Question 3

SCQHARD

A conducting square loop initially lies in the XZXZ plane with its lower edge hinged along the XX-axis. Only in the region y0y \ge 0, there is a time dependent magnetic field pointing along the ZZ-direction, B(t)=B0(cosωt)k^\vec{B}(t) = B_0(\cos \omega t)\hat{k}, where B0B_0 is a constant. The magnetic field is zero everywhere else. At time t=0t = 0, the loop starts rotating with constant angular speed ω\omega about the XX axis in the clockwise direction as viewed from the +X+X axis (as shown in the figure). Ignoring self-inductance of the loop and gravity, which of the following plots correctly represents the induced e.m.f. (VV) in the loop as a function of time:

Question
(A)
Option A
(B)
Option B
(C)
Option C
(D)
Option D
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