The values of the capacitors in the electronic circuit below are given in mF (or 103³F) and resistors are in ohms (N). The circuit is connected to the 12 V battery. a) Reduce the circuit using the concept of the equivalent resistance Reg- b) Find the power used by the battery. c) Find voltage drop Va on the resistor R=6 0. d) Find the equivalent capacitance of the 4 capacitors e) Find the charge on capacitor C=10 mF R=60 3mF 120 60 C=10 mF 30 60 2mF 12 V 5mF

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The values of the capacitors in the electronic circuit below are given in mF (or 10*F) and resistors are in
ohms (0). The circuit is connected to the 12 V battery.
a) Reduce the circuit using the concept of the equivalent resistance Reg.
b) Find the power used by the battery.
c) Find voltage drop Vạ on the resistor R=6 0.
d) Find the equivalent capacitance of the 4 capacitors
e) Find the charge on capacitor C=10 mF
R=60
3mF
5mf
60
120
C=10
mF
30
60
2mF
12 V
Transcribed Image Text:The values of the capacitors in the electronic circuit below are given in mF (or 10*F) and resistors are in ohms (0). The circuit is connected to the 12 V battery. a) Reduce the circuit using the concept of the equivalent resistance Reg. b) Find the power used by the battery. c) Find voltage drop Vạ on the resistor R=6 0. d) Find the equivalent capacitance of the 4 capacitors e) Find the charge on capacitor C=10 mF R=60 3mF 5mf 60 120 C=10 mF 30 60 2mF 12 V
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