1- In the figure below, the battery has a potential difference of 10.0 V and the five capacitors each have a capacitance of 10.0F F. What is the charge on (a) capacitor1 and (b) capacitor2? CH 10 V Cs

Delmar's Standard Textbook Of Electricity
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ISBN:9781337900348
Author:Stephen L. Herman
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Chapter20: Capacitance In Ac Circuits
Section: Chapter Questions
Problem 2PA: You are working in an industrial plant. You have been instructed to double the capacitance connected...
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Homework-2
1- In the figure below, the battery has a potential difference of
10.0 V and the five capacitors each have a capacitance of
10.0F F. What is the charge on (a) capacitor1 and (b)
capacitor2?
I.
C3
C4
10 V
Cs
2-A parallel-plate air-filled capacitor has capacitance of 40 pF. (a)
If each of its plates has an area of 0.35 m", what is the
separation? (b) If the region between the plates is now filled
with material having K = 5.6, what is the capacitance?
3- Two parallel plates of area 100 cm? are given charges of equal
magnitudes 8.9 x 107 C but opposite signs. The electric field
within the dielectric material filling the space between the
plates is 1.4 x 10 V/m. (a) Calculate the dielectric constant of
the material. (b) Determine the magnitude of the charge
induced on each dielectric surface
4- For the circuit in the figure, R1= 10, R2= 6 Q, and R3= 12 Q.
Determine, (a) The Current 13, (b) The power for the source, (c)
the voltage V1.
R,
V = 12 V .
R,
R3
Transcribed Image Text:Homework-2 1- In the figure below, the battery has a potential difference of 10.0 V and the five capacitors each have a capacitance of 10.0F F. What is the charge on (a) capacitor1 and (b) capacitor2? I. C3 C4 10 V Cs 2-A parallel-plate air-filled capacitor has capacitance of 40 pF. (a) If each of its plates has an area of 0.35 m", what is the separation? (b) If the region between the plates is now filled with material having K = 5.6, what is the capacitance? 3- Two parallel plates of area 100 cm? are given charges of equal magnitudes 8.9 x 107 C but opposite signs. The electric field within the dielectric material filling the space between the plates is 1.4 x 10 V/m. (a) Calculate the dielectric constant of the material. (b) Determine the magnitude of the charge induced on each dielectric surface 4- For the circuit in the figure, R1= 10, R2= 6 Q, and R3= 12 Q. Determine, (a) The Current 13, (b) The power for the source, (c) the voltage V1. R, V = 12 V . R, R3
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