A square, 47.0-turn coil that is 12.0 cm on a side with a resistance of 0.7202 is placed between the poles of a large (8) electromagnet. The electromagnet produces a constant, uniform magnetic field of 0.500 T directed into the screen. (8) As suggested by the figure, the field drops sharply to zero at the edges of the magnet. The coil moves to the right at a constant velocity of 3.40 cm/s. 18) N-turn 8. coil into the screen What is the current i through the wire coil before the coil reaches the right edge of the field? Define counterclockwise current as positive and clockwise current as negative. A What is the current iz through the wire coil while the coil is leaving the field? iz = A What is the current iz through the wire coil after the coil leaves the field? iz = A What is the total charge magnitude JAQ| that flows past a given point in the coil as it leaves the field? JAQ|= 100

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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A square, 47.0-turn coil that is 12.0 cm on a side with a
resistance of 0.7202 is placed between the poles of a large
electromagnet. The electromagnet produces a constant,
uniform magnetic field of 0.500 T directed into the screen.
As suggested by the figure, the field drops sharply to zero at
the edges of the magnet. The coil moves to the right at a
constant velocity of 3.40 cm/s.
N-turn
coil
B into the screen
What is the current i, through the wire coil before the coil
reaches the right edge of the field? Define counterclockwise
ij =
A
current as positive and clockwise current as negative.
What is the current i, through the wire coil while the coil is
leaving the field?
i2 =
What is the current
through the wire coil after the coil
leaves the field?
i3 =
What is the total charge magnitude JAQ| that flows past a
given point in the coil as it leaves the field?
JAQ|=
Question Source: Freedman College Physics 3e Pul
Transcribed Image Text:O Resources O Hint Check A square, 47.0-turn coil that is 12.0 cm on a side with a resistance of 0.7202 is placed between the poles of a large electromagnet. The electromagnet produces a constant, uniform magnetic field of 0.500 T directed into the screen. As suggested by the figure, the field drops sharply to zero at the edges of the magnet. The coil moves to the right at a constant velocity of 3.40 cm/s. N-turn coil B into the screen What is the current i, through the wire coil before the coil reaches the right edge of the field? Define counterclockwise ij = A current as positive and clockwise current as negative. What is the current i, through the wire coil while the coil is leaving the field? i2 = What is the current through the wire coil after the coil leaves the field? i3 = What is the total charge magnitude JAQ| that flows past a given point in the coil as it leaves the field? JAQ|= Question Source: Freedman College Physics 3e Pul
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