A series RLC circuit below resonant frequency given by: Resistive capacitive Inductive None of these
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- A parallel R-L-C circuit is fed by a constant current source of variable frequency. The circuit resonates at 100 kHz and the Q-factor measured at this frequency is 5. Find the frequencies at which the amplitude of the voltage across the circuit falls to (a) 70.7% (b) 50% of the resonant frequency amplitude.A 100 Hz sinusoid is sampled at thrice the nyquist rate. Then how many samples are obtained in 2sec.A resistance of 100 and a capacitance of 100 µF is connected in series to the parallel combination of a 20-0 resistor and a 15-mH inductor. The circuit is energized by a 120 Vac, variable frequency supply. Derive the formula for resonant frequency and use it to find the resonant frequency.
- Problem 5 Using Multisim, design RC HPF considering R=5KN, C=4nano farad. Simulate the design and find out cut-off frequency. Make suitable assumptions wherever necessary.Ex: Design a noninverting summer circuit to achieve a 3 summing function for two analog signals 3 filt) = 5 Sin 2πT 10³t and f(t) = Ult). Draw the output waveform.What is resonance? Explain how the condition of resonance is obtained in a series RLC circuit. Determine impedance, current, and power factor of RLC circuit at resonance.
- Briefly explain how the frequency response of an AC RLC circuit can be studied using Lissajou figures.H.W: A resistor of resistance R-1000 2 is maintained at 17 °C and it shunted by 100 uH inductor. Determine the rms noise voltage across the inductor over a frequency bandwidth of: i) 15.9 kHz Ans: 182 x109 volt ii) iii) Ans: 9.22 x10-8 volt Ans: 2.34 x10-6 volt 159 kHz 1590 kHzProposed an industrial application with a transfer function. Using the proposed transfer function: 1. Sketch the corresponding magnitude and phase asymptotic Bode plot by hand (Using semi log paper). 2. Plot the corresponding Bode plot in MATLAB and verify that the result corresponds to you hand-sketched asymptotic plot. refer here https://www.mathworks.com/help/ident/reflbode.html 3. Use the MATLAB function to obtain the gain margin and phase margin. Tips: watch class video 4. Comment on system stability based on obtaining gain margin and phase margin.
- In designing a signal-switching circuit (RC circuit), it was found that a 100-µF capacitor was needed for a time constant of 3 ms. What value resistor is necessary for the circuit? The resonant circuit for a radio broadcast consists of a 120-pF capacitor in series with a 240-uH inductor and a resistance of 400 2, what is the resonant frequency of the circuit? What would be the resonant frequency if the resistance were reduced to 40We use the transfer function Vo (s) / Vi (s) for the electric circuit given in the figure.in terms of parameters. R1 = 1Kohm to the transfer function you found,Bode the expression you get by typing the values R2 = 1Kohm C1 = 1nF, C2 = 1nFDraw the diagram.A coutimuous-time sinusoid has frequency 2 = 70r rads sec and is sampled at a sampling interval of T=0.01 sec. What is the frequency of the discrete-time sinusoid? %3D Oa =70z rads ses OL- 0.7z rada sec Oce= 7x rads sec Od0= 7000r ads see