A metal ring 4.10 cm in diameter is placed between the north and south poles of large magnets with the plane of its area perpendicular to the magnetic field. These magnets produce an initial uniform field of 1.12. T between them but are gradually pulled apart, causing this field to remain uniform but decrease steadily at 0.230 T/s. Part A What is the magnitude of the electric field induced in the ring? VAX Submit Part B Request Answer O O Clockwise Submit In which direction (clockwise or counterclockwise) does the current flow as viewed by someone on the south pole of the magnet? Counterclockwise ? Request Answer V/m

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A metal ring 4.10 cm in diameter is placed between
the north and south poles of large magnets with the
plane of its area perpendicular to the magnetic field.
These magnets produce an initial uniform field of 1.12
T between them but are gradually pulled apart,
causing this field to remain uniform but decrease
steadily at 0.230 T/s.
Part A
What is the magnitude of the electric field induced in the ring?
195] ΑΣΦΑΤΑ
E-
Submit
Part B
Request Answer
O Counterclockwise
Clockwise
Submit
In which direction (clockwise or counterclockwise) does the current flow as viewed by someone on the south pole of the magnet?
?
Request Answer
V/m
Samens
Transcribed Image Text:A metal ring 4.10 cm in diameter is placed between the north and south poles of large magnets with the plane of its area perpendicular to the magnetic field. These magnets produce an initial uniform field of 1.12 T between them but are gradually pulled apart, causing this field to remain uniform but decrease steadily at 0.230 T/s. Part A What is the magnitude of the electric field induced in the ring? 195] ΑΣΦΑΤΑ E- Submit Part B Request Answer O Counterclockwise Clockwise Submit In which direction (clockwise or counterclockwise) does the current flow as viewed by someone on the south pole of the magnet? ? Request Answer V/m Samens
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