Question

Consider an AC series circuit containing a coil, capacitor and resistance. Tripling the frequency will change the inductive r need help with both please
0 0
Add a comment Improve this question Transcribed image text
Answer #1

son 1) inductive reactance L depends on frequency as follow R XL = ; 2XfL X =j2762 V. XE when new a7fc. frequung is 3f, so ne

Add a comment
Know the answer?
Add Answer to:
need help with both please Consider an AC series circuit containing a coil, capacitor and resistance....
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 ac circuit with a 60 μF capacitor in series with a coil of resistance 18Ω...

    An ac circuit with a 60 μF capacitor in series with a coil of resistance 18Ω and inductance 180mH is connected to a 100V, 100 Hz supply is shown below. Calculate inductive reactance                                                                           capacitive reactance                                                                          circuit impedance and phase angle θ circuit current I                                                                                          phasor voltages VR, VL, VC and VS                                                         resonance circuit frequency                                                                   construct a fully labeled voltage phasor diagram                      

  • 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 a resistor, a inductor, and a capacitor connected in series to an AC v...

    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 1 1 pts When an RLC series circuit is in resonance, its impedance is: O...

    Question 1 1 pts When an RLC series circuit is in resonance, its impedance is: O equal to its resistance. O at maximum. O negative. O zero. Question 2 1 pts Consider an AC series circuit containing a coil, capacitor and resistance. Tripling the frequency will change the inductive reactance by what factor? O 1 3 O 1/3 O 1.73 Question 3 1 pts The power factor in an AC series circuit is equal to which of the following ratios?...

  • 4) An RLC circuit consists of a resistor, a inductor, and a capacitor connected in series to an A...

    4) 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 59 volts. At half the resonant frequency, the phase angle is -35 degrees and the inductive reactance is 46 Ohms. What is the average dissipated power at twice the resonant frequency in Watts?

  • 1. L RC Circuit. An AC circuit has an inductance L -5 mH, a resistance of...

    1. L RC Circuit. An AC circuit has an inductance L -5 mH, a resistance of 8.5 Ohms, and a capacitance of 1 mF. It is driven by a sinusoidal signal at a frequency of f 100 Hz. Calculate (a) the inductive reactance, XL: (b) the capacitive reactance Xc: (c) the magnitude of the impedance Z: (d) the resonant frequeney in Hertz, and (e) the phase of the resulting current.

  • A series AC circuit contains a resistor, an inductor of 250 mH, a capacitor of 4.50...

    A series AC circuit contains a resistor, an inductor of 250 mH, a capacitor of 4.50 uF, and a source with AV = 240 V operating at 50.0 Hz. The max maximum current in the circuit is 170 mA. (a) Calculate the inductive reactance. The inductive reactance depends on the value of the inductance and the frequency of the source. Q (b) Calculate the capacitive reactance. (c) Calculate the impedance. kn (d) Calculate the resistance in the circuit. kn. (e)...

  • An RLC series circuit has a resistance of R = 330.0 Ω, an inductance L =...

    An RLC series circuit has a resistance of R = 330.0 Ω, an inductance L = 0.2000 mH, and a capacitance C = 32.00 nF. (a) What is the resonant frequency? (b) If the capacitor breaks down for peak voltages in excess of 7.000 × 102 V, what is the maximum source voltage amplitude when the circuit is operated at the resonant frequency?

  • An RLC series circuit has a resistance of R = 330.0 Ω, an inductance L =...

    An RLC series circuit has a resistance of R = 330.0 Ω, an inductance L = 0.2000 mH, and a capacitance C = 33.00 nF. (a) What is the resonant frequency? (b) If the capacitor breaks down for peak voltages in excess of 7.000 × 102 V, what is the maximum source voltage amplitude when the circuit is operated at the resonant frequency?

  • An RLC circuit consists of an AC voltage source with a maximum voltage of 131 Volts...

    An RLC circuit consists of an AC voltage source with a maximum voltage of 131 Volts connected in series to a resistor, a capacitor, and an inductor. At the resonant frequency, the inductive reactance is 15 Ohms and the total impedance of the circuit is 29 Ohms. What is the average power produced by the battery at 2.7 times the resonant frequency in Watts?

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