For the RLC circuit shown, the switch is initially in the open position and closes at time t = 0. The component values are R=21k, L=65mH, C =584nF, and the source voltage is V, =4V. What is the value of the capacitor current at time t = 0+? That is, find Ic(0*). Enter your answer in units of micro-amps (μA). L
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- The figure below shows a capacitor, with capacitance C = 37.5 µF, and a resistor, with resistance R = 77.5 kn, connected in series to a battery, with Ɛ = 33.0 V. The circuit has a switch, which is initially open. %3D 3. R S (a) What is the circuit's time constant (in s)? (b) After the switch is closed for one time constant, how much charge (in C) is on the capacitor? CProblem 2: For the circuit show below, what are I₁, I2,I3? ε₁ = 8V, ε₂ = 12V, R₁ = 6 N, R₂ = 2, R3 = 4 N. Answers: 1₁ = 1.64 A, I₂ = 0.91 A, I3 = 2.55 A. https://www.handymath.com/cgi-bin/matrix3d.cgi R3 E2 13 13 R2 12 12 R₁ 11 Γω I₁e f g
- Three resistors, R₁ = 232, R₂=3502, and R,=4552, are connected to a capacitor of capacitance C=32μF and a battery with emf 8=14V as shown in the figure below. The capacitor is initially uncharged when the switch is closed at t-0. Determine the current running on R, on the capacitor at r=0. Express your answer in units mA using zero decimal places. S w ++ R₁ www C ww R3The capacitor in the circuit shown is fully charged by a 24 V battery. The switch is closed at t = 0. At sometime after the switch is closed, the voltage across the capacitor is measured to be 10 V. What is the current in the circuit at this time, in Ampere? C = 3.0 µF, and R = 2.0 02. Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement. CilFind the charge q(t) on the capacitor and the current i(t) in the given LRC-series circuit. 1 L =2h, R = 10 N, C = 70 5 f, E(t) = 350 V, q(0) = 0 C, i(0) = 0 A 7 q(t) i(t) A Find the maximum charge on the capacitor. (Round your answer to three decimal places.) |c
- The circuit shown in the diagram consists of 10-volt battery, a 47-ohm resistor, and 0.375-farad capacitor, connected as shown. Suppose the switch had been in Position 1 for a long time and is just being moved to Position 2. Let t = 0 at the instant the switch is placed in Position 2. At what time t will the voltage across the capacitor equal 5 volts?the image shows a circuit with the emf ε = 24 V, the capacitance C = 3 µF. The resistances areR1 = 2 Ω, R2 = 4 Ω, and R3 = 6 Ω. We keep the switch S closed for a long time, under thiscondition a) Briefly explain the state of the capacitor a long time after the switch is closed.b) Calculate the current flowing in R3 (after a long time). Justify your answer.c) Apply Kirchhoff’s Loop Rule to calculate the total current I delivered by the emf, which flowsthrough R1 (after a long time).