College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- A 2.00-nF capacitor with an initial charge of 5.69 μC is discharged through a 1.07-k 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. 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? > 0.)arrow_forwardA 2.00-nF capacitor with an initial charge of 5.99 µC is discharged through a 2.42-k 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 dQ such that dt > 0.) 192.757 X This is the correct magnitude of the current mA (b) What charge remains on the capacitor after 8.00 µs? 9.329e-7 X What is the equation describing the time dependence of the charge on a capacitor that is being discharged in an RC circuit? µC (c) What is the (magnitude of the) maximum current in the resistor? 1.237 Aarrow_forwardA 2.00 µF and a 5.50 µF capacitor can be connected in series or parallel, as can a 40.0 kN and a 100 kN resistor. Calculate the four RC time constants (in s) possible from connecting the resulting capacitance and resistance in series. resistors and capacitors in series 0.24 X S resistors in series, capacitors in parallel S resistors in parallel, capacitors in series capacitors and resistors in parallelarrow_forward
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