Question: V PartA A circular loop of wire with radius 0.0200 In and resistance 0.400 9 is in a region of spatially uniform magnetic field, as

 V PartA A circular loop of wire with radius 0.0200 Inand resistance 0.400 9 is in a region of spatially uniform magnetic

field, as shown in (59%). The magnetic field What is the currentin the loop (magnitude) at the instant when B = 1.31 T

V PartA A circular loop of wire with radius 0.0200 In and resistance 0.400 9 is in a region of spatially uniform magnetic field, as shown in (59%). The magnetic field What is the current in the loop (magnitude) at the instant when B = 1.31 T ? is directed into the plane of the figure. At t = 0, B = 0. The magnetic field then begins increasing, with B(t) =( 0.360 T/s3 ) t3. For related problem-solving tips and strategies, you may E l-lA '5 0 C) 7 want to view a Video Tutor Solution of Express your answer with the appropriate units. Lenz's law and the direction of induced current. I = Value Umts Figure 1 of 1 mm X X X X X > B v Part B X X What is the direction of the current in the loop? X X 0 counterclockwise O clockwise X X Must Answer V Part A A circular loop of wire with radius 0.0410 m and resistance 0.159 S is in a region of spatially uniform magnetic field, as shown in the following figure Is the induced current in the loop clockwise or counterclockwise? (Figure 1). The magnetic field is directed out of the plane of the figure. The magnetic field has an initial value of 8.41 T and is decreasing at a rate of -0.667 T/s. O clockwise O counterclockwise Submit Request Answer Figure 1 of 1 Part B B What is the rate at which electrical energy is being dissipated by the resistance of the loop? Express your answer with the appropriate units. ? P = Value Units Submit Request

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