5. A 6.00 uf capacitor with an initial charge of 1200 µC is discharged through a 4.0 M2 resistor. a) Calculate the magnitude of the current in the resistor 12.0 s after the resistor is connected across the terminals of the capacitor. VC = (1- e24) %3D 4E6 1.2NO -10 b) What is the charge that remains on the capacitor after 12.0s? 2=Q (1-e-Tha 1/241 T-24 See 2=4.7 x10- %3D c) How much energy has the capacitor dissipated through the resistor in those 12 s? (Hint: energy is the integral of the power with respect to time.) 12 8.31 xio4 12
5. A 6.00 uf capacitor with an initial charge of 1200 µC is discharged through a 4.0 M2 resistor. a) Calculate the magnitude of the current in the resistor 12.0 s after the resistor is connected across the terminals of the capacitor. VC = (1- e24) %3D 4E6 1.2NO -10 b) What is the charge that remains on the capacitor after 12.0s? 2=Q (1-e-Tha 1/241 T-24 See 2=4.7 x10- %3D c) How much energy has the capacitor dissipated through the resistor in those 12 s? (Hint: energy is the integral of the power with respect to time.) 12 8.31 xio4 12
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 55P
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