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The Faraday's law of induction does NOT imply The time rate of change of a magnetic field may induce an emf. The time rate of
The Faraday's law of induction does NOT imply The time rate of change of a magnetic field may induce an emf. The time rate of change of an electric field must induce an emf. The time rate of change of electric current in a circuit may induce an emf in the circuit. The time rate of change of magnetic flux must induce an emf.Which of the following is NOT true for an AC circuit: ) A resistor in an AC circuit responds the same way as it does in a DC circuit. A capacitor in an AC circuit offers very little resistance for a high frequency signal An Inductor in an AC circuit offers very little resistance for a high frequency signal A resonance occurs in an AC circuit if the current through the circuit is maximum.Which of the following is TRUE: The electric field inside a conductor is always zero. The magnetic field of a bar magnet has a similar structure as that of a straight current carrying wire. The magnetic field of a straight current carrying wire varies as 1/r from the wire. The electric potential inside a conductor under an electrostatic equilibrium must be zero
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