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NCERT Exemplar · Q5

Q.Same as in Problem 4 except that the coil AA is made to rotate about a vertical axis. No current flows in BB if AA is at rest. The current in coil AA, when the current in BB (at t=0t = 0) is counterclockwise and the coil AA is as shown at this instant, t=0t = 0, is

(a) constant current clockwise.
(b) varying current clockwise.
(c) varying current counterclockwise.
(d) constant current counterclockwise.
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"No current in BB while AA is at rest" can only hold if AA's current does not change in time, so coil AA carries a constant current; the given counterclockwise sense in BB fixes that steady current in AA as clockwise.

Reading the crucial condition

We are told: if AA is at rest, no current flows in BB. Suppose instead the current IAI_A in coil AA varied with time. Then, even with AA held fixed, the flux it sends through BB would change, and by Faraday–Lenz a current would appear in BB:

εB=−M dIAdt.\varepsilon_B = -M\,\frac{dI_A}{dt}.

Since the problem states there is no current in BB for a stationary AA, we must have

dIAdt=0⇒IA=constant.\frac{dI_A}{dt}=0 \quad\Rightarrow\quad I_A = \text{constant}.

So coil AA is driven by a source that maintains a steady current; the only way to get a current in BB is to rotate AA (which changes the orientation, hence the flux through BB).

Fixing the direction …

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