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A metallic square loop ABCD is moving in...

A metallic square loop ABCD is moving in its own plane with velocity v in a uniform magnetic field perpendicular to its plane as shown in the figure. An electric field is induced

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A metalic square loop ABCD is moving in its own plane with velocity v is in a uniform magnetic field perpendicular to its plane as shown in the figure . An electric field is induced

A metallic square loop ABCD is moving in its own plane with velocity v in a uniform magnetic field perpendicular to its plane as shown in fig. An electric field is induced

A metallic square loop ABCD is moving in its own plane with velocity v in a uniform magnetic field perpendicular to its plane as shown in the figure, Find a) in which sides of the loop electric field is induced. b) Net emf induced in the loop. c) If one side .BC. is outside the field with remaining loop in the field and is being pulled on D with a constant velocity then induced current in the loop.

A metallic square loop ABCD is moving in its own plane with velocity v in a uniform magnetic field perpendicular to its plane as shown in the figure. Find {:a) In which sides of the loop electric field is induced. {:b) Net emf induced in the loop {:c) If one 'BC' is outside the field with remaining loop in the field and is being pulled ot a constant velocity then induced current in the loop.

A metallic square loop PQRS is moving in its own plane with velocity v in a uniform magnetic field perpendicular to its plane as shown in Fig. If V_(P), V_(Q), V_(R) and V_(S) are the potentials of points P, Q, R and S then which of the following is an incorrect statement?

A square conducting loop of side L and resistance R is moving with a uniform velocity at right angles to one of the side in its own plane . On applying a uniform magnetic field at right angles to its plane as show in the figure the induced current in the loop will be __