For the following circu
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A: From the given step response the value of peak overshoot, peak time, damping factor, natural…
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A: In this question we will find total inductance of single phase line.
Q: Example 13.1. A 2-wire d.c. distributor cable AB is 2 km long and supplies loads of 100A, 150A,200A…
A: It is given that: AB=2kmI1=100 AI2=150 AI3=200 AI4=50 AL1=500 mL2=1000 mL3=1600 mL4=2000 mVA=300 V
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A: here we have to find the currents I1 , I2 , I3 using gaussian elimination and crammer's rule.
Q: (d) Given a vector à = -1+2j-2k in Cartesian coordinate. (i) Sketch vector A
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Q: c) If in figure 2.1 the Q-point is given, VGs = -2 V, IG= 0 mA, VDs = 10 V, IDs = (4.XY) mA, then…
A: DC analysis of the amplifier will here XY=54,VGS=-2V,IG=0mA,VDS=10V,IDS=4.XY mA…
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A: Number of busbar is given n = 200. Total number of generators given as = 40.
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A: here we have to find the mathematical model of the circuit.
Q: For the following circuit: 1. Find V(infinity) 2. Find an expression for v(t) at t > 0. No need to…
A: The given circuit is shown below. The source voltage is defined as 50u-t=0, t>050, t<0 Volts.
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A: We need to find out the dot product of given vector.
Q: Determine the input resistance (Rin Vin/Iin) of the circuit shown = R₁ + Vin R₂ R₂ Vout
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A: It is given that: Cs=1s9s2+6s+9=9ss+3s+3
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A: Vrms=20 Volts. NPNS=21
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Q: 2. An electric train runs between two substations A and B 10 km apart maintained at voltages 600V…
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Q: generator has maximum power of 60 MW, 60 HZ, efficiency of 50% and load factor of 0.4 .
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Q: Figure below shows one-line diagram of a simple three bus power system with generation at bus 1. Bus…
A: V1= 1 pu V20 = 1+ j 0 V30 = 1+ j 0 Power at bus 2 are P2 =250 MW Q 2 =110 MVAR Power at bus 3 are…
Q: Determine the N-point DFT of the finite sequence for N≥ (1,0 ≤ n ≤L-1 0, elsewhere x(n) =
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Q: Q2) Give the cases when there is no reflection and total reflection. 2011
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Q: Problem /Zin(jo) Vs. 0. Zin For the circuit shown in Fig.3, plot | Zin(jo) | and 80 m.H 000 100 mH…
A: Since you have posted multiple questions, we will provide the solution only to the first question as…
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Q: Determine the input impedance of the circuit in Fig. 9.24 at = 10 rad/s.
A: It is given that:
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Q: Use mesh analysis to determine current in the circuit below
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A: Step-1->
Q: A balanced wye connected load of 15 - 20j ohms per phase is connected to a 440V 3 phase source. Find…
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Q: 1 C ► TF 2V
A: “Since you have posted multiple questions, we will provide the solution only to the first question…
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Q: Consider the circuit shown in (Figure 1). Take υ = 160 V. Figure 1 10 Ω m 30 Ω ww 100 Ω 20 Ω m (…
A: Step-1-> Given circuit,
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Q: The three-phase balanced load in Fig. 12.35 has impedance per phase of Zy = 8 + j6 f. If the load is…
A: It is given that: ZY=8+j6 ΩVL=208 V From the impedance expression, The given load is a balanced star…
Q: A resistor is connected to a 3.0 V battery; the power dissipated in the resistor is 1.0
A: According to the question, A resistor is connected with 30V battery supply Let the value of Resistor…
Q: Find the average value of signal shown below x(1) +3 # 70 π/2 a)-0.66 b) 0 37/2 c) 0.25 2f t d) none
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Q: An uncharged capacitor and bulb are connected in series with a battery. Describe and explain what…
A: An uncharged capacitor and bulb are connected in series with a battery as shown below,
Q: 602 www RAZ + V4 R5 202 iG₁6 V + V6 + www R6 302 V3 =μV4 - 12 2A
A:
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- 5. Suppose the following circuit is left open for a long time. 5000 22 24 V (a) What is the facial curren What is the carte II What is the ches What is the not the pos 80mF when we close thei 90s after we close the switch? dissipe the resistor 90s arter ene capacitor ons after we close the suit Close the switchi difference across the spacitor 008 after we close the switch across the resisto we close the swit 12 the potential (g) What is the energy stored in the capacitor 90s after we close the switch? (h) What is the energy dissipated by the resistor during the first 90s since the switch is closed?Determine the current through the 260mH inductor in the circuit shown in the figure and choose the solution from the options given. 0.7, ángulo de -2.9° 0.9, ángulo de -19.8° .52, ángulo de -23.1° 0.338, ángulo de 303⁰ 65 Ω 85mH 150 sin(2π 100t) mn 200 Ω 260mH 28 75 카 120 Ω 50uFGiven: L1 = 17 mHL2 = 21 mHL3 = 0.014 HL4 = 11981 mHL5 = 89 uH Calculate the total inductance of the circuit, LT.
