Write a difference equation that characterizes a system whose frequency response is H(el) = 1-1-1+e-130 1+e-j+e-120
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- 1. A 5 mH pure inductance is connected in parallel with one microfarad capacitor. What frequency will the circuit be antiresonance? 2. Three impedances Za, Zb and Zc are connected in parallel. If at 60 Hz, Za = j8, Zb = -j2 and Zc = 5 ohms, Solve for the frequency at resonance.Hi, can you please draw a stright line bode aproximation for the equation attached. On the graph include individual componentsHow can I find at what frequency does Av= 0.707 ? And can you please explain me step by step ?
- Graph av(vo/vi) and Theta against frequencya. Determine the frequency responseVout( jω)/Vin( jω) for the circuit of Figure. b. Plot the magnitude and phase of the circuit forfrequencies between 10 and 107 rad/s on graphpaper, with a linear scale for frequency. c. Repeat part b, using semilog paper. (Place thefrequency on the logarithmic axis.) d. Plot the magnitude response on semilog paper withmagnitude in decibels.For the circuit below: (a) What is the amplitude, frequency and phase of vs(t) represent vs(t) in phasor form. (b) Find XL,XCand total impedance Z of the circuit and find i(t) flowing the circuit (c) Explain whether the circuit is Capacitive or Inductive and what is the frequency at which the circuit will be at resonance?
- 3. Find the value of R which results in parallel resonance for the circuit shown below. Use Admittance Method.Series and parallel circuits are made from the same components as follows. A coil of resistance 300 ohm and inductance 100mH and a 4000pF capacitor are connected (i) in series and (ii) in parallel. (A) Find for each connection: (i) the resonant frequency, (ii) the Q-factor (iii) the impedance at resonance and (iv) draw the respective circuits and response curves.For given circuit R1, R2, R3 are 0.51ohm, 1.3ohm, 1.1ohm, respectively; with L1 and L2 32mH and 15mH; C1 and C2 25microfarad and 62microfarad . find the resonace frequency
- Critically analyse the principles of circuit theory to explain series resonant circuit. Deriveexpression for resonant frequency and evaluate the resonant frequency and current flowing atresonance in a series a.c circuit consisting of a coil of resistance 4 ohm , inductance 70mH and capacitance0.06 uF if the supply voltage is 100VQuestion 02: A) How do you use Kirchhoff's law? What are the limitations of Kirchhoff's law? B) What is resonance in RLC circuit? Define the Q-factor in RLC series circuit.1-Find the center frequency and the two cutoff frequencies by changing the frequency until Vo becomes 0 and 0.707Vi respectively. 2- graph vo/vi and Theta against frequency