The diagram given below shows a solenoid carrying time varying current l=l0t. On the axis of the solenoid
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The diagram given below shows a solenoid carrying time varying current l=l0t. On the axis of the solenoid, a ring has been placed. The mutual inductance of the ring and the solenoid is M and the self inductance of the ring is L. If the resistance of the ring is R then maximum current which can flow through the ring is
24
Oct
The diagram given below shows a solenoid carrying time varying current l=l0t. On the axis of the solenoid, a ring has been placed. The mutual inductance of the ring and the solenoid is M and the self inductance of the ring is L. If the resistance of the ring is R then maximum current which [...]
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(assume that the internal resistance of the battery and of the connecting wire are negligible) ,
In the circuit shown in fig ,
The diagram given below shows a solenoid carrying time varying current l=l0t. On the axis of the solenoid ,
the time constant of the two braches are equal(=T). Then if the key S is closed at the instant t=0 ,
the time in which the current in the circuit through the battery will rise to its final value of (E/R) will be ,