The loop shown in the figure moves away from a wire carrying a current I₁ = 10 A at a constant velocity u = 9 (m/s). If R = 10 and the direction of I2 is as defined in the figure, find the magnitude of I2 as a function of yo, the distance between the wire and the loop, and calculate I₂ for yo = 6 cm. Ignore the internal resistance of the loop. I₁ = 10 A Answer: 1₂ = A 20 cm H yo 10 cm R www R 1 12 u u

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The loop shown in the figure moves away from a wire carrying a current I₁ = 10 A at a constant velocity u = = ŷ9 (m/s). If R = 10 and the direction of I2 is
as defined in the figure, find the magnitude of I2 as a function of yo, the distance between the wire and the loop, and calculate I2 for yo = 6 cm. Ignore the
internal resistance of the loop.
I₁ = 10 A
Answer:
I₂ =
A
20 cm
yo
10 cm
R
www
R
12
u
Transcribed Image Text:The loop shown in the figure moves away from a wire carrying a current I₁ = 10 A at a constant velocity u = = ŷ9 (m/s). If R = 10 and the direction of I2 is as defined in the figure, find the magnitude of I2 as a function of yo, the distance between the wire and the loop, and calculate I2 for yo = 6 cm. Ignore the internal resistance of the loop. I₁ = 10 A Answer: I₂ = A 20 cm yo 10 cm R www R 12 u
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