L = μ₀n²Al.

a) Lenz's law: The direction of an induced emf (and hence induced current) in a circuit is always such that it opposes the change in magnetic flux that produces it. This is a consequence of, and consistent with, the law of conservation of energy — work must be done against the induced effect to change the flux.

b) Eddy current: When a changing magnetic flux links a bulk (solid) conductor, circulating (loop-like) currents are induced within the body of the conductor itself — these are called eddy currents. They cause heating (used in induction furnaces) and oppose the motion/change (used for electromagnetic damping/braking), but represent an energy loss in devices like transformer cores (which is why cores are laminated to reduce them).

c) Self-inductance = 1 H: The self-inductance of a coil is 1 henry (1 H) if a current changing at the rate of 1 ampere per second in the coil induces an emf of 1 volt in it: ε=−LdIdt\varepsilon = -L\dfrac{dI}{dt}, so L=1L=1 H when ε=1\varepsilon = 1 V for dI/dt=1dI/dt = 1 A/s.

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