Two very large metal parallel plates that are 25 cm apart, oriented perpendicular to a sheet of paper, are connected across the terminals of a 50.0 V battery. Part A Draw to scale the lines where the equipotential surfaces due to these plates intersect the paper. Limit your drawing to the region between the plates, avoiding their edges, and draw the lines for surfaces that are 10.0 V apart, starting at the low-potential plate.
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data:image/s3,"s3://crabby-images/23993/23993b9869fd9917442137128e4cd65c11f689c9" alt="Part B
These surfaces are separated equally in potential. Are they also separated equally in distance?
Yes, they are separated by 1 cm.
Yes, they are separated by 5 cm.
Yes, they are separated by 10 cm.
O No, they are not separated equally in distance.
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data:image/s3,"s3://crabby-images/ca42a/ca42aafc899c9983cc3f9fd2be318619b8c039da" alt="Two very large metal parallel plates that are 25 cm apart,
oriented perpendicular to a sheet of paper, are connected
across the terminals of a 50.0 V battery.
Part A
Draw to scale the lines where the equipotential surfaces due to these plates intersect the paper. Limit your drawing to the region between the plates,
avoiding their edges, and draw the lines for surfaces that are 10.0 V apart, starting at the low-potential plate.
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y, cm
25
20
15
10
5
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Equipotential surface has constant potential.
The direction of electric field is perpendicular to the equipotential surface.
The direction of electric field is from higher potential surface to lower potential surface.
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