Problem 7: Acombination of series and parallel connections of capacitors is shown in the figure. The sizes of these capacitors are given by the follow data: C = 4.9 µF C2 = 3.1 µF C3 = 8.4 µF C4 = 1.1 µF Cs = 0.65 µF C6 = 16 µF C4 C3 Cs C6 Part (a) Express the total capacitance of this combination in terms of the capacitances C1 through C6. C= HOME C1 C2 C3 4 5 C4 C5 C6 1 2 3 d h + - END P Vol BACKSPACE DEL CLEAR m Part (b) Find the total capacitance of the combination in microfarads.
Problem 7: Acombination of series and parallel connections of capacitors is shown in the figure. The sizes of these capacitors are given by the follow data: C = 4.9 µF C2 = 3.1 µF C3 = 8.4 µF C4 = 1.1 µF Cs = 0.65 µF C6 = 16 µF C4 C3 Cs C6 Part (a) Express the total capacitance of this combination in terms of the capacitances C1 through C6. C= HOME C1 C2 C3 4 5 C4 C5 C6 1 2 3 d h + - END P Vol BACKSPACE DEL CLEAR m Part (b) Find the total capacitance of the combination in microfarads.
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Transcribed Image Text:Problem 7: A combination of series and parallel connections of capacitors is shown in the
figure. The sizes of these capacitors are given by the follow data:
C1 = 4.9 µF
C2 = 3.1 µF
C3 = 8.4 µF
C4 = 1.1 µF
C3 = 0.65 µF
C6 = 16 µF
C4
C3
Part (a) Express the total capacitance of this combination in terms of the capacitances C, through C6.
C =
a
e
7
8 9
HOME
C2
4
5
6
C4
C5
C6
1
2
3
d
h
+
END
P
vol BACKSPACE
CLEAR
m
t
Part (b) Find the total capacitance of the combination in microfarads.
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