An ac source with an amplitude of 600 V drives an L-R-C series circuit. The voltage vC acrOss the capacitor is shown in the graph, where T = 0.008 s. In the circuit the capacitance is C = 4uF while the inductance has a value of L= 0.900 H. (a) Determine the angular frequency of the circuit. (b) Determine the reactance of the capacitor and of the inductor for this circuit. (c) Determine the maximum current in the circuit. (d) Determine the resistance R of circuit.
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- An ac circuit has a single resistor, capacitor, and inductor in series. The circuituses 100 W of power and draws a maximum rms current of 2 A when operating at 60 Hz and 120 V rms. The capacitive reactance is 0.5 times the inductive reactance. (a) Find the phase angle (b) Find the values of the resistor, the inductor, and the capacitor.A resistor, capacitor and an #6 AC Circuits, Reactance, and Resonance inductor are connected in series. The resistor has a resistance of 50.0 2, the capacitor has a capacitance of 2.50 mF and the inductor has an inductance of 2.00 mH (milli Henry's). The circuit is subject to an AC signal with a frequency of 350 hz with an RMS Voltage of 20.0 V. a. What is the angular frequency w associated with the AC signal? b. What is the impedance of the circuit?An AC source with an output rms voltage of 34.5 V at a frequency of 60.0 Hz is connected across a 11.2-µF capacitor. (a) Find the capacitive reactance. (b) Find the rms current. A (c) Find the maximum current in the circuit. A (d) Does the capacitor have its maximum charge when the current has its maximum value? Yes No Explain.
- A capacitor is connected across the terminals of an ac generator that has a frequency of 360 Hz and supplies a voltage of 34 V. When a second capacitor is connected in parallel with the first one, the current from the generator increases by 0.30 A. Find the capacitance of the second capacitor. Note: The ac current and voltage are rms values and power is an average value unless indicated otherwise.A series AC circuit contains a resistor, an inductor of 200 mH, a capacitor of 4.80 μF, and a source with AV (a) Calculate the inductive reactance. Ω (b) Calculate the capacitive reactance. Ω (c) Calculate the impedance. ΚΩ (d) Calculate the resistance in the circuit. ΚΩ (e) Calculate the phase angle between the current and the source voltage. о = 240 V operating at 50.0 Hz. The maximum current in the circuit is 120 mA. maxA resistor and capacitor are connected in series across an ac generator. The voltage of the generator is given by V(t)= Vo cos(wt), where Vo 120 V, w = 120m rad/s, R= 6000, and C= 6μF. (a) What is the magnitude of the impedance of the RC circuit? (b) What is the amplitude of the current through the resistor? (c) What is the phase difference between the voltage and current? Hint a. The magnitude of the impedance is b. The amplitude of the current through the resistor is c. The phase difference between the voltage and current is rad. (Take the positive phase difference to mean that voltage is leading the current by this phase difference.) Submit Question Q. mA, MacBook Pro
- An AC generator with an output rms voltage of 18.0 V at a frequency of 60.0 Hz is connected across a 41.0-uF capacitor. Find the following. (a) capacitive reactance(b) rms current(c) maximum current in the circuitA series AC circuit contains a resistor, an inductor of 240 mH, a capacitor of 4.10 μF, and a source with AV = 240 V operating at 50.0 Hz. The maximum current in the circuit is 160 mA. max (a) Calculate the inductive reactance. (b) Calculate the capacitive reactance. n (c) Calculate the impedance. kn (d) Calculate the resistance in the circuit. (e) Calculate the phase angle between the current and the source voltage.In the circuit shown in the figure, the 60-Hz ac source has a voltage amplitude of 120 V, the capacitive reactance is 920 Ohms, the inductive reactance is 290 Ohms, and the resistance is 420 Ohms. What is the rms current in the circuit?