Problem 8: Suppose you have the 9.75 µF capacitor of a heart defibrillator at a potential difference of 14.5 x 10 ndomized Variables = 9.75 µF = 14.5 x 104 V Part (a) What is the energy stored in it in J? U= Part (b) Find the amount of stored charge in mC. Q =
Problem 8: Suppose you have the 9.75 µF capacitor of a heart defibrillator at a potential difference of 14.5 x 10 ndomized Variables = 9.75 µF = 14.5 x 104 V Part (a) What is the energy stored in it in J? U= Part (b) Find the amount of stored charge in mC. Q =
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter27: Capacitors And Batteries
Section: Chapter Questions
Problem 8PQ
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![Problem 8: Suppose you have the 9.75 µF capacitor of a heart defibrillator at a potential difference of 14.5 x 104 V.
Randomized Variables
C = 9.75 µF
V = 14.5 x 104 v
Part (a) What is the energy stored in it in J?
U=
Part (b) Find the amount of stored charge in mC.
Q =](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8dbff956-e43c-48ff-b648-b98fd3ab1747%2Fb02146b0-604a-4f40-85c7-a43dd3918d37%2Frc22co_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 8: Suppose you have the 9.75 µF capacitor of a heart defibrillator at a potential difference of 14.5 x 104 V.
Randomized Variables
C = 9.75 µF
V = 14.5 x 104 v
Part (a) What is the energy stored in it in J?
U=
Part (b) Find the amount of stored charge in mC.
Q =
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