- Calculate the difference A B if A=10236.87 and B=10453.13°. Show your solution graphically.Power factor 90 to 100% 88 to <90% 85 to <88% 80 to <85% 75 to < 80% 70 to < 75% 65 to < 70% 60 to <65% 55 to <60% 50 to <55% Less than 50% Surcharge None 2% 4% 9% 16% 24% 34% 44% 57% 72% 80% Use the table given for the following. A house with inductive loads has an avg consumption of 40kW and 26kVAR is supplied 230 Vrms source. We want to make the surcharge 0% by adding a capacitor. a. What is the smallest kVar of the capacitor that would reduce the surcharge to 0%?Fundamentals of Electrical Engineering 2020/2021 Dr. Yaseen H. Tahir xample: (example 15-3, page 388, David) (H. W.) A 1 MF capacitance is to be constructed from rolled-up sheets of aluminum foil separated by a layer of paper 0.1 mm thick. Calculate the required area for each sheet of foil if the relative permittivity of the paper is 6. Jution:
- 152130 222 Ⓒ520° Fj² 7 Find voltage drop Mutual inductance Majt = + {1.2 V. on 12 resistance Nex (the same for allConsider the circuit shown below. b) a) What is the current through 220 22 when the 2N4441 is conducting? What is the capacitor voltage that will turn on the 2N4441? What is the minimum voltage that can turn-off the 2N4441? c) 0.2 μF 2.2 1 kQ 1N752 VB = 10 V 9+25 V 220 2N4441 V₁ = 1 V IT = 7 mA IH= 5 mAFundamentals of Electrical Engineering 2020/2021 Dr. Yaseen H. Tahir xample: (example 15-3, page 388, David) (H. W.) A1 MF capacitance is to be constructed from rolled-up sheets of aluminum foil separated by a layer of paper 0.1l mm thick. Calculate the required area for each sheet of foil if the relative permittivity of the paper is 6.
- The equation of v2 in the figure shown is * F 3sin1667nt volts O 1.5sin5236t volts None of the given option 3sin(5000π/3)t volts O 1.5sin1667t volts P1 V2 H₂ = 200μs/div and V₂ = 0.5V/divtermining the impedance and current of the system, the voltage across the resistor, and the voltage across the inductor. Could you please forward the response as a print of a handwritten answer? I got these two answers earlier. Which of them would be correct Impedance Z= (1000 + j 90.836) ohm Current I= 0.219∠-5.19° A Voltage across resistor VR = 219.097∠-5.19° V Voltage across inductor VL = 165.195∠84.81° V Impedance will be Z= 1004.052 ∠ 5.12° Current will be i = 0.221 ∠ -5.19° A. Volatge across resistor will be VR = 211.9∠ -5.19° V Volatge across inductor will be VL = 165.12 ∠ 84.81°VA series RL circuit is not switched on. In the circuit voltage source E = 50 V DC. Resistance R = 70 and inductance L = 100.0 mH. E k i R L Give the answers to two decimal places. a) Give time constant Tau of circuit ms b) Calculate current after the switch k is closed at the moment t-17.1 ms. A c) Calculate current after the switch k is closed at the moment 3*Tau. A