Three capacitors are connected in series to a 120 V DC power supply. The capacitances of the capacitors are 2 µF, 3 µF and 5 µF, respectively. Which of the capacitors hold the most charge? The 2 µF capacitor The 3 µF capacitor The 5 µF capacitor All the same
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- The circuit in the figure below contains a 90.0 V battery and four capacitors. In the top parallel branch, there are two capacitors, one with a capacitance of C, = 6.00 uf and another with a capacitance of 6.00 uF. In the bottom parallel branch, there are two more capacitors, one with a capacitance of 2.00 uF and another with a capacitance of C, = 8.00 pF. 6.00 uF 2.00 uF 90.0 V (a) What is the equivalent capacitance (in uF) of the entire circuit? (b) What is the charge (in uC) on each capacitor? on C, on C2 on the 6.00 uF capacitor pc on the 2.00 uF capacitor (c) What is the potential difference (in V) across each capacitor? across C, across C, V across the 6.00 µF capacitor across the 2.00 pF capacitorConsider two capacitors, one with capacitance 13.9 μF and the other of unknown capacitance. The two capacitors are connected in series with a voltage difference of 317 V applied across the capacitors. As a result, the unknown capacitor has a charge of 1.05 mC. Find its capacitance.Two identical capacitors are of 1,474 x 10-6 F are connected in series. They store a total of 66.2 x 10-3 J of energy when connected to a source potential when fully charged. These same two capacitors are discharged, then reconnected in parallel in the circuit with the same source potential. What total energy is stored by the system?
- A parallel combination of a 1.31 µF capacitor and a 2.73 pF capacitor is connected in series to a 4.53 µF capacitor. This three-capacitor combination is connected to a 19.5 V battery. Determine the charge on each capacitor. charge of 4.53 uF capacitor: 0.00003895 C charge of 1.31 µF capacitor: 0.0000096 charge of 2.73 uF capacitor: 0.0000242 CA defibrillator containing a 30.2 μF capacitor is used to shock the heart of a patient by holding it to the patient's chest. Just prior to discharging, the capacitor has a voltage of 20.5 kV across its plates. How much energy is released into the patient?If it is required to store 32.9 μC of electric charge in a capacitor in an electric circuit, what should the capacitance of the capacitor be if a voltage supply can apply 4.0 V of voltage to the capacitor? Report the number in the unit of μF
- A combination of series and parallel connections of capacitors is shown in the figure. Express the total capacitance of this combination in terms of the capacitances C1 through C6.Considering the circuit shown, if the emf of the battery is 6 V, the charge on the 4-pF capacitor is: 4 HF 2 F 3HF Select one: 8 µC 4 pC 12 μC 24 HC