A wire loop is moved from outside the magnetic field until it is fully inside the magnetic field. The initial magnetic flux is 0 Wb, and the change in magnetic flux is 1.7 Wb. The magnetic field has a strength of 0.031 T. Calculate the area of the wire loop. The following equations may be useful: $ = B_A Round your answer to 3 significant figures. BLA 1.7 Wb A 0.031 T А m2 || || || ||

University Physics Volume 2
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ISBN:9781938168161
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Chapter13: Electromagnetic Induction
Section: Chapter Questions
Problem 26P: A square loop whose sides are 6.0-cm long is made with copper wire of radius 1.0 mm. If a magnetic...
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A wire loop is moved from outside the magnetic field until it is fully inside the magnetic field. The
initial magnetic flux is 0 Wb, and the change in magnetic flux is 1.7 Wb. The magnetic field has a
strength of 0.031 T.
Calculate the area of the wire loop.
The following equations may be useful:
$ = B_A
Round your answer to 3 significant figures.
ΔΦ
B_A
xA
1.7 Wb
A
0.031 T
A =
m²
|
Transcribed Image Text:A wire loop is moved from outside the magnetic field until it is fully inside the magnetic field. The initial magnetic flux is 0 Wb, and the change in magnetic flux is 1.7 Wb. The magnetic field has a strength of 0.031 T. Calculate the area of the wire loop. The following equations may be useful: $ = B_A Round your answer to 3 significant figures. ΔΦ B_A xA 1.7 Wb A 0.031 T A = m² |
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