The figure below shows the equipotential surfaces of a parallel plate capacitor. If a positive charge, q = +2 C, is moved between two equipotential surfaces (green surfaces: A and B) of an oppositely charged parallel plates (also known as parallel plate capacitor) as shown in the figure below, what is the change in the electric potential (AV), when the charge is moved from surface A to B? A. +3 V B. +9 V C. OV 2 cm D. - 3 V E. -9 V B オオ ov qV ĞV 3V

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The figure below shows the equipotential surfaces of a parallel plate
capacitor. If a positive charge, q = +2 C, is moved between two
equipotential surfaces (green surfaces: A and B) of an oppositely
charged parallel plates (also known as parallel plate capacitor) as
shown in the figure below, what is the change in the electric
potential (AV), when the charge is moved from surface A to B?
A. +3 V
B. +9 V
C. OV
2 cm
D. - 3 V
E. -9 V
B
ov
qV ĞV 3V
Transcribed Image Text:The figure below shows the equipotential surfaces of a parallel plate capacitor. If a positive charge, q = +2 C, is moved between two equipotential surfaces (green surfaces: A and B) of an oppositely charged parallel plates (also known as parallel plate capacitor) as shown in the figure below, what is the change in the electric potential (AV), when the charge is moved from surface A to B? A. +3 V B. +9 V C. OV 2 cm D. - 3 V E. -9 V B ov qV ĞV 3V
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