As shown below, there are two concentric copper wire loops; a 2.3 cm radius loop and a 31 cm radius loop. The cross-sectional area of each wire is 0.001 m². The current in the larger loop goes from a counterclockwise 1.9 A to 0 A in 8.1 x 10-4 s. Find the voltage & current in the smaller loop during the stated time interval. Assume the B-field of the larger loop is uniform (though not constant) across the smaller loop. V = X I = current direction = counterclockwise
As shown below, there are two concentric copper wire loops; a 2.3 cm radius loop and a 31 cm radius loop. The cross-sectional area of each wire is 0.001 m². The current in the larger loop goes from a counterclockwise 1.9 A to 0 A in 8.1 x 10-4 s. Find the voltage & current in the smaller loop during the stated time interval. Assume the B-field of the larger loop is uniform (though not constant) across the smaller loop. V = X I = current direction = counterclockwise
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter25: Electromagnetic Induction
Section: Chapter Questions
Problem 48A
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please help me find the missing values to this .. i will upvote.. please make answer clear please im using this to study
![Problem
As shown below, there are two concentric copper wire loops; a 2.3 cm radius loop and a 31 cm radius loop. The cross-sectional
area of each wire is 0.001 m². The current in the larger loop goes from a counterclockwise 1.9 A to 0 A in 8.1 x 10-4 s. Find the
voltage & current in the smaller loop during the stated time interval. Assume the B-field of the larger loop is uniform (though not
constant) across the smaller loop.
V =
X
I =
current direction = counterclockwise ✓](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F276495b2-3cf9-4b57-885d-58d13cff0963%2F31516fdc-e3a6-46cf-ad17-90c18cdba824%2Fuff03md_processed.png&w=3840&q=75)
Transcribed Image Text:Problem
As shown below, there are two concentric copper wire loops; a 2.3 cm radius loop and a 31 cm radius loop. The cross-sectional
area of each wire is 0.001 m². The current in the larger loop goes from a counterclockwise 1.9 A to 0 A in 8.1 x 10-4 s. Find the
voltage & current in the smaller loop during the stated time interval. Assume the B-field of the larger loop is uniform (though not
constant) across the smaller loop.
V =
X
I =
current direction = counterclockwise ✓
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