A stationary conducting loop is placed in between the north pole and south pole of an artificial magnet. An increasing magnetic field is observed, increasing at the rate of 0.070 T/s. The conducting loop has a radius of 5 cm, and the vector area of the coil is perpendicular with the magnetic field vector. If a resistance of 80 was measured, calculate the induced current. *No backtracking. *Please be careful when answering, only your submission in BB will be considered as your final answer. *Focus on getting the correct answer, a separate time will be alloted for the uploading of the solutions. O 1.73 mA O 0.2159 mA O O A O 68.72 uA
A stationary conducting loop is placed in between the north pole and south pole of an artificial magnet. An increasing magnetic field is observed, increasing at the rate of 0.070 T/s. The conducting loop has a radius of 5 cm, and the vector area of the coil is perpendicular with the magnetic field vector. If a resistance of 80 was measured, calculate the induced current. *No backtracking. *Please be careful when answering, only your submission in BB will be considered as your final answer. *Focus on getting the correct answer, a separate time will be alloted for the uploading of the solutions. O 1.73 mA O 0.2159 mA O O A O 68.72 uA
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![A stationary conducting loop is placed in between the north pole and south pole of an artificial magnet. An increasing magnetic field is observed, increasing at
the rate of 0.070 T/s. The conducting loop has a radius of 5 cm, and the vector area of the coil is perpendicular with the magnetic field vector. If a resistance of
80 was measured, calculate the induced current.
*No backtracking.
*Please be careful when answering, only your submission in BB will be considered as your final answer.
*Focus on getting the correct answer, a separate time will be alloted for the uploading of the solutions.
O 1.73 mA
O 0.2159 mA
O O A
O 68.72 uA](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe716d604-4851-4531-a8b1-12c378c96145%2F73c115e6-2d7e-4d69-8f99-b598bac04f70%2F6ycdvfh_processed.png&w=3840&q=75)
Transcribed Image Text:A stationary conducting loop is placed in between the north pole and south pole of an artificial magnet. An increasing magnetic field is observed, increasing at
the rate of 0.070 T/s. The conducting loop has a radius of 5 cm, and the vector area of the coil is perpendicular with the magnetic field vector. If a resistance of
80 was measured, calculate the induced current.
*No backtracking.
*Please be careful when answering, only your submission in BB will be considered as your final answer.
*Focus on getting the correct answer, a separate time will be alloted for the uploading of the solutions.
O 1.73 mA
O 0.2159 mA
O O A
O 68.72 uA
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