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- In a certain series RLC circuit, Irms = 9.00 A, ΔVrms = 155 V, and the current leads the voltage by 31.0°.When an AC voltage source, with a maximum voltage of 200 V, is connected across a 50 Ω resistor, the power dissipated in the resistor is... a. 200 W b. 400 W c. 566 W d. 800 WFor a series circuit, what is the terminal voltage of a battery or power supply equal to in terms of the potential differences or voltage drops across circuit components?
- To a series circuit, in which the capacitance is 15 x10 -6(farads) and the resistance is 1500 (ohms), a voltage of 210 V (volts). Evaluate (a) The capacitor charge if i(0) = 0.5.(b) Determine the charge q(t) and the current i(t) for t = 1.5 seconds.(c) Determine the load when t →∞In an a.c. series RLC circuit, the voltage across R and L is 20 V, voltage across L and C is 9 V and voltage across RLC is 15 V. What is the voltage across C ?Consider an R-L series circuit connected to constant voltage. Once the switch is closed across the resistor is a. zero b. greater than the battery's terminal voltage c. less than the battery's terminal voltage, but not zero d. equal to the battery's terminal voltage
- Find the charge on the capacitor in an LRC-series circuit at t = 0.05 s when L = 0.05 h, R = 3 Ω, C = 0.008 f, E(t) = 0 V, q(0) = 3 C, and i(0) = 0 A. (Round your answer to four decimal places.) CDetermine the first time at which the charge on the capacitor is equal to zero. (Round your answer to four decimal places.) sConsider a series RC circuit for which R = 1.00 MΩ, C = 5.00 μF, and ε = 30.0 V. Find (a) the time constant of the circuit and (b) the maximum charge on the capacitor after the switch is closed. (c) Find the current in the resistor 10.0 s after the switch is closed.Consider a series RC circuit as in the figure below for which R = 8.00 MΩ, C = 1.00 µF, and = 32.0 V. The circuit is a rectangular loop. The bottom side of the loop has a battery labeled emf ℰ, oriented with the positive terminal to the right of the negative terminal. The right side has a resistor R. The top side contains an open switch S. The left side has a capacitor C. (a) Find the time constant of the circuit. s(b) What is the maximum charge on the capacitor after the switch is thrown closed? µC(c) Find the current in the resistor 10.0 s after the switch is closed. µA
- Consider an RLC series circuit with R = 600 Ω, L = 3 H, C = 4μF, generator voltage V = 20 v, frequency= 60 hz. Find d) I e) VR f) VLCConsider a series RC circuit for which R = 1.0 M?, C = 5.0 ?F, and ℇ = 30 V as in the figure Find the charge on the capacitor 10 s after the switch is closed.In the circuit shown, R1 = 9.00 ohms, R2 = 14.0 ohms, R3 = 2.50 ohms, and V = 16.0 V. Find the total power dissipated in the circuit (in W)