Power dissipated in the circuit?
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Q: Apply Thevenin's theorem to determine the current Io.
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- Three capacitors having capacitance values of 20F,40F, and 50F are connected in parallel to a 60 - Hz power line. An ammeter indicates a circuit current of 8.6 amperes. How much current is flowing through the 40F capacitor?An AC circuit contains a 24 resistor, a 15.9-mH inductor, and a 13.3F capacitor connected in parallel. The circuit is connected to a 240-V, 400-Hz power supply. Find the following values. XL=XC=IR=AIL=AIC=AP=WVARsL=VARsC=IT=AVA=PF=%=A 15-F AC capacitor is connected in series with a 50 resistor. The capacitor has a voltage rating of 600 WVDC. The capacitor and resistor are connected to a 480-V, 60-Hz circuit. Is the voltage rating of the capacitor sufficient for this connection?
- . An inductance of 15mH has a current drawing I = 15sin(650t - 300) A. Determine the equation of voltage in the circuitA 1-H inductor is connected in series with a 6-ohm resistor. If the connection is energized from a 9-V DC source, determine the current (in amperes) through the circuit for a long time. The initial current is 100 mA. Express your answers accurate to four decimal places. No need to put the units.Q2. A 20 mH inductor has a periodic current as shown in Figure Q2. Determine and plot inductor voltage as a function of time over the range of time given. i(t) [mA] 120 + i(t) L 60 + vz(t) ++ t [ms] 70 10 20 30 40 50 60 Figure Q2
- A series resistance - capacitance ( R-C ) circuit is connected to a 230V, 60 - cycle source. If the power taken by the circuit is 4, 800W and the voltage drop across the resistor is 115V.Calculate the capacitance of the capacitor. 600.36 microfarad 1,500.05 microfarad 556.096 microfarad 250.94 microfaradCalculate the time taken by a series RL circuit having inductance of 0.6 H and resistance of 30 ohms to reach a steady state value.11 6. For the circuit shown in the figure next, the value of (equivalent inductance) L T is found to be * Figure L1 None of the choices O 1.5 2.5
- 2) a)For the following circuit find the total capacitance and inductance and hence find the total impedance of the circuit. V1 230V/50Hz E R1 350 C1 4700pF HE C2 10nF HH C3 47nF C4 220nF HH L1 72mH L2 32mH All Resistance in OhmsThe current through a 220 μF capacitor is given below. Use Ohm’s Law to find the voltage. Convert to polar form, find the impedance and complete the math, then convert back to the waveform at i1 = 1.5sin(2500t + 30°) mA and i2 = 4.7sin(200t – 40°) mAAn R−L−C series circuit has a current which lags the applied voltage by 45°. The voltageacross the inductance has a maximum value equal to twice the maximum value of voltageacross the capacitor. Voltage across the inductance is 300 sin(1000?) and R = 20 ohms. Computethe following: Value of total Impedance (Z) Value of Inductance (L) Value of Capacitance (C)