In the given figure, a square metal loop of side 4.00 cm and resistance 5.00 2 moves to the right (+x-direction) into, through, and out of a 6.00-cm-wide region of uniform magnetic field perpendicular to the plane of the loop. The magnetic field in the region is 0.250 T. At t= 0, the loop just begins to enter the region of magnetic field. The loop moves at a constant 1.00 cm/s. Which of the following correctly plots the graph of the external force applied to the loop (to keep it moving at constant velocity) as a function of time? a

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter23: Faraday’s Law And Inductance
Section: Chapter Questions
Problem 4OQ: A circular loop of wire with a radius of 4.0 cm is in a uniform magnetic field of magnitude 0.060 T....
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Applied force to loop
300
200
100
2
6
12
Applied force to loop
300
200-
100
6
10
12
Applied force to loop
300
200
100
-2
2
10
12
Transcribed Image Text:Applied force to loop 300 200 100 2 6 12 Applied force to loop 300 200- 100 6 10 12 Applied force to loop 300 200 100 -2 2 10 12
In the given figure, a square metal loop of side 4.00 cm and resistance 5.00 2 moves to the right (+x-direction) into, through, and
out of a 6.00-cm-wide region of uniform magnetic field perpendicular to the plane of the loop. The magnetic field in the region is
0.250 T. At t= 0, the loop just begins to enter the region of magnetic field. The loop moves at a constant 1.00 cm/s. Which of the
following correctly plots the graph of the external force applied to the loop (to keep it moving at constant velocity) as a function of
time?
х х
1
XI
X ix
R
d
х х
Multiple Choice
Applied force to loop
300
200
100
time
2
6
10
12
Transcribed Image Text:In the given figure, a square metal loop of side 4.00 cm and resistance 5.00 2 moves to the right (+x-direction) into, through, and out of a 6.00-cm-wide region of uniform magnetic field perpendicular to the plane of the loop. The magnetic field in the region is 0.250 T. At t= 0, the loop just begins to enter the region of magnetic field. The loop moves at a constant 1.00 cm/s. Which of the following correctly plots the graph of the external force applied to the loop (to keep it moving at constant velocity) as a function of time? х х 1 XI X ix R d х х Multiple Choice Applied force to loop 300 200 100 time 2 6 10 12
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