In the RLC series circuit, the resonant frequency is 1000 rad/s, and the bandwidth is 200 radis. What are the, of R and quality factor? At resonance, what is the voltage across the capacitor? values 920°V R 14 IMF
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- You are an electrician working in a plant. A series resonant circuit is to be used to produce a high voltage at a frequency of 400 Hz. The inductor has an inductance of 15 mH and a wire resistance of 2 . How much capacitance should be connected in series with the inductor to produce a resonant circuit? The voltage supplied to the circuit is 240 V at 400 Hz. What is the minimum voltage rating of the capacitor?Eill in the blank with corect answers B Frequency Series Resonance - Impedance vs. Frequency. The graph of impedance against frequency for an RLC series resonance circuit is shown in the picture. At which point the current will be maximum At point A At point C At point B At point D The inner most layer of an optical fhotI Is cantu ImpedanceIn a series RLC circuit, the applied voltage is 108V. At resonance, the frequency is 200rad/sec, and the circuit current is 8.38 A. What is the resistance of the circuit (in Ohms)?
- In the circuit of Figure, the magnitudes of V₁ and V at the resonance are twice L C that of VD. The inductance of the coil for R* 50 Hz is 520⁰ VR www. 502 Vc ell V₁Answer the following questions: 6. Describe the current and impedance in a series RLC circuit at resonance.7. Describe the current and impedance in a parallel RLC circuit at resonance.In a series RLC circuit, the applied voltage is 120V. At resonance, the frequency is 200rad/sec, and the circuit current is 6.26 A. What is the resistance of the circuit (in Ohms)? (Use 2 decimal places. Unit is not required.)
- Determine the break frequency in KHZ of the RC low-pass circuit below. Assume that Resistor value is 3 KQ and Capacitr value is 0.02uF.find out the resonance frequency & plot the resonance frequencybehaviour as a function of the resistance R as, L=10nH & C= 1pFFind thee transfer function vo/vi. + Vi 10 C ㅔ H- Ri Rf + Vo
- The resonant converter having fixed value of resonant frequency 48 Hz and capacitance of 2 muF. Find the inductance of this resonant converter a. 2.64 H b. 5.49 H c. 33.12 H d. 34.51 H2. Determine the resonance frequency and bandwidth from the graph. Find the Q-factor also. A resonance curve for the parallel LC circuit 1- 09- 08- 0.7 06- 0.5 04 03 01 10 Frequency Frequency: KHz Bandwidth KHz Q-Factor:Bode Diagram 20 10 -10 -20 -30 40 -50 -60- -70 -80 -45 -90 -135 -180 102 10 100 Frequency (rad/s) 10 102 103 a) Explain what is gain margin, phase margin, gain crossover frequency and phase crossover frequency b) Find the gain margin, phase margin and the gain crossover frequency for the bode plot shown above. c) Comment on the stability of the system. Phase (deg) Magnitude (dB)