$A$ metallic square wire loop of side $10\, cm$ and resistance $1\,\Omega$ is moved with a constant velocity $v_0$ in a uniform magnetic field of induction $B = 2\, T$ as shown in the figure. The magnetic field is perpendicular into the plane of the loop. The loop is connected to a network of resistors each of value $3\,\Omega$. The resistance of the lead wires $OS$ and $PQ$ are negligible. What should be the speed of the loop so as to have a steady current of $1\, mA$ in it? Give the direction of current in the loop.

  • A
    $2 \times 10^{-2}\, m/s$,anticlockwise direction
  • B
    $4 \times 10^{-2}\, m/s$,anticlockwise direction
  • C
    $2 \times 10^{-2}\, m/s$,clockwise direction
  • D
    $4 \times 10^{-2}\, m/s$,clockwise direction

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