In a series RC circuit, R = 50 ohms and C = 100 nF. The power source Vs = 5 v. This circuit is connected in series to an unknown load called Z. What is the power on this unknown load?
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In a series RC circuit, R = 50 ohms and C = 100 nF. The power source Vs = 5 v. This circuit is connected in series to an unknown load called Z. What is the power on this unknown load?
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- An RC circuit with a time constant of 5e-3 seconds is being charged. How long does it take for the capacitor to reach half of its maximum charge? 2.38 s 8.23e-4 s None of the above 138.63 s 3.47e-3 sThe circuit shown in the diagram contains capacitors connected in series and in parallel. The 65 µF capacitor is moved to be in series with the 55 μF capacitor. By how much does the total capacitance of the circuit change? ННЕ 75 μF 65 μF 55 μFThe V vs t graph shown below is for the capacitor of an RC circuit. V (V) 16 12. 8. 4. 15. Second graph The Q vs t graph shown below is for the capacitor of an RC circuit. Q (C) 20 10. 9 18 27 36 45 54 63 72 81 90 5. 0.5 1. 1.5 2. t(s) 2.5 t(s) Determine the time constant of the RC circuit. T = 5.92136 s X If C = 10 F, determine R. R = 52 In this case, was the capacitor charging or discharging? ---Select--- Determine the time constant of the RC circuit. T = If C = 4 F, determine R. R = | 12 In this case, was the capacitor charging or discharging? ---Select---
- A 71 Ohm resistor and 1.047 F capacitor are connected in series to a 11 V DC voltage source (RC Circuit). What is the half-life that characterizes this RC Circuit?The flash unit in a camera uses a special circuit to "step up" the 3.0 V from the batteries to 360 V , which charges a capacitor. The capacitor is then discharged through a flashlamp. The discharge takes 10 μs , and the average power dissipated in the flashlamp is 1.0×105 W . What is the capacitance of the capacitor?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, = 4.00 µF and another with a capacitance of 6.00 µF. In the bottom parallel branch, there are two more capacitors, one with a capacitance of 2.00 µF and another with a capacitance of C, = 7.00 µF. 6.00 µF 2.00 µF C, 90.0 V (a) What is the equivalent capacitance (in µF) the entire circuit? (b) What is the charge (in µC) on each capacitor? on C, on C2 on the 6.00 µF capacitor on the 2.00 µF capacitor (c) What is the potential difference (in V) across each capacitor? across C, V across C2 V across the 6.00 MF сараcitor V across the 2.00 µF capacitor V