A seven-turn square-shape coil of sides 6.0 cm is placed in an external magnetic field of strength 1.2 (T). The magnetic field direction is perpendicular to the surface of the coil. The coil is pulled out of the magnetic field in 0.1 (s). A) Calculate the average induced emf in the coil. B) If you look from above , what is the direction of the induced magnetic field in the coil, into the page or out of the page? c) What is the direction of the induced current in the coil, cw, or ccw?
A seven-turn square-shape coil of sides 6.0 cm is placed in an external magnetic field of strength 1.2 (T). The magnetic field direction is perpendicular to the surface of the coil. The coil is pulled out of the magnetic field in 0.1 (s). A) Calculate the average induced emf in the coil. B) If you look from above , what is the direction of the induced magnetic field in the coil, into the page or out of the page? c) What is the direction of the induced current in the coil, cw, or ccw?
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Question
A seven-turn square-shape coil of sides 6.0 cm is placed in an external
magnetic field of strength 1.2 (T). The magnetic field direction is perpendicular to the surface of
the coil. The coil is pulled out of the magnetic field in 0.1 (s).
A) Calculate the average induced emf in the coil.
B) If you look from above , what is the direction of the induced magnetic field in the coil,
into the page or out of the page?
c) What is the direction of the induced current in the coil, cw, or ccw?
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VIEWStep 2: Find the initial and final magnetic flux passing through the coil:
VIEWStep 3: Calculate the average emf induced in the coil:
VIEWStep 4: Determine the direction of the induced magnetic field in the coil:
VIEWStep 5: Determine the direction of the induced current in the coil:
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