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A conducting bar of length \( L \) is free to slide on two parallel conducting rails as shown in...
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A conducting bar of length \( L \) is free to slide on two parallel conducting rails as shown in the figure.
Two resistors \( R_{1} \) and \( R_{2} \) are connected across the ends of the rails. There is a uniform magnetic field \( \vec{B} \) pointing into the page. An external agent pulls the bar to the left at a constant speed \( v \).
The correct statement about the directions of induced currents \( I_{1} \) and \( I_{2} \) flowing throught \( R_{1} \) and \( R_{2} \) respectively is
\( (2021) \)
(a) Both \( I_{1} \) and \( I_{2} \) are in anticlockwise direction
(b) Both \( I_{1} \) and \( I_{2} \) are in clockwise direction
(c) \( I_{1} \) is in clockwise direction and \( I_{2} \) is in anticlockwise direction
(d) \( I_{1} \) is in anticlockwise direction and \( I_{2} \) is in clockwise direction
Two resistors \( R_{1} \) and \( R_{2} \) are connected across the ends of the rails. There is a uniform magnetic field \( \vec{B} \) pointing into the page. An external agent pulls the bar to the left at a constant speed \( v \).
The correct statement about the directions of induced currents \( I_{1} \) and \( I_{2} \) flowing throught \( R_{1} \) and \( R_{2} \) respectively is
\( (2021) \)
(a) Both \( I_{1} \) and \( I_{2} \) are in anticlockwise direction
(b) Both \( I_{1} \) and \( I_{2} \) are in clockwise direction
(c) \( I_{1} \) is in clockwise direction and \( I_{2} \) is in anticlockwise direction
(d) \( I_{1} \) is in anticlockwise direction and \( I_{2} \) is in clockwise direction