Homework: For the circuit shown below find Av, Ai, Ro, Ri.
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Q: ↓= R1 200 ww + V1 40 V 511 H R3 40 R2 2002 www R8 200 ww R4 210 R5 R6 200 R7 200 B
A: The solution is given below
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Q: reduce the following equation XY + ~X~Y+ (~X+~Y) + (~X+Y) ху 1 ~x~y + ~Xy
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Q: R ell +. 12 cos 3t V Vo 4 sin 2t A 10 V If we would like to use Superposition to solve for v, in the…
A: Consider, 12 cos3t V Now, Zc=1jωCZc=1j 30.03Ω Zc=1jωCZc=1j 30.03Ω
Q: Example1/ For the circuit shown ,if the switch on at t=0, determine Vr, ir and Vs as a function of…
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Q: Problem set 1 Compute the line voltages and currents of the load. Load Side: a 0,1 0 j0.2 Ω Α 10 Ω…
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Q: Find the output voltage Vo in the circuit below. Μ 6 ΚΩ 12V 6 ΚΩ 6 ΚΩ 41₁ + 6 ΚΩ to 6 ΚΩ + το
A: The solution is given below
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Q: . Using nodal analysis calculates I
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Q: Question. Express the real part of each of the following signals in the form Ae " cos(wt + ), where…
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Q: Solve for Vo if v1 =10V and v2=5V. Vo = 100 ΚΩ Μ 100 ΚΩ ww V-N 20 ΚΩ w V₁ + 20 ΚΩ 741 Volts. Vo
A: The solution is given below
Q: 8. Compute the Elmore delay for Vout in the 2nd order RC system: R2 n1 R, out FC2 VD
A: Given: Circuit diagram
Q: Consider the signal æ(t) and its Fourier transform X(w) Which of the following is CORRECT O a. #(t)…
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Q: Find all eigenvectors for A = [2 13 3.
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Q: Given two continuous time signals x(t)= et and y(t) = e 2t, which exist for t > 0, the convolution…
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Q: In free space, let D = 8xyz*a, + 6x°z*ãy + 16x?yz a, pC/m². a. Find the total electric flux passing…
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Q: 9. Frequency response can approach that of the ideal filters if we a. Increase the order of filters…
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Q: Hi I will upvote if right! Please find the VCC of the circuit when AV is -200. Thank you!
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Q: -) Considering that D = €0E Using your own words, explain the term €0. (Any copy-paste from any…
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Q: + V1 R1 20 ww 10 V ww R2 40 R3 20 ww + 3 Vo R4 20 ww + Vo R5 40 A B
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Q: 11.69 A balanced three-phase source supplies power to three loads: Load 1: 30 kVA at 0.8 pf lagging…
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Q: bads: Load 1: 18 kVA at 0.8 pf lagging Load 2: 10 kW at 0.6 pf leading Load 3: unknown If the line…
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Q: Example1/ For the circuit shown,if the switch on at t=0, determine Vr, ir and Vs as a function of…
A: In this question we need to find Vr , Vs and Ir as function of time .
Q: Four electrolytic capacitors are connected as shown in the figure. 12.0 V 0.00 A
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Q: A 18 nC charge is uniformly distributed over a spherical shell r = 8 cm and a -6 nC charge is…
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Q: Question. The figure given below is a plot of a sinusoidal wave. From the plot, determine values for…
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Q: 15 +100 V Solve for the voltage at 40° OV -100 V 36.4 V 43.6 V 64.3 V 100 V
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Q: Determine the discrete-time Fourier transform of the signal x[n] = (0.25)¹-¹u[n 1]. O a. X(w) = 1-4e…
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Q: (а) A system, G(s) = is to be controlled by a proportional controller with unity s(s+2)(s+4)'…
A: Solve the problem
Q: R1 20 ww V1 10 V ww R2 40 R3 20 ww 3 Vo R4 20 ww Vo . ww R5 40 m
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- You are an electrician working in an industrial plant. You discover that the problem with a certain machine is a defective capacitor. The capacitor is connected to a 240-volt AC circuit. The information on the capacitor reveals that it has a capacitance value of 10 mF and a voltage rating of 240 VAC. The only 10-mF AC capacitor in the storeroom is marked with a voltage rating of 350 WVDC. Can this capacitor be used to replace the defective capacitor? Explain your answer.Sketch out the fellowing signals: (a=7, b=5, c=8) a-) V = 15a(sin2r1000*ct) b-) V = 3b(cos(7500*ct)+3) c-) Assume that you measure the signal V1 using Digital Volt Meter(DVM) and ossiloscope. What will you read on the DVM display and oscilloscop dispaly when the input voltages are defined as 1-) V = 15a(sin2m1000*ct) 2-) V = 3b(cos(7500*ct)+3) Write down and sketch all the voltages for each case. Show all parameters, including period and maximum values of the signals. aR V AC aR V, aR What will you read at the DVM display when you read the voltages at AC mode What will you read at the DVM display when you read the voltages at DC rangeA series R–L–C circuit comprises a 5µF capacitor, a 4ohm resistor and a variable inductance L. The supply voltage is 10∠0◦ V at a frequency of 159.1 Hz. The inductance is adjusted until the p.d. across the 4 ohm resistanceis a maximum. Determine for this condition (a) the value of inductance, (b) the p.d. across each component and (c) the Q-factor of the circuit.
- The figure below shows a simple RC circuit with a 3.30-μF capacitor, a 4.40-M resistor, a 9.00-V emf, and a switch. What are the following exactly 9.00 s after the switch is closed? (a) the charge on the capacitor 13.7204 UC (b) the current in the resistor 0.0110522 x Your response is off by a multiple of ten. HA (c) the rate at which the capacitor is storing energy μW (d) the rate at which the battery is delivering energy μWCapacitors C1 = 10.33 uF and C2 = 10.77 uF are connected in series. After some time, the engineer decided to connect capacitor C3 = 4.93uF across C1 and C2. Find the total charge, in uC, of the group of capacitors if they are connected across 18.13 V battery.eeeeee t=0 Y. Co) = 15V Ye C4) 0,25MF R In the above circuit, thie switch closes at t= 0. The capacitor is charged to voltage ISV initially. Find the capacitor for the following cases: Ca) R= 8.5k (6) R= 4k () R= 1k * plot the waveforms for each Cuse www
- 4. Find Idc, Vdc and the capacitance that will force the Vr(pp) to 2mV. Draw the output waveform across the capacitor. Fin=60HZ. TX1 D1 Ge Vac Lst 230V Lp 1 RL 12-0-12 Center tapped CL 1k D2 Ge 2Sketch output waveform the following CLIPPER circuits. Please show your solutions/analysis. 20 V 2V ldeal I ka -5 V (a)(b) Find the equivalent inductance of the circuit in Figure Q3(b). 8mH 6mH a 5mH 12mH 8mH ) 4mH 6mH 10mH 8mH Figure Q3(b)
- ISMA 3K un 3K un + Vs 7mH 3√1₂ Im mn SmH -+ 20 V t IMF Vc What is Vs. iz Ve at steady-state?Determine the current in a simple series RL circuit having a resistance of 10 ohms, an inductance of 1.5 H, and an emf of 9 V if initially the current is 6 A.Make a clamper circuit using 500 µF capacitor, silicon diode, and a 100 KΩ resistor connected to a 10 Vpeak sine wave. Draw the output waveform and indicate the amplitude and the time values supported by your solutions. Do these for both positive and negative clamper circuit. Show your circuits first before your solutions and waveforms.