Question: We are looking down on an elastic conducting loop with resistance R = 1 . 6 , immersed in a magnetic field. The field's magnitude

We are looking down on an elastic conducting loop with resistance R=1.6, immersed in a magnetic field. The field's magnitude is uniform spatially, but varies with time 2.2 s according to B(t)=t, where =0.48Ts. The area A of the loop also increases at a constant rate, according to A(t)=A0+t, where A0=0.66m2 and =0.72m2s.
We are looking down on an elastic conducting loop

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