1. An 8.0-nF capacitor with an initial charge of 10 mC is discharged through a 5-k2 resistor. (a) Calculate the current in the resistor 2 jus after the resistor is connected across the terminals of the capacitor. (b) What charge remains across the capacitor after 6 µis? (c) What is the maximum current across the resistor?
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- A 2.00-nF capacitor with an initial charge of 4.44 µC is discharged through a 1.90-kN resistor. dQ > 0.) dt (a) Calculate the current in the resistor 9.00 µs after the resistor is connected across the terminals of the capacitor. (Let the positive direction of the current be define such that (b) What charge remains on the capacitor after 8.00 µs? µC (c) What is the (magnitude of the) maximum current in the resistor? AAn 7. Suppose the initial charge on the capacitor in Q.6 is 6 mC. What is the total energy stored in the circuit initially? What is the total energy at later time?A 5000μF capacitor is charged up until the p.d. across its plates is 6.0V. It is then allowed to discharge through a 2000kΩ resistor. Calculate the charge on the capacitor after 300 seconds.
- Please answer carefully.A 2.00-nF capacitor with an initial charge of 5.30 μC is discharged through a 1.19-kn resistor. (a) Calculate the magnitude of the current in the resistor 9.00 us after the resistor is connected across the terminals of the capacitor. 50.74 mA (b) What charge remains on the capacitor after 8.00 µs? 1.8e-7 X Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. μC (c) What is the maximum current in the resistor? 2.2269 A Need Help? Read It Watch Ity courses / PHYS1100 / Homework No.2 / Homework No.2 Calculate the diameter of a 8.4-cm length of tungsten filament in a small lightbulb if its resistance is 92 Q. If 18mA current flows through the filament, find the potential difference across the source. (a) the diameter of the wire (in m) = (b) Potential difference across the source in V = Next pa r 2 Answer-
- A 2.00-nF capacitor with an initial charge of 5.14 μC is discharged through a 1.32-k resistor. (a) Calculate the magnitude of the current in the resistor 9.00 us after the resistor is connected across the terminals of the capacitor. mA (b) What charge remains on the capacitor after 8.00 µs? μc (c) What is the maximum current in the resistor? AA 12-V battery, a 4.5-Ω resistor, and a 2.3-F capacitor are connected in series with a switch. The capacitor is initially uncharged. What will be the charge (in C) on the capacitor 10 seconds after the switch is closed? I answered 8.39 but it was wrong.A 2.00-nF capacitor with an initial charge of 4.28 µC is discharged through a 2.72-kΩ resistor. (a) Calculate the current in the resistor 9.00 µs after the resistor is connected across the terminals of the capacitor. (Let the positive direction of the current be define such that dQ/dt>0.) mA, (b) What charge remains on the capacitor after 8.00 µs? uc, (c) What is the (magnitude of the) maximum current in the resistor? A.
- Part A: A resistor has a current of 50 mA and an electrical resistance of 5 k ohms. What is the voltage drop across the resistor? Part B: A capacitor with a capacitance of 14 F has a charge of 15 C stored on it. What is the voltage change across the capacitor?A 10 μF capacitor with an initial energy of 0.1 J is discharged through a 7.5 MΩ resistor. What is the initial charge on the capacitor? The charge, Q0 = Units . What is the current through the resistor when the discharge starts? The current, I0 = Units . Determine the potential difference across the capacitor and the rate at which the thermal energy is dissipating in the resistance 0.9 min after the discharge starts. The potential difference across C, VC = Units . The power dissipated in R, P = Units .A 2.00-nF capacitor with an initial charge of 5.81 µC is discharged through a 1.56-kΩ resistor. (a) Calculate the current in the resistor 9.00 µs after the resistor is connected across the terminals of the capacitor. (Let the positive direction of the current be define such that dQ dt > 0.) mA (b) What charge remains on the capacitor after 8.00 µs? µC (c) What is the (magnitude of the) maximum current in the resistor? A