A long, straight wire carrying a current of 3.00 A moves with a constant speed v to the right. A 5-turn circular coil of diameter 1.25 cm, and resistance of 3.25 μ2, lies stationary in the same plane as the straight wire. At some initial time, the wire is at a distance d = 16.5 cm from the center of the coil. 4.90 s later, the wire is at a distance 2d from the center of the coil. What is the magnitude and direction of the average induced current in the coil? Note that while the magnetic field varies over the diameter of the coil, it is very small and we will disregard this variation. mA magnitude direction -Select--- O Initial situation. O 2d Final situation.

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A long, straight wire carrying a current of 3.00 A moves with a constant speed v to the right. A 5-turn circular coil of diameter 1.25 cm, and resistance of
3.25 μ2, lies stationary in the same plane as the straight wire. At some initial time, the wire is at a distance d = 16.5 cm from the center of the coil. 4.90 s
later, the wire is at a distance 2d from the center of the coil. What is the magnitude and direction of the average induced current in the coil? Note that while the
magnetic field varies over the diameter of the coil, it is very small and we will disregard this variation.
mA
magnitude
direction
-Select---
O
Initial situation
O
2d
Final situation
Transcribed Image Text:A long, straight wire carrying a current of 3.00 A moves with a constant speed v to the right. A 5-turn circular coil of diameter 1.25 cm, and resistance of 3.25 μ2, lies stationary in the same plane as the straight wire. At some initial time, the wire is at a distance d = 16.5 cm from the center of the coil. 4.90 s later, the wire is at a distance 2d from the center of the coil. What is the magnitude and direction of the average induced current in the coil? Note that while the magnetic field varies over the diameter of the coil, it is very small and we will disregard this variation. mA magnitude direction -Select--- O Initial situation O 2d Final situation
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