The figure shows a 40-turn loop with dimensions L = 6.5 m and w = 1.8 m carrying a current I = 7.7 A immersed in a uniform 0.62-T magnetic field in the +z-direction. Calculate the work required by an external force to rotate the loop from 0 = 50° to 31°. X W- B TRO I L

Principles of Physics: A Calculus-Based Text
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Chapter23: Faraday’s Law And Inductance
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The figure shows a 40-turn loop with dimensions I = 6.5 m and w = 1.8 m carrying a current I = 7.7
A immersed in a uniform 0.62-T magnetic field in the +z-direction. Calculate the work required by an
external force to rotate the loop from = 50° to 31°.
X
W
B
TRO
I
L
Transcribed Image Text:The figure shows a 40-turn loop with dimensions I = 6.5 m and w = 1.8 m carrying a current I = 7.7 A immersed in a uniform 0.62-T magnetic field in the +z-direction. Calculate the work required by an external force to rotate the loop from = 50° to 31°. X W B TRO I L
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