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Q.a) State Faraday's laws of electromagnetic induction. b) The magnetic flux through a coil is varying according to the relation φ = (4t² + 2t − 5) Wb, t measured in seconds. Calculate the induced current through the coil at t = 2 second, if the resistance of the coil is 5Ω. OR

a) Define the term 'root mean square' (r.m.s.) value of alternating current. b) An a.c. source e = E0 sinωt is applied across an ideal inductor of inductance L. Show mathematically that the current lags the voltage by a phase angle of π/2. c) If L is 100 mH and the applied a.c. source frequency be 50 Hz, find the inductive reactance in the above case.
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2016Subjective· 5mImportance★★★★★
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Faraday's law gives EMF = −dφ/dt; differentiating the given flux equation and dividing by resistance gives an induced current of 3.6 A at t = 2 s.

(a) Faraday's laws of electromagnetic induction:

  1. Whenever the magnetic flux linked with a circuit changes, an EMF is induced in it, and this induced EMF lasts only as long as the flux is changing. …

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