2. The rectangular conducting loop shown in Figure 2 rotates around the z-axis in a counter- clockwise direction. The magnetic flux is uniform with a value given as B 0.05 ay (T). Determine the current induced in the loop in a uniform magnetic flux density given its internal resistance as 0.5 N. 3 cm Figure 2: Rectangular conducting loop

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Chapter31: Faraday’s Law
Section: Chapter Questions
Problem 31.5OQ: A square, flat loop of wire is pulled at constant velocity through a region of uniform magnetic...
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2. The rectangular conducting loop shown in Figure 2 rotates around the z-axis in a counter-
clockwise direction. The magnetic flux is uniform with a value given as B 0.05 ay (T).
Determine the current induced in the loop in a uniform magnetic flux density given its internal
resistance as 0.5 Q.
2 cm
3 cm
B
Figure 2: Rectangular conducting loop
Transcribed Image Text:2. The rectangular conducting loop shown in Figure 2 rotates around the z-axis in a counter- clockwise direction. The magnetic flux is uniform with a value given as B 0.05 ay (T). Determine the current induced in the loop in a uniform magnetic flux density given its internal resistance as 0.5 Q. 2 cm 3 cm B Figure 2: Rectangular conducting loop
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