Part of a single rectangular loop of wire with dimensions shown in Fig. 21-62 (see textbook, Giancoli 7th, page 620) is situated inside a region of uniform magnetic field of 0.454 T. The total resistance of the loop is 0.784 Ω. Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 8.57 m/s. Neglect gravity. Answer in units of N.
Part of a single rectangular loop of wire with dimensions shown in Fig. 21-62 (see textbook, Giancoli 7th, page 620) is situated inside a region of uniform magnetic field of 0.454 T. The total resistance of the loop is 0.784 Ω. Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 8.57 m/s. Neglect gravity. Answer in units of N.
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Part of a single rectangular loop of wire with dimensions shown in Fig. 21-62 (see textbook, Giancoli 7th, page 620) is situated inside a region of uniform magnetic field of 0.454 T. The total resistance of the loop is 0.784 Ω. Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 8.57 m/s. Neglect gravity. Answer in units of N.

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0.350 m x X
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0.750 m
FIGURE 21-62 Problem 14.
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