A resistor with 770.0 2 is connected to the plates of a charged capacitor with capacitance 4.14 µF. Just before the connection is made, the charge on the capacitor is 8.30 mC. Part A What is the energy initially stored in the capacitor? Express your answer in joules. ? Uo = J Submit Request Answer Part B What is the electrical power dissipated in the resistor just after the connection is made? Express your answer in watts.

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
Chapter21: Current And Direct Current Circuits
Section: Chapter Questions
Problem 4CQ: Referring to Figure CQ21.4, describe what happens to the light-bulb after the switch is closed....
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What is the electrical power dissipated in the resistor at the instant when the energy stored in the capacitor has decreased to half the value
calculated in part A?
Express your answer in watts.
ΑΣφ
?
P =
W
Transcribed Image Text:What is the electrical power dissipated in the resistor at the instant when the energy stored in the capacitor has decreased to half the value calculated in part A? Express your answer in watts. ΑΣφ ? P = W
A resistor with 770.0 N is connected to the plates of a
charged capacitor with capacitance 4.14 uF. Just before the
connection is made, the charge on the capacitor is 8.30 mC.
Part A
What is the energy initially stored in the capacitor?
Express your answer in joules.
?
Uo =
J
Submit
Request Answer
Part B
What is the electrical power dissipated in the resistor just after the connection is made?
Express your answer in watts.
?
Po =
W
Transcribed Image Text:A resistor with 770.0 N is connected to the plates of a charged capacitor with capacitance 4.14 uF. Just before the connection is made, the charge on the capacitor is 8.30 mC. Part A What is the energy initially stored in the capacitor? Express your answer in joules. ? Uo = J Submit Request Answer Part B What is the electrical power dissipated in the resistor just after the connection is made? Express your answer in watts. ? Po = W
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