A loop of wire sits in a uniform magnetic field, everywhere pointing toward you. Due to a changing magnetic flux through the loop, an induced current flows in the wire, clockwise as shown.This time the magnetic field maintains a constant value of 0.610 T, and we achieve an induced voltage of 0.123 V over a time period of 1.19 s by keeping the magnetic field fixed but changing the area of the wire loop from its initial value of 0.600 m^2. What is the final value of the loop s area after this time period
A loop of wire sits in a uniform magnetic field, everywhere pointing toward you. Due to a changing magnetic flux through the loop, an induced current flows in the wire, clockwise as shown.This time the magnetic field maintains a constant value of 0.610 T, and we achieve an induced voltage of 0.123 V over a time period of 1.19 s by keeping the magnetic field fixed but changing the area of the wire loop from its initial value of 0.600 m^2. What is the final value of the loop s area after this time period
An Introduction to Physical Science
14th Edition
ISBN:9781305079137
Author:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Publisher:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Chapter5: Temperature And Heat
Section: Chapter Questions
Problem 3FIB
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A loop of wire sits in a uniform magnetic field, everywhere pointing toward you. Due to a changing magnetic flux through the loop, an induced current flows in the wire, clockwise as shown.This time the magnetic field maintains a constant value of 0.610 T, and we achieve an induced voltage of 0.123 V over a time period of 1.19 s by keeping the magnetic field fixed but changing the area of the wire loop from its initial value of 0.600 m^2. What is the final value of the loop s area after this time period?
- 504 m^2
- 260 m^2
- 840 m^2
- 168 m^2
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