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7-We start off with a coil and a magnetic field (B= 0.52 T), starting orientation shown in the diagram below. By rotating the coil

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7-We start off with a coil and a magnetic field (B= 0.52 T), starting orientation shown in the diagram below. By rotating the coil (from the center) counterclockwise for 0.264 s, an emf of 3.1 V is produced. If the coil has 1,957 loops, and a loop area of 3.8x10^-3 m^2, what angle in degrees did the coil-have to be rotated for these 3.1 V to be induced? Note the final orientation angle is not to scale. The image is there to show how it's rotated. (10 points) la Starting orientation llow as a 100 B Coil nebob sortid dose leger to pitsib tney amperliw pon Final orientation otallengem to nodamiibor! W + B Coil w wore WALLE PASTIO pitenib insn (atrioq

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