Question

Circuit was set up following the diagram below

? kHz 2 ohms HI 1 ohm

The resistor was set to 50 ? and the capacitor was set to 0.1 µF 5 frequency and voltage values below the resonance frequency and 5 values above the resonance frequnecy were written down then plotted V-f graph

next the resistance was changed to 10 ?. and the procedure was repeated. What does changing the resistance do to the graph?

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

Changing the resistance   reduces the impedance value of RLC circuit . So, current in the RLC circuit increases .

Therefore , changing the resistance decreases the voltage value in the V-f graph .

Add a comment
Know the answer?
Add Answer to:
Circuit was set up following the diagram below The resistor was set to 50 ? 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
  • Answer all after part A An RLC series circuit has a 2.25 Ohm resistor, a 105...

    Answer all after part A An RLC series circuit has a 2.25 Ohm resistor, a 105 Mu H inductor, and a 72.5 Mu F capacitor Find the circuit's impedance, in ohms, at 150 Hz. Find the circuit's impedance, in ohms, at 6.5 kHz. If the voltage source supplies an rms voltage of 5.66 V, what is the circuit's rms current, in amperes, at a frequency of 150 If the voltage source supplies an rms voltage of 5.66 V, what is...

  • In a series RLC resonance circuit, the resonance frequency f0 = 700 kHz. The resistor R...

    In a series RLC resonance circuit, the resonance frequency f0 = 700 kHz. The resistor R = 10 Ohm. The specified bandwidth (BW) should be 10 kHz. Please calculate the quality factor (Q) and the values of inductor and capacitor.

  • An RLC series circuit has a 1.00 k Ohm resistor, a 155 mH inductor, and a...

    An RLC series circuit has a 1.00 k Ohm resistor, a 155 mH inductor, and a 25.0 nF capacitor. (a) Find the circuit's impedance at 525 Hz. Ohm (b) Find the circuit's impedance at 7.50 kHz. Ohm (c) If the voltage source has V_rms = 408 V, what is I_rms at each frequency? mA (at 525 Hz) mA (at 7.50 kHz) (d) What is the resonant frequency of the circuit? kHz (e) What is I_rms resonance? mA

  • A RCL circuit has a 1.68 uF capacitor and a 11.14 mH inductor. The total impedance...

    A RCL circuit has a 1.68 uF capacitor and a 11.14 mH inductor. The total impedance of the circuit is 6 ohms at a frequency of 1.2 kHz. A) What is the resistance fo the resistor? B) What is the phase angle between the current and voltage? C) What is the resonance frequency of this circuit? D) What will the toal impedance be at the resonance frequency?

  • An RLC series circuit has a 2.6 Ω resistor, a 95 μH inductor, and a 87.5...

    An RLC series circuit has a 2.6 Ω resistor, a 95 μH inductor, and a 87.5 μF capacitor. a. Find the circuit’s impedance, in ohms, at 110 Hz. b. Find the circuit’s impedance, in ohms, at 4.5 kHz. c. If the voltage source supplies an rms voltage of 5.52 V, what is the circuit’s rms current, in amperes, at a frequency of 110 Hz? d. If the voltage source supplies an rms voltage of 5.52 V, what is the circuit’s...

  • In the series RC circuit below, with R -6.1 k ohms& C 72.5 nF, at what angular frequency [rad/s] ...

    In the series RC circuit below, with R -6.1 k ohms& C 72.5 nF, at what angular frequency [rad/s] does the capacitor AC voltage reduce to its DC value (accurate to 1%)? C output Answer: In the series RC circuit below, with R-1.2 k ohms & C 92.8 nF, calculate the magnitude of the voltage 'gain' of the circuit (Vout/ Vsl), for a driving frequency of 0.1 kHz, to 1% accuracy. Coutput Answer For a series RLC circuit as shown...

  • Answer for part b is R=247 and V=16v 50. (8 points) You set up the circuit...

    Answer for part b is R=247 and V=16v 50. (8 points) You set up the circuit shown below, C = 5.00 uF. At the time t = 0, you close the switch and then measure the charge q on the capacitor a function of the current i through the resistor. A graph of your results is also shown below. 60.00 50.00 q=-1.2475*1 + 79.9 R2 = 0.9999 40.00 Switch closed 30.00 20.00 10.00 60 i VA +q - 0.00 0...

  • 5.A series RC circuit contains a 0.01 microfarad capacitor and a 2,000 ohm resistor, and has...

    5.A series RC circuit contains a 0.01 microfarad capacitor and a 2,000 ohm resistor, and has a frequency of 500 HZ. What is the impedance of the circuit? A. 90,285 ohms B. 52,285 ohms C. 42,164 ohms D. 31,910 ohms 1. A series RC circuit has a source voltage of 24 VAC and an impedance of 252 ohms. What is the circuit current? A. 95 A B. 0.095 A C. 9.5 A D. 0.95 A 2. A 0.015 micro arad...

  • A circuit is constructed with an AC generator, a resistor, capacitor and inductor as shown. The...

    A circuit is constructed with an AC generator, a resistor, capacitor and inductor as shown. The generator voltage varies in time as ? =Va - Vb = ?msin?t, where ?m = 120 V and ? = 221 radians/second. The inductance L = 352 mH. The values for the capacitance C and the resistance R are unkown. What is known is that the current in the circuit leads the voltage across the generator by ? = 58 degrees and the average...

  • In the circuit below the oscillator outputs a voltage of 3 Vome at a frequency of...

    In the circuit below the oscillator outputs a voltage of 3 Vome at a frequency of 1 KHz into a series combination of a 2000 Ohm resistor and an 80 nF capacitor. Calculate the output voltage that appears across the capacitor, and calculate the phase relationship between this voltage and the input voltage. Show a phasor diagram for these voltages and indicate which voltage is ahead in phase of the other Circuits of this type have a name - what...

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