Exercise 27: Four capacitors, of respective capacitances C,=10µF, C-20µF, Cy=20µF, and C=12µF, are connected to an ideal generator of electromotive force E=36V as shown in the adjacent figure. 1) Calculate the equivalent capacitance of the circuit 2) Calculate the charge and voltage of each capacitor in the circuit. A D 3) Determine the electric energy stored in the capacitor C4.

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter20: Capacitance In Ac Circuits
Section: Chapter Questions
Problem 5PP: Three capacitors having capacitance values of 20F,40F, and 50F are connected in parallel to a 60 -...
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Exercise 27:
Four capacitors, of respective capacitances C=10µF,
C-20µF, C3=20µF, and C=12µF, are connected to an
ideal generator of electromotive force E=36V as shown in
the adjacent figure.
1) Calculate the equivalent capacitance of the circuit
2) Calculate the charge and voltage of each capacitor in
B
the circuit.
A.
3) Determine the electric energy stored in the capacitor C4.
Transcribed Image Text:Exercise 27: Four capacitors, of respective capacitances C=10µF, C-20µF, C3=20µF, and C=12µF, are connected to an ideal generator of electromotive force E=36V as shown in the adjacent figure. 1) Calculate the equivalent capacitance of the circuit 2) Calculate the charge and voltage of each capacitor in B the circuit. A. 3) Determine the electric energy stored in the capacitor C4.
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