Question: 7 0 . C You are working on an AC generator that consists of a coil rotating in a uniform magnetic field, and you discover

70. C You are working on an AC generator that consists of a coil rotating in a uniform magnetic field, and you discover that it is no longer creating the desired amount of power after being dropped on the floor. The coil has resistance \( R \) with \( N \) turns and cross-sectional area \( A \), and the magnitude of the magnetic field is \( B \). As you consider the cause of the power loss, your friend suggests that the coil may have been knocked slightly off-axis so that the axis of the coil is no longer pointing in the same direction as the static magnetic field, as desired. Could the coil being slightly off-axis explain the power loss? If no, what else might explain the loss of power? If yes, what can you do to compensate for the power loss due to the off-axis coil, assuming you are not able to adjust the coil or the magnetic field? Justify your answers.
7 0 . C You are working on an AC generator that

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