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Magnetic field lines at Melbourne in Australia seems to

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Important Questions on Magnetic Effects of Current and Magnetism

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A toroid has 500 turns per unit length. If it carries a current of 2 A, the magnetic energy density inside the toroid is
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A solenoid of 1000 turns per metre has a core with relative permeability 500. Insulated windings of the solenoid carry an electric current of 5 A. The magnetic flux density produced by the solenoid is:

(Permeability of free space=4π×10-7 H m-1)

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Four identical long solenoids A, B, C and D are connected to each other as shown in the figure. If the magnetic field at the center of A is 3 T the field at the center of C would be : (Assume that the magnetic field is confined with in the volume of respective solenoid).

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A toroid with a mean radius r, the diameter 2a has N turns carrying current I. What is the magnetic field B outside the toroid?
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For toroid of mean radius 20 cm, turns=240 and a current of 2 A. What is the value of the magnetic field within the toroid?
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A long solenoid has 100 turns m-1 and a current of 3.5 A is flowing through it. If it is filled with material of relative permeability μr=20, then the magnetic field within the solenoid will be? μ=4π×10-7
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A long solenoid has 200 turns per cm and carries a current of 2.5 Amps. The magnetic field at its center is μ0=4π×10-7 weber/amp-m
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In a coaxial, straight cable, the central conductor and the outer conductor carry equal currents in opposite directions. The magnetic field is non-zero 

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