The figure shows a square loop \( L \) of side \( 5 \mathrm{~cm} \)...

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The figure shows a square loop \( L \) of side \( 5 \mathrm{~cm} \) which is connected to a network of resistances. The whole set-
\( \mathrm{P} \) up is moving towards right with a constant speed of \( 1 \mathrm{~cm} \mathrm{~s}^{-1} \). At some instant, a part of \( L \) is in a uniform
W magnetic field of \( 1 \mathrm{~T} \), perpendicular to the plane of the loop. If the resistance of \( L \) is \( 1.7 \Omega \), the current in the loop at that instant will be close to
(a) \( 60 \mu \mathrm{A} \)
(b) \( 150 \mu \mathrm{A} \)
(c) \( 170 \mu \mathrm{A} \)
(d) \( 115 \mu \mathrm{A} \quad \) (JEE Main)
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