Physics · JEE

Hard Electromagnetic induction: Faraday's law, induced emf and current, Lenz's law, eddy currents, self and mutual inductance MCQs for JEE

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Hard Electromagnetic induction: Faraday's law, induced emf and current, Lenz's law, eddy currents, self and mutual inductance MCQs train multi-concept problem solving — attempt after mastering easy and medium sets (50+ on Goodmarks).

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Q1PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
Which of the following is true in context of Eddy currents?
Q2PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
A circuit has a self-inductance of 1H1 \boldsymbol{H} and carries a current of 2A.2 A . To prevent sparking, when the circuit is switched off, a capacitor which can withstand 400V400 V is used. The least capacitance of the capacitor connected across the switch must be equal to
Q3PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
A magnet is allowed to fall through a copper circular wire. Then during fall:
Q4PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
If given arrangement is moving towards left with speed v,v, then potential difference between BB and DD and current in the loop are respectively.
Q5PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
Magnitude of e.m.f. produced in a coil when a magnet is inserted into it does not depend upon:
Q6PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
toppr Q Type your question insulated from each other. The entire loop lies in the plane (of the paper). A uniform magnetic field BB point into the plane of the paper. At t=0,t=0, the loop starts rotating about the common diameter as axis with a constant angular velocity ω\omega in the magnetic field Which of the following options is/are correct? This question has multiple correct options
Q7PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
When a coil rotated in magnetic field induced current in it :
Q8PhysicsUnit 14: Electromagnetic Induction and Alternating Currents
A current is induced in a coil by electromagnetic induction.

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