7) At t=0 the value of the distance x is 1.2 m. Five milliseconds (5ms) later the distance is reduced to x=0.8m. (See figure) f 0.15 m + 3.502 x x x x x x x X X X X X X X X X X X X X x a) Determine the change in magnetic flux at t= 0s and t= 5ms. If the magnetic field intensity is 0.65 T. b) Determine the magnitude of the average voltage that is induced in the wire in this time interval.

Physics for Scientists and Engineers: Foundations and Connections
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Chapter32: Faraday’s Law Of Induction
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7) At t=0 the value of the distance x is 1.2 m. Five milliseconds (5ms) later the distance is
reduced to x=0.8m. (See figure)
0.15 m
3.502
ww
X X X
X
X
X X X
XXX
X X X X
X
X
X X
-x'
a) Determine the change in magnetic flux at t= 0s and t= 5ms. If the magnetic field intensity is
0.65 T.
b) Determine the magnitude of the average voltage that is induced in the wire in this time
interval.
Transcribed Image Text:7) At t=0 the value of the distance x is 1.2 m. Five milliseconds (5ms) later the distance is reduced to x=0.8m. (See figure) 0.15 m 3.502 ww X X X X X X X X XXX X X X X X X X X -x' a) Determine the change in magnetic flux at t= 0s and t= 5ms. If the magnetic field intensity is 0.65 T. b) Determine the magnitude of the average voltage that is induced in the wire in this time interval.
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