The rectangular loop with the dimensions given in the figure is located in a region where a uniform magnetic field B=1T in the +y direction is present. The loop plane has a 37° angle with the x-axis. The magnitude of the magnetic field is reduced down to zero in 0.3 s. Calculate the value and direction of the current induced in the loop. The resistance of the loop is R=4. 3 m 0 37 2 m B
The rectangular loop with the dimensions given in the figure is located in a region where a uniform magnetic field B=1T in the +y direction is present. The loop plane has a 37° angle with the x-axis. The magnitude of the magnetic field is reduced down to zero in 0.3 s. Calculate the value and direction of the current induced in the loop. The resistance of the loop is R=4. 3 m 0 37 2 m B
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![The rectangular loop with the dimensions given in the figure
is located in a region where a uniform magnetic field B=1 T
in the +y direction is present. The loop plane has a 37° angle
with the x-axis. The magnitude of the magnetic field is reduced
down to zero in 0.3s. Calculate the value and direction of the
current induced in the loop. The resistance of the loop is R=40.
2 m
B
3 m
++
37](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe7cc6e65-f260-48e9-8037-7f5f4a7e7b8c%2Fcd6fe628-e81a-4765-a388-83be10be0758%2Fnnhby2b_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The rectangular loop with the dimensions given in the figure
is located in a region where a uniform magnetic field B=1 T
in the +y direction is present. The loop plane has a 37° angle
with the x-axis. The magnitude of the magnetic field is reduced
down to zero in 0.3s. Calculate the value and direction of the
current induced in the loop. The resistance of the loop is R=40.
2 m
B
3 m
++
37
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