In the scenario shown in the figure, the loop has length L = 1 m and width w = 10 cm. The loop is moving to the left at 250 m/s. An impressed magnetic field of 2 Bo eay exists throughout the domain of the problem, with B0 = 0.8 T and a = -0.50 m¯¹. The resistance R = 2.5 2. What is the current induced in the loop at the moment that the left side of the loop reaches y = 0.5 m, and in what direction (clockwise or counter-clockwise) does this current flow? R y

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In the scenario shown in the figure, the loop has length L = 1 m and width w = 10 cm.
The loop is moving to the left at 250 m/s. An impressed magnetic field of 2 Bo eay exists
throughout the domain of the problem, with B0 = 0.8 T and a = -0.50 m¯¹. The resistance
R = 2.5 2. What is the current induced in the loop at the moment that the left side of
the loop reaches y = 0.5 m, and in what direction (clockwise or counter-clockwise) does this
current flow?
R
y
Transcribed Image Text:In the scenario shown in the figure, the loop has length L = 1 m and width w = 10 cm. The loop is moving to the left at 250 m/s. An impressed magnetic field of 2 Bo eay exists throughout the domain of the problem, with B0 = 0.8 T and a = -0.50 m¯¹. The resistance R = 2.5 2. What is the current induced in the loop at the moment that the left side of the loop reaches y = 0.5 m, and in what direction (clockwise or counter-clockwise) does this current flow? R y
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