Problem 3.- (10 pts) An air-filled parallel-plate capacitor has capacitance Co. If two identically sized dielectric labs of dielectric constants K1 and K2 are inserted as shown below, what is the new capacitance? Remember C = Ke,A/d; This can be written as C = €A/d where e = Ke,; Capacitor with different di- electric constants

Delmar's Standard Textbook Of Electricity
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Chapter19: Capacitors
Section: Chapter Questions
Problem 3RQ: A capacitor uses air as a dielectric and has a capacitance of 3 F. A dielectric material is inserted...
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Problem 3.- (10 pts) An air-filled parallel-plate capacitor has capacitance Co. If two identically sized dielectric
slabs of dielectric constants K1 and K2 are inserted as shown below, what is the new capacitance? Remember
C = Ke, A/d; This can be written as C = eA/d where e = Ke,;
Capacitor with different di-
electric constants
K2
Problem 4: (5 pts) (a) Six capacitors of 4.8µ F are connected in parallel. What is the equivalent capacitance?
(b) What is their equivalent capacitance if connected in series?
Problem 5: (5 pts) In the Capacitor network shown beside, if the
battery provides 21.0 V through the whole network, a).- Calculate the
voltage through each capacitor and b).- the charge in each Capaci-
C =
C2 =
3.00 μF 4.00 μF
tor.
C3 =
2.00 µF
V=
21.0 V
Transcribed Image Text:Problem 3.- (10 pts) An air-filled parallel-plate capacitor has capacitance Co. If two identically sized dielectric slabs of dielectric constants K1 and K2 are inserted as shown below, what is the new capacitance? Remember C = Ke, A/d; This can be written as C = eA/d where e = Ke,; Capacitor with different di- electric constants K2 Problem 4: (5 pts) (a) Six capacitors of 4.8µ F are connected in parallel. What is the equivalent capacitance? (b) What is their equivalent capacitance if connected in series? Problem 5: (5 pts) In the Capacitor network shown beside, if the battery provides 21.0 V through the whole network, a).- Calculate the voltage through each capacitor and b).- the charge in each Capaci- C = C2 = 3.00 μF 4.00 μF tor. C3 = 2.00 µF V= 21.0 V
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