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An infinite straight wire carries current I, = 4 A in the positive y- direction as shown. At time t = 0, a conducting wire,

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An infinite straight wire carries current I, = 4 A in the positive y- direction as shown. At time t = 0, a conducting wire, aligned with the y- direction is located a distance d = 55 cm from the y-axis and moves with velocity v = 12 cm/s in the negaitve x-direction as shown. The wire has length W = 26 cm. I1 W a 1) What is =(0), the emf induced in the moving wire at t = 0? Define the emf to be positive if the potential at point a is higher than that at point b. 4.538e-8 V Submit You currently have 1 submissions for this question. Only 6 submission are allowed. You can make 5 more submissions for this question. 2) What is (t, ), the emf induced in the moving wire at t = t, = 3.1 s? Define the emf to be positive if the potential at point a is higher than that at point b. 1.402e-7 V Submit You currently have 2 submissions for this question. Only 6 submission are allowed. You can make 4 more submissions for this question. 3) The wire is now replaced by a conducting rectangular loop as shown. The loop has length L = 59 cm and width W = 26 cm. At time t = 0, the loop moves with velocity v = 12 cm/s with its left end located a distance d = 55 cm from the y-axis. The resistance of the loop is R = 1.1 0. What is i(0), the induced current in the loop at time t = 0? Define the current to be positive if it flows in the counter-clockwise direction. I1 W d 2.107e-7 A Submit You currently have 3 submissions for this question. Only 6 submission are allowed. You can make 3 more submissions for this question. 4) Suppose the loop now moves in the positive y-direction as shown. What is the direction of the induced current now? AV I - d The current flows counterclockwise The current flows clockwise There is no induced current now Submit You currently have 1 submissions for this question. Only 6 submission are allowed. You can make 5 more submissions for this question. ") Suppose now that the loop is rotated 90" and moves with velocity v = 12 cm/s in the positive x-direction as shown. What is ly, the current in the infinite wire, if the induced current in the loop at the instant shown (d = 55 cm) is the same as it was in the third part of this problem (i.e., when the left end of loop was at a distance d = 55 cm from the y- I2 axis)? W d

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