An air-filled capacitor consists of two parallel plates, each with an area of 7.6 cm2, separated by a distance of 1.8 mm. A 20 V potential difference is applied to these plates. Calculate the electric field between the plates. A) 14.2 kV/m 11.1 kV/m B) 13.3 kV/m C) 10.5 kV/m D) 12.5 kV/m E)

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter16: Electrical Energy And Capacitance
Section: Chapter Questions
Problem 6CQ: An air-filled parallel-plate capacitor with capacitance C0 stores charge Q on plates separated by...
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An air-filled capacitor consists of two parallel plates,
each with an area of 7.6 cm2, separated by a distance of
18 mm. A 20 V potential difference is applied to these
plates. Calculate the electric field between the plates.
14.2 kV/m
A)
11.1 kV/m
B)
13.3 kV/m
C)
10.5 kV/m
D)
12.5 kV/m
E)
Transcribed Image Text:An air-filled capacitor consists of two parallel plates, each with an area of 7.6 cm2, separated by a distance of 18 mm. A 20 V potential difference is applied to these plates. Calculate the electric field between the plates. 14.2 kV/m A) 11.1 kV/m B) 13.3 kV/m C) 10.5 kV/m D) 12.5 kV/m E)
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