Given a resistor (R = 71 ohms and a capacitor (C = 47 microF) connected in series to an AC power supply (Vrms = 120 V, f = 60 Hz)…
(a) Determine the capacitive reactance.
(b) Determine the impedance.
(c) Determine the currents of each of the three circuit elements. Yes, there are three. You must have three answers.
(d) Determine the rms voltages for the resistor and the capacitor.
(e) Determine the average powers for the resistor and the capacitor.
(f) Specify what happens to each of the above (all nine) if the frequency of the power supply is increased.
Given a resistor (R = 71 ohms and a capacitor (C = 47 microF) connected in...
An AC circuit consists of a 2.0 mH inductor, a 5.0 microF capacitor, and a 12.0 ohms resistor all in series. The power supply operates at a frequency at a frequency of 1900 Hz and an rms voltage of 3 V. Determine the impedance Z and the magnitude of RMS current in the circuit.
A 63 ohm resistor and a 8.0 microF capacitor are connected in series to an ac source. (a) Calculate the impedance of the circuit if the source frequency is 54 Hz. (b) Calculate the impedance of the circuit if the source frequency is 5.4 MHz. Express your answer using two significant figures.
A circuit with a capacitor and resistor R = 220 Ω, in series, is powered by a 60 Hz ac. source with Vrms= 60 V. Vpeak across the resistor is 75 V. What is the rms current through the resistor? What is the impedance of the circuit? What is the reactive impedance of the capacitor?
During this term, you have studied inductors and capacitors, as well as the basics of ac, test equipment, and the effects of reactance, impedance, and resonance. Based on that knowledge and experimentation, answer the following practical application questions. Describe the physical characteristics of a basic inductor. Describe the physical characteristics of a basic capacitor. If an oscilloscope shows a 20 Vpp sine wave, how would you determine the rms value? Calculate what that Vrms value would be. What is the...
Consider an RLC circuit where a resistor (R = 35.0 Ω), capacitor (C = 15.5 μF), and inductor (L = 0.0940 H) are connected in series with an AC source that has a frequency of 80.0 Hz. a. Determine the capacitive reactance at this frequency. b. Determine the inductive reactance at this frequency. c. Determine the total impedance. d. Determine the phase angle. e. Determine the circuit’s resonant frequency.
An RLC circuit consists of a resistor, a inductor, and a capacitor connected in series to an AC voltage source with an RMS voltage of 74 volts. At half the resonant frequency, the phase angle is -25 degrees and the inductive reactance is 47 Ohms. What is the average dissipated power at twice the resonant frequency in Watts?
Question 16 1 pts A 50-2 resistor, a 0.1-H inductor, and a 10-uF capacitor are connected in series to a 60-Hz source. The rms current in the circuit is 3 A. Find the rms voltage across the resistor, the inductor, and the capacitor. O 60 V, 80 V,796 V (all rms) O 150 V, 113V,562 V (allrms) O 150 V, 113 V, 796 V (all rms) O 0.06 V, 80 V,562 V (all rms) 1 pts Question 17 In an...
The R = 650-W resistor, C = 4.0-mF capacitor, and L = 0.16-H inductor are connected in series to an AC (sinusoidal) source. What should be the maximum source voltage V0 to have the maximum current I0 = 0.15 A if the source frequency f=60 Hz? Which of the following statements is/are correct. If the source frequency increases: Inductive reactance decreases; Capacitive reactance increases; Inductive reactance increases; Capacitive reactance decreases; A and B; C and D.
An AC generator supplies an rms voltage of 115 V at 60.0 Hz. It is connected in series with a 0.450 H inductor, a 3.20 μF capacitor and a 396 Ω resistor. What is the impedance of the circuit? 7.69×102 ohm You are correct. Previous Tries What is the rms current through the resistor? 1.50×10-1 A You are correct. Previous Tries What is the average power dissipated in the circuit? Power is only dissipated in a resistor. Thus, you have...
An RLC circuit consists of a resistor, a inductor, and a capacitor connected in series to an AC voltage source with an RMS voltage of 75 volts. At half the resonant frequency, the phase angle is -37 degrees and the inductive reactance is 49 Ohms. What is the average dissipated power at twice the resonant frequency in Watts?