Consider the following configuration of two charged parallel plates. How will the electric potential (V) at points A and B compare for this system of parallel plates (source of E-field)? Consider the negative charge as the subject ("feeling") charge. +TA B A. A = high potential and B = low potential B. A = low potential and B = high potential C. A = high potential and B = high potential D. A = low potential and B = low potential %3D + + + + +

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Consider the following configuration of two charged parallel
plates. How will the electric potential (V) at points A and B
compare for this system of parallel plates (source of E-field)?
Consider the negative charge as the subject ("feeling") charge.
A
В
A. A= high potential and B = low potential
B. A = low potential and B = high potential
C. A = high potential and B = high potential
D. A = low potential and B = low potential
%3D
%3D
Transcribed Image Text:Consider the following configuration of two charged parallel plates. How will the electric potential (V) at points A and B compare for this system of parallel plates (source of E-field)? Consider the negative charge as the subject ("feeling") charge. A В A. A= high potential and B = low potential B. A = low potential and B = high potential C. A = high potential and B = high potential D. A = low potential and B = low potential %3D %3D
Consider a positive charge between two charged parallel plates
as shown below. What will be the change in the potential energy
(AU) of this charge when it is moved from point B to point A?
A
В
A. Positive (potential energy increases)
B. Negative (potential energy decreases)
C. Zero (no change in potential energy)
+ + + +
Transcribed Image Text:Consider a positive charge between two charged parallel plates as shown below. What will be the change in the potential energy (AU) of this charge when it is moved from point B to point A? A В A. Positive (potential energy increases) B. Negative (potential energy decreases) C. Zero (no change in potential energy) + + + +
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