Exercise-1
Embibe Experts Physics Solutions for Exercise-1
Simple step-by-step solutions to Exercise-1 questions of Electromagnetic Induction from Beta Question Bank for Engineering: Physics. Also get 3D topic explainers, cheat sheets, and unlimited doubts solving on EMBIBE.
Questions from Exercise-1 with Hints & Solutions
Match the following:
(i) | magnetic flux | (a) | tesla |
(ii) | magnetic flux density | (b) | weber |
(iii) | relative permeability | (c) | no unit |
(iv) | magnetic field intensity | (d) | amper/meter |
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When current changes from to in , an e.m.f. of is induced in a coil. The coefficient of self-induction of the coil is
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Consider a metal ring kept on a horizontal plane. A bar magnet is held above the ring with its length along the axis of the ring. If the magnet is dropped freely the acceleration of the falling magnet is ( is acceleration due to gravity)
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In the inductive circuit given in fig. the current rises after the switch is closed. At instant, when the current is . Then potential difference across the inductor is :-
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Two identical inductance carry currents that vary with time according to linear laws (as shown in figure). In which of two inductance is the self induction emf greater?
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A conducting wire frame is placed in a magnetic field which is directed into the paper. The magnetic field is increasing at a constant rate. The directions of induced current in wires and are :-
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In circuit when ammeter is connected it reads current if a student uses ammeter the reading in the ammeter will be
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In an circuit, the capacitor has maximum charge . The value of is
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