- - Problem 6: (8% of Assignment Value) Suppose you have a 9.00 V battery, a 2.8 µF capacitor, and a 7.45 µF capacitor. Part (a) ✓ Find the total charge stored in the system if the capacitors are connected to the battery in series in C. Q = 18.36 * 10-6 = 1.836 × 10-5 ✓ Correct! Part (b) Find the energy stored in the system if the capacitors are connected to the battery in series in J. Us = 0.8262 X Incorrect! Part (c) Find the charge if the capacitors are connected to the battery in parallel in C. Part (d) Find the energy stored if the capacitors are connected to the battery in parallel in J. Up=

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
Problem 43P
Question
-
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Problem 6: (8% of Assignment Value)
Suppose you have a 9.00 V battery, a 2.8 µF capacitor, and a 7.45 µF capacitor.
Part (a) ✓
Find the total charge stored in the system if the capacitors are connected to the battery in series in C.
Q = 18.36 * 10-6
= 1.836 × 10-5
✓ Correct!
Part (b)
Find the energy stored in the system if the capacitors are connected to the battery in series in J.
Us = 0.8262 X Incorrect!
Part (c)
Find the charge if the capacitors are connected to the battery in parallel in C.
Part (d)
Find the energy stored if the capacitors are connected to the battery in parallel in J.
Up=
Transcribed Image Text:- - Problem 6: (8% of Assignment Value) Suppose you have a 9.00 V battery, a 2.8 µF capacitor, and a 7.45 µF capacitor. Part (a) ✓ Find the total charge stored in the system if the capacitors are connected to the battery in series in C. Q = 18.36 * 10-6 = 1.836 × 10-5 ✓ Correct! Part (b) Find the energy stored in the system if the capacitors are connected to the battery in series in J. Us = 0.8262 X Incorrect! Part (c) Find the charge if the capacitors are connected to the battery in parallel in C. Part (d) Find the energy stored if the capacitors are connected to the battery in parallel in J. Up=
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