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A copper rod of length l is rotating about mid-point of rod, perpendicular to the magnetic field B with constant angular velocity ω. The induced emf between the two ends is

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Important Questions on Electromagnetic Induction

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A semicircular loop of radius R is rotated with an angular velocity ω perpendicular to the plane of a magnetic field B as shown in the figure. Emf induced in the loop is

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A force of 10 N is required to move a conducting loop through a non-uniform magnetic field at 2 ms-1. The rate of production of electrical energy (in watt) in loop is
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A flexible wire bent in the form of a circle is placed in a uniform magnetic field perpendicular to the plane of the circle. The radius r of circle changes with time t as shown in the figure. The graph of magnitude of induced emf |e| versus time in the circle is represented by

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Radius of a circular loop placed in a perpendicular uniform magnetic field is increasing at a constant rate of r0 ms-1. If at any instant radius of the loop is r, then emf induced in the loop at that instant will be
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A conducting ring of radius $b$ is placed coaxially in a long solenoid of radius $a(b<a)$ having $n$ turns per unit length. A current $i=i_{0} \cos \omega t$ flows through the solenoid. The induced emf in the ring is
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In what form is the energy stored in an inductor?
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Which of the following pairs of coils has zero coupling constant?
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If variation of magnetic flux through the closed loop is given by ϕ=t2-t+1 Wb, then induced emf at t=0.5 s is