Question

An RLC series circuit is constructed with R = 190.0 Ω, C = 6.00 µF, and...

An RLC series circuit is constructed with R = 190.0 Ω, C = 6.00 µF, and L = 0.54 H. The circuit is connected to an AC generator with a frequency of 60.0 Hz that delivers a maximum current of 2.30 A to the circuit.

(a) What is the impedance of this circuit?
___ Ω

(b) What are the maximum potential differences across each of the three circuit elements (R, L, and C)?

VR, max

=___ V

VL, max

=___ V

VC, max

=___ V


(c) What is the phase angle between the source emf and the current?
___ rad

0 0
Add a comment Improve this question Transcribed image text
Answer #1

reactance of capacitor X, 2ぴー60.0)(600 x 10-6) 2nyC 2r(60.0)(6.00×10-6 reactance of inductor X, = 2兀灴= 2π(60.0)(0.54) = 204Ω

Add a comment
Know the answer?
Add Answer to:
An RLC series circuit is constructed with R = 190.0 Ω, C = 6.00 µF, and...
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 series circuit is constructed with R-130.0 Ω, circuit. C-7.25 μF, and L-0.54 H. The...

    An RLC series circuit is constructed with R-130.0 Ω, circuit. C-7.25 μF, and L-0.54 H. The circuit is connected to an AC generator with a frequency of 60.0 Hz that delivers a maximum current of 2.20 A to the (a) What is the impedance of this circuit? (b) What are the maximum potential differences across each of the three circuit elements (R, L, and C)? VR, max И, max Vc, max (c) What is the phase angle between the source...

  • A series RLC circuit with L = 17.5 mH, C = 3 µF, and R =...

    A series RLC circuit with L = 17.5 mH, C = 3 µF, and R = 15 Ω is driven by a generator with a maximum emf of 120 V and a variable angular frequency ω. Find the resonant frequency ω0. Answer in units of rad/s.

  • Consider an RLC series circuit with R = 600 Ω, L = 3 H, C =...

    Consider an RLC series circuit with R = 600 Ω, L = 3 H, C = 4μF, generator voltage V = 20 v, frequency= 60 hz. Find a) the inductive impedance XL, b) capacitive impedance Xc , c) Total impedance Z, d) Line current I , e) Voltage drops VR , VL, ,Vc f) combination voltage VRL , and VLc , g) phase angle φ , h) resonant frequency f0 , i) Power dissipated by circuit.

  • A series RLC circuit has R = 420 Ω, L = 1.45 H, C = 3.4...

    A series RLC circuit has R = 420 Ω, L = 1.45 H, C = 3.4 µF. It is connected to an AC source with f = 60.0 Hz and ΔVmax = 150 V. What if the frequency is now increased to f = 84 Hz, and we want to keep the impedance unchanged? (C) Find the maximum voltages across each element. ΔVR = V ΔVL = V ΔVC = V

  • Consider a series RLC circuit with R = 12.0 Ω, L = 0.700 H, C =...

    Consider a series RLC circuit with R = 12.0 Ω, L = 0.700 H, C = 72 μF, and a maximum voltage of 100 V. (c) What is the rms current through the circuit at resonance? (d) What is the impedance at 60.0 Hz? (e) What is the rms current in the circuit at a frequency of 60 Hz?

  • A series RLC circuit is comprised of a 0.140 H inductor with an internal resistance of...

    A series RLC circuit is comprised of a 0.140 H inductor with an internal resistance of 182.0 1, an unknown capacitor, and an unknown resistor. They are connected to a generator set at 160. Hz. If VC = 5.17 V, VR = 7.82 V, and Vind = 15.60 V, what frequency should the generator be set in order to maximize the power factor? Vc A B с VL Gen R VR V [V - Vc L D 000 inductor C...

  • In an oscillating RLC circuit, R = 3.9 Ω, L = 6.0 mH, and C = 600 µF. What is the angular frequency of the oscillations...

    In an oscillating RLC circuit, R = 3.9 Ω, L = 6.0 mH, and C = 600 µF. What is the angular frequency of the oscillations (in rad/s)? ___________________________ rad/s

  • Use the worked example above to help you solve this problem. A series RLC AC circuit...

    Use the worked example above to help you solve this problem. A series RLC AC circuit has resistance R = 2.60 x 10-Q, inductance L-0.700 H, capacitance C-3.50 μF, frequency f-60.0 Hz, and maximum voltage ΔⅤmax = 2.00 x 102 V (a) Find the impedance (b) Find the maximum current in the circuit. (c) Find the phase angle (d) Find the maximum voltages across the elements R, max L, max C, max Δν EXERCISE HINTS: GETTING STARTED L I'M STUCK!...

  • 5. In an RLC series circuit R = 10.0 Ω, C = 8.00 μF, L =...

    5. In an RLC series circuit R = 10.0 Ω, C = 8.00 μF, L = 0.200 H, ω,-800 rads, -200 v a. Find ms b. Find the impedance Z of this circuit and the steady-state current amplitude I in the circuit. c. Find the phase φ of the steady-state current and the power factor for this circuit. Is the load of this circuit resistive, inductive or capacitive? d. Find the average rate at which power is dissipated in the...

  • A sinusoidal voltage Δv = (60.0 V)sin(170t) is applied to a series RLC circuit with L...

    A sinusoidal voltage Δv = (60.0 V)sin(170t) is applied to a series RLC circuit with L = 20.0 mH, C = 145.0 μF, and R = 34.0 Ω. (a) What is the impedance of the circuit?     (b) What is the maximum current in the circuit?    

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