where R = 4 Ohm, L 40 mH and C-30 nF. Figure Q1. Electrical circult of the given question a) Derive the impedance and admittance functions in terms of frequency. b) Calculate the numerical values of the resonant frequency, the dynamic impedance and the bandwidth.
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A: At Resonance means:- Xl=Xcwl=1wcl=1w2c =1106×1×10-3 =10-3H
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A: Dear student as per our guidelines we are supposed to solve only one question in which it should be…
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Q: HIGH VOLTAGE(Can you explain in detail? Thank you) Q1 : A 100 kVA, 50 Hz, 230/50 kV testing…
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Q: b) For the circuit shown , let R= 1kohm, L1 = 10mH, C1= 50NF. Calculate the values of Z, Phase…
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Q: An angle modulated signal with carrier frequency ωc = (2π*106 ) is described by the equation Φ(t)…
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A: for our policy i can solve first three questions
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Q: 1) a) For the circuit shown , let R= 1kohm, L1 = 10mH, C1= 5nF. Calculate the values of Z, Phase…
A: The solution is given
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Q: + VR www R = 20 + VL moo XL = 30 Ω + E50 mV Xc a) Find the value of X, for resonance. And find the…
A: In this solution we discuss about the series resonance.
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- Define resonant frequency and explain how the impedance of a network behaves at the resonant frequency?Suppose the noise power at the input to a receiver is 5 nW in the bandwidth of interest. What would be the required signal power for signal–to–noise ratio of 30 dB? full solution thank you for the help!Is the plot of current versus frequency symmetrical about the resonant frequency? Explain
- Given below the system, sketch the bode log Mag. diagram: Note: Step by step solution in order to plot.Plz I need the answer of this question 3- The impedance response of a typical RF resistor after resonance is inductive. 1- True 2- Falsea. What frequency is halfway between 100 and 3000 Hz on a logarithmic frequency scale? b. On a linear frequency scale?
- HIGH VOLTAGE(Can you explain in detail? Thank you) Q1 : A 100 kVA, 50 Hz, 230/50 kV testing transformer has an 10% leakage reactance and a 2% winding resistance. A cable of capacitance 100 nF is to be tested at 300 kV using this transformer as part of the resonance circuit. Determine the value of the inductance (with a Q-factor of 20) required to obtain resonance and the value of the input voltage required to obtain the required voltage.What is the bandwidth of the system?For the network of figure below, if the mid- band voltage gain is (-2.47), answer the following: a. Draw the ac equivalant circuit. b. Calculate Ci and Co. d. Determine fy; and fyy,. e. determine the cutoff frequency. f. Sketch the frequency response for the high-frequency region using a Bode plot.
- An angle modulated signal with carrier frequency ωc = (2π*106 ) is described by the equation, Φ(t) = 10 cos (ωc t + 0.1 sin 2000 πt) (a) Find power in modulated signal (b) Find frequency deviation Δf (c) Find phase deviation Δφ (d) Estimate bandwidth of Φ(t)3. Given a pass-band amplifier in 66MHz, design a frequency mixer that receives a 199.25 MHz signal and produce a 67.25 MHz signalfT = 500 MHz, rx = 300 Ω, Cμ = 0.75 pF, CGS = CGD = 2.5 pF. Simulate the frequency response of the amplifier and determine Amid, fL , and fH .