1. In a parallel plate system, the distance between the plates A and B is 0.03 m. A difference in potential of 20V is applied across the plates so that plate A is at the higher potential. (a) What is the magnitude of the electric field between the plates (b) If a negative charge (q=-1.6x10-12 C) travels from plate B to plate A, what is the change in potential energy

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Chapter16: Electrical Energy And Capacitance
Section: Chapter Questions
Problem 58AP: When a potential difference of 150. V is applied to the plates of an air-filled parallel-plate...
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1. In a parallel plate system, the distance between the plates A and B is 0.03 m. A difference in potential of 20V is applied across the plates so that plate A is at the higher potential.
(a) What is the magnitude of the electric field between the plates
(b) If a negative charge (q= -1.6x10-12 C) travels from plate B to plate A, what is the change in potential energy 

1. In a parallel plate system, the distance between the plates A and B is 0.03 m. A difference in potential of 20V is
applied across the plates so that plate A is at the higher potential.
(a) What is the magnitude of the electric field between the plates
(b) If a negative charge (q=-1.6x10-12 C) travels from plate B to plate A, what is the change in potential energy
Transcribed Image Text:1. In a parallel plate system, the distance between the plates A and B is 0.03 m. A difference in potential of 20V is applied across the plates so that plate A is at the higher potential. (a) What is the magnitude of the electric field between the plates (b) If a negative charge (q=-1.6x10-12 C) travels from plate B to plate A, what is the change in potential energy
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