Question

RLC circuit is driven by an AC power source at a frequency of 193.1 Hz. The resistance, the inductive reactance and the capac
6 -7 8 9 0 1 2 3 4 5 6 7 8 9 R (Ohm) What is the net impedance of the circuit? 22::2 Tries 0/12 What is the phase angle? 22*
0 0
Add a comment Improve this question Transcribed image text
Answer #1

The impedance is, Z = x{+ x2 (7)* +(2) = 7.2892 The phase angle is, 0 = tan -{X₂ - Xc R tan - 2 5 = 45 The power factor is, R

Add a comment
Know the answer?
Add Answer to:
RLC circuit is driven by an AC power source at a frequency of 193.1 Hz. The...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • An RLC circuit is driven by an AC power source at a frequency of 131.1 Hz....

    An RLC circuit is driven by an AC power source at a frequency of 131.1 Hz. The resistance, the inductive reactance and the capacitive reactance are all shown in the Z-plane. (See figure.) XL 9 8 7 6 5 4 3 2 1 X (Ohm) XC 3 4 -5 6 -7 8 -9 0 1 2 3 4 5 6 7 8 9 R (Ohm) What is the net impedance of the circuit? Submit Answer Tries 0/12 What is the...

  • A RLC circuit is driven by an AC source of 120volts with frequency 60H_z. The resistance...

    A RLC circuit is driven by an AC source of 120volts with frequency 60H_z. The resistance is 2000 Ohm, the capacitance is 500 mu F, and the inductance is 100_m M. Find the inductive reactance, The capacitive reactance, the impedance, the current, and the resonant frequency.

  • An RLC circuit consists of an alternating voltage source with RMS voltage 90 V and frequency 100 Hz

    An RLC circuit consists of an alternating voltage source with RMS voltage 90 V and frequency 100 Hz, a 180 Ohm resistor a 200 ml inductor, and a 900 micro-F capacitor, all wired in series. a) What is the inductive reactance of the circuit? b) What is the capacitive reactance of the circuit? c) What is the Impedance of the circuit? d) What is the RMS current in the circuit? e) of the frequency is adjustable, what frequency should you use to maximize the current...

  • The source is connected across a series RC ac circuit with R = 9 Ohm and...

    The source is connected across a series RC ac circuit with R = 9 Ohm and XC = 1/ωC = 2.7 Ohm. Q3. The source is connected across a series RC ac circuit with R = 9 Ohm and Xc = 1/(C = 2.7 Ohm. 3a) Find the magnitude of impedance of the series combination (Unit: Ohm) Submit Answer Tries 0/3 3b) Find the phase angle of impedance of theseries combination (Unit: deg) Submit Answer Tries 0/3 3c) Calculate the...

  • An RLC circuit consists of an alternating voltage source with RMS voltage 90 V and frequency...

    An RLC circuit consists of an alternating voltage source with RMS voltage 90 V and frequency 100 Hz, 180 ohm resistor, 200mH inductor, and a 900 micro-F capacitor, all wired in series. A) What is inductive reactance of the circuit? B) What is the capacitive reactance of the circuit?C) What is the impedance  of the circuit? D)What is RMS current in the circuit?E) If the frequency is adjustable what frequency should you use to maximize the current in the circuit?

  • Series and parallel RL and RC circuits with an AC source. A 60 Hz voltage source...

    Series and parallel RL and RC circuits with an AC source. A 60 Hz voltage source has an amplitude of VT-120 V. For the following problems, compute the indicated phasors including both magnitudes and phase angles, and sketch the phasor diagrams (no submission) Q1. The source is connected across a series RL ac circuit with R 7.8 Ohm and XL = ωし= 5.1 Ohm. 1a) Find the magnitude of impedance of the series combination (Unit: Ohm) Submit Answer Tries 0/3...

  • Series and parallel RL and RC circuits with an AC source. A 60 Hz voltage source...

    Series and parallel RL and RC circuits with an AC source. A 60 Hz voltage source has an amplitude of V 120 V. For the following problems, compute the indicated phasors including bath magnitudes and phase angles, and sketch the phasor diagrams (no submission) Q4. The source (assuming angle of ντ is 0°) is connected across a parallel RC ac circuit with R = 7.8 Ohm and Xc = 1/10C = 2.5 Ohm. 4a) Calculate the magnitude of current IR...

  • During this term, you have studied inductors and capacitors, as well as the basics of ac,...

    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...

  • In the circuit shown in the figure, the 60-Hz ac source has a rms voltage amplitude...

    In the circuit shown in the figure, the 60-Hz ac source has a rms voltage amplitude of 120 V, the capacitive reactance is 600 2 the inductive reactance is 150 2 and the resistance is 450 12 a) What is the inductance Lof the inductor? (2 pts) b) What is the capacitance C of the capacitor? (2 pts) c) What is the impedance of the circuit? (1 pts) 60 Hz R

  • Use the information below to answer the next two questions about RLC series circuit. A RLC...

    Use the information below to answer the next two questions about RLC series circuit. A RLC series circuit has R=5.0082,L=0.0150H and C = 330x106. This circuit is connected to an AC source with Vrms = 120V and f = 60.0Hz. What is the inductive reactance of the RLC series circuit? Answer: 22 What is the capacitive reactance of the RLC series circuit? Answer: What is the impedance of the circuit? Answer: What is the rms current in the circuit? Answer:...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT