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- Equation 1: 1/Ce = 1/C1 + 1/C2 + . . . C1 = 13.8 nF C2 = 12.7 nF C3 = 3.38 nF Using Equation 1, calculate the equivalent capacitanceFind the effective capacitance between A and B. a) 1.68 μF b) 13.8 μF c) 2.33 μF d) none of theseCompute the individual values and the total values of the capacitance, charge, and voltage of the circuit in Series and Parallel Connection. Draw the circuit.C1 = 3.5 x 10−12 FC2 = 4.7 x 10−12 FV = 1600 V
- Find the total capacitance for each connection shown. C1 = 10.0 F, C2 = 5.0 F, and C3 = 4.0 F. C1 C2 C3 connected in a series C1 C2 C3 connected in parallel C1 and C2 in series and in parallel to C331 What is the equivalent capacitance of the system, in µF, according to the circuit in the figure? a) 5 B) 2.9 NS) 4 D) 20.4 TO) 25C1 = 13.4nF C2 = 12.3 nF C3 = 3.25 nF Using the Fluke meter, measure the equivalent capacitance Ce= 29.1 nF
- In the figure below, find the equivalent capacitance of the combination. Assume that C1 = 13.0 µF, C2 = 6.00 µF, and C3 = 3.00 µF. _________________________µFWhat amount of voltage is present across capacitor #2 (C2)? Select one: a. 6.36 volts b. 4.8 volts c. 5.65 volts d. 7.2 voltsR1=2.8 ohm, R2=7.8 ohm, R3=1.0 ohm, V1=8.0V. Determine the voltage of the battery.
- In the figure find the equivalent capacitance of the combination. Assume that C1 = 11.1 µF, C2 = 5.88 µF, and C3 = 4.15 µF.In the figure below, V = 10 V, C1 = 11 μF and C2 = C3 = 18 μF. Switch S is first thrown to the left side until C1 reaches equilibrium. Then the switch is thrown to the right. When equilibrium is again reached, how much charge is on capacitor 1?_________________μC2. Two capacitors, 4.7 microF and 5.6 microF, are conneted in parallel. If a 9 volt battery is to be placed across the parallel connection, what is the total charge of the circuit? Select one: a. 95.04 microCoulombs b. 9.27 microCoulombs c. 23.04 microCoulombs d. 27.03 microCoulombs