A 9.00-V potential difference is applied across a 12.0-µF parallel- plate capacitor whose plates are effectively separated by a vacuum. If the volume between the plates is 50.0 mm³, the electric field magnitude between the plates is most nearly A. 46.9 MV/m. B. 0.578 MV/m. C. 818 kV/m. D. 263 kV/m. E. 11.9 V/m.
A 9.00-V potential difference is applied across a 12.0-µF parallel- plate capacitor whose plates are effectively separated by a vacuum. If the volume between the plates is 50.0 mm³, the electric field magnitude between the plates is most nearly A. 46.9 MV/m. B. 0.578 MV/m. C. 818 kV/m. D. 263 kV/m. E. 11.9 V/m.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
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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![A 9.00-V potential difference is applied across a 12.0-µF parallel-
plate capacitor whose plates are effectively separated by a vacuum. If the
volume between the plates is 50.0 mm³, the electric field magnitude
between the plates is most nearly
A. 46.9 MV/m.
B. 0.578 MV/m.
C. 818 kV/m.
D. 263 kV/m.
E. 11.9 V/m.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F946665d1-3c7b-4134-8d12-8846763029d1%2F29cf034e-b3b8-4ad5-b355-6f50cd4774d4%2Fbbnd75_processed.png&w=3840&q=75)
Transcribed Image Text:A 9.00-V potential difference is applied across a 12.0-µF parallel-
plate capacitor whose plates are effectively separated by a vacuum. If the
volume between the plates is 50.0 mm³, the electric field magnitude
between the plates is most nearly
A. 46.9 MV/m.
B. 0.578 MV/m.
C. 818 kV/m.
D. 263 kV/m.
E. 11.9 V/m.
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