A long straight wire in the horizontal plane carries a current of 75 A in north to south direction, magnitude and direction of field B at a point 3 m east of the wire is
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If a long straight wire carries a current of 40 A, then the magnitude ol the field B at a point 15 cm away from the wire is
The correct plot of the magnitude of magnetic field vs distance r from centre of the wire is, if the radius of wire is R
A solenoid of length 0.6 m has a radius of 2 cm and is made up of 600 turns. If it carries a current of 4A, then the magnitude of the magnetic field inside the solenoid is
A solenoid of length 50 cm, having 100 turns carries a current of 2.5 A. The magnetic field at one end of the solenoid is
A 90 cm long solenoid has six layers of windings of 450 turns each. If the diameter of solenoid is 2.2 cm and current carried is 6A, then the magnitude of magnetic field inside the solenoid, near its centre is
A long straight wire of radius a carries a steady current I. The current is uniformly distributed over its cross-section. The ratio of the magnetic fields B and B', at radial distances and 2 a respectively, from the axis of the wire is:
A current of 5 ampere is passed through a straight, wire of length ; then the magnetic induction at a point from the both end of the wire is
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