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The equivalent inductance of two inductance is , when connected in parallel and , when connected in series. The difference between the two inductance is
(a)
(b)
(c)
(d)

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Important Questions on Electromagnetic Induction
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A superconducting loop of radius has self inductance . A uniform and constant magnetic field is applied perpendicular to the plane of the loop. Initially, the current in this loop is zero. The loop is rotated by about its diameter. The current in the loop, after rotation, is equal to

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Two coaxial solenoids are made by winding thin insulated wire over a pipe of cross-sectional area and length . If one of the solenoids has turns and the other has turns, their mutual inductance is

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A circular wire loop of radius , is placed in an plane, Centre at the origin . A square loop of side , having two turns, is placed with its center at , along the axis of circular wire loop, as shown in the figure. The plane of the square loop makes an angle of with respect to the -axis. If the mutual inductance between the loops is given by , then the value of is

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The mutual inductance of two coils is . In the first coil, if the current changes at , then the value of induced EMF (in ) in the secondary coil will be

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Two coils have a mutual inductance of . The current changes in the first coil, according to the equation, , where and . The maximum value of emf in the second coil will be

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Two coils, and , of turns and turns, respectively, lie in parallel planes so that, of flux produced in links with . It is found that, a current of in coil produces a flux of , whereas the same current in coil produces a flux of . The mutual inductance of the two coils is

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Two coils of self inductance and , respectively, are placed so close together that the effective flux in one coil is completely linked with the other. The mutual inductance between these coils is

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The mutual inductance of an induction coil is . In the primary coil, the current reduces from to zero, in . What is the induced emf in the secondary coil?
