Consider the series RC-circuit shown below for which R= 66.0 kn, C = 45.5 µF, and & = 23.5 V. Find the following. S R (a) the time constant of the circuit S (b) the charge on the capacitor one time constant after the switch is closed C
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- A resistor of 100 Ω, a coil of 4.50 μH, and a capacitor of 220 pF are in parallel. What is the admittance vector at 6.50 MHz? Provide illustration of the circuit.Consider the given circuit with vi=3V, R1=20K, Rf=50K, R2=10K, R3=20K, C=2μF. Assuming that the capacitor is an open circuit, determine vo.1.3 A coaxial cylindrical capacitor is to be designed with an effective length of 10 cm. The capacitor is expected to have a capacitance of 100 pF and to operate at 11 kV, 1000 kHz. Determine the required thickness if the required insulating material is Polytetrafluoroethylene (P.T.F.E.), &r= 2.0, Eb = 250 kV/cm. Allow a factor of safety of 4 and take to = 8.85x10-1² F/m.
- In an RCL circuit, L=0.1;H,;R=0.6; omega,; C= 0.4;F, and E(t) = 60;V. Find the charge at time t. Assume the initial charge on the capacitor is 0 and the initial current is 7.5A.An inductor coil with an inductance of 10 mH is connected in series with a capacitor to form an LC oscillator circuit system. A 2 μF capacitor at time t = 0 stores a potential difference Vc(?=0) = 60 V. Determine the potential difference across the inductor as a function of time, VL(?) and Determine the rate of change of current strength as a function of time flowing in the circuit, ??/??(?).2) A current of 250mA flows through a perfect inductor, when it is connected to a 5V, 1kHz supply. Determine the inductance value? 3) A coil of inductance 400µH, and of negligible resistance, is connected to a 5kHz supply. If the current flow is 15mA, determine the supply voltage? 4) A 0.47µF capacitor is connected to a variable frequency signal generator, which provides an output voltage of 25V. Calculate the current flowing when the frequency is set to (a) 200Hz, and (b) 4kHz? 5) At what frequency will the reactance of a 22 pF capacitor be 500 Ω?
- How to compute for the In(V/Vo) for a RC Circuit Discharging Mode? If the given are: t = 3s V = 10.5 Vo (or initial capacitor voltage) = 0A series RLC circuit having a resistance of 8 ohm, inductance of 50 mH and capacitance of 90 µF is connected across a 150 V, 50 Hz supply. Calculate (1) the current (2) the power factorA series L–R–C circuit has a supply input of 5 volts. Given that inductance, L = 5 mH, resistance, R = 75ohms and capacitance, C = 0.2µF, determine A) the value of the maximum voltage across the capacitor. B) A capacitor having a Q-factor of 250 is connected in series with a coil which has a Q-factor of 80. Calculate the overall Q-factor of the circuit.
- For t < 0, the capacitor in the given figure is completely discharged. Assume that the switch is thrown at t = 0. Let VS = 15 V, R = 200 Ω, L = 20 mH, and C = 0.1 μF.Differential Equation: y′′+6y′+58y=0 describes a series inductor-capacitor-resistor circuit in electrical engineering.The voltage across the capacitor is y (volts). The independent variable is t(seconds). Boundary conditions at t=0 are: y = 6 volts and y′=8 volts/sec . Determine the capacitor voltage at t=0.40seconds . ans:1A given RLC circuit (Resistor-Inductor-Capacitor) has the following components: R = 4.4 Ohms L = 0.0017 H C = 5.79 x10-6 F If this system is driven by an oscillating current with frequency f = 765 Hz, what is the Capacitive Reactance (XC) of this system?