2. Find the resonant frequency for the circuit shown below. 9 μF Zin 20 mH ele www 192 0.1 Ω 0.1
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- A tank circuit contains a capacitor and an inductor that produce 30 of reactance at the resonant frequency. The inductor has a Q of 15. The voltage of 277 V is connected to the circuit. What is the total circuit current at the resonant frequency?Determine the resonant frequency fr and the magnitude of the impedance |Z| for the circuit below at that frequency. What is the voltage amplitude VL across the inductor at resonance? Data: C1 = 5.0 μF, C2 = 25 μF, L = 50. mH, R = 200 Ω, and Vp = 10. V. fr = kHz |Z| = Ω VL = %23. Plot the phase angle Vs frequency curve on a logarithmic scale.G(S)=10/(S(1+0.1S)(1+0.5S)) Determine the phase crossover frequency.
- The following data are given for a three-branch parallel circuit: V= 12 V, R = 82 kΩ, L = 15 mH, and C = 390 pF. Determine the values specified at the resonant frequency.Find out the admittance of a series resonant circuit at resonance. Please show detailed calculation.A circuit has R = 12ohms, L = 50mH and C = 35.181 microfarad components. Determine the upper and lower frequencies and the resonance frequency. Determine also the bandwidth and the power at half power points if the supply voltage is 60 V ac.
- Capacitor of 30 microfarad capacitance is in series with a coil with 8000 cycle supply. what inductance is required for resonance? ans. 13.19 uHseries RLC circuit has R = 5 W, L = 0.2 H and C = 50 µF. The applied voltage is 200 V. Find (i) resonant frequency (ii) Q-factor (iii) bandwidth (iv) upper and lower half-power frequencies (v) current at resonance (vi) current at half-power points (vii) voltage across inductance at resonance.A circuit has R = 12ohms, L = 50mH and C = 35.181 microfarad components. Determine the upper and lower frequencies and the resonance frequency. Determine also the bandwidth and the power at half power points if the supply voltage is 60V ac.
- If the resonant frequency in a series RLC circuit is 50kHz along with a bandwidth of 1kHz, find the quality factor.1Find the half-power bandwidth of a parallel resonant circuit which has a resonant frequency of 7.1 MHz and Q of 250.Draw the amplitude bode plot of H(jω)=0.1(2jω+1)/(jω(0.1jω+1)(0.01jω+1)).