6. The parallel plates of a 10 μF vacuum filled capacitor are separated by 0.142 mm. A potential difference of 35 V is placed across the capacitor with a battery. a. What is the energy stored in the capacitor? b. If Teflon with a dielectric constant of 2.1 is inserted between the plates, while it is still connected to the battery, what is the new energy stored in the capacitor?

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
Publisher:OpenStax
Chapter8: Capacitance
Section: Chapter Questions
Problem 55P: A parallel-plate capacitor with only air between its plates is charged by connecting the capacitor...
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6. The parallel plates of a 10 μF vacuum filled capacitor are separated by 0.142 mm. A
potential difference of 35 V is placed across the capacitor with a battery.
a. What is the energy stored in the capacitor?
b. If Teflon with a dielectric constant of 2.1 is inserted between the plates, while it is
still connected to the battery, what is the new energy stored in the capacitor?
Transcribed Image Text:6. The parallel plates of a 10 μF vacuum filled capacitor are separated by 0.142 mm. A potential difference of 35 V is placed across the capacitor with a battery. a. What is the energy stored in the capacitor? b. If Teflon with a dielectric constant of 2.1 is inserted between the plates, while it is still connected to the battery, what is the new energy stored in the capacitor?
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