1. Find the voltage across the R3 by using the node analysis method. Calculate Víа (V₁ - Vα) without using PSPICE. (V+ a ww R₁ R₂ 2 w R₁ R3 d т- R,
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Q: 1. Find the voltage Vo in circuit 1. 6V + 1 + VA 4 ΚΩ 2VA 8 ΚΩ W Figure 1: Circuit 1 Vo
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Q: What is the right answer for part D
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- for the given circuit find p & q for the load as shownJust like resistors, impedance values can be combined in series or in parallel. We combine them in the same way as combining resistors, i.e., for the series connection: Zeg Z1+22+ Z3+.... For the parallel connection: Zeq = (Z+Z+Z3+...) What is the equivalent impedance of the following circuit? (Hint: you can use scientific calculator or MatLab to perform calculations involving complex numbers.) L 50 £2 300 1000 MO 400 200 102.2+19.8j O 102.2-19.8j -102.2+19.8j O-102.2 19.8jIn the given circuit, what is the expression obtained for Ig? Transform all independent current sources to voltage sources. BlB Vo RE RC Icc IN RN Multiple Choice INRN-V IB Ry+(B+1)Rg (B+1)Rg IŅRN IB IB = (B+1)Rg INRN-V, V.-INRN (B+1)Rg IB
- Three impedance Za= (3+j4) ohms, Zc= (4-j4) ohms and Zr=0+j3 ohms are connected in parallel. Solve for the pf of the combination.In the given circuit, what is the expression obtained for /B? Transform all independent current sources to voltage sources. BlB Vo IN (4) RN RE RC Multiple Choice (B+1)Rg INRN IB IB V.-INRN (B+1)Rg INRN-V. IB Ry+(B+1)Rg (B+1)RE INRN-V, IBPlease solve these questions with proper descriptions.If you need extra hours,take it.But answers should be elaborate.Thank you.
- B2Solve the power triangle at Z6 using the following network law below.1.) Kirchoff's LawGiven:V1 = 240∠0° V, 60 HzV2 = 180∠0° V, 60 HzV3 = 200∠0° V, 60 HzZ1 = 5+j6 ohmsZ2 = 3-j6 ohmsZ3 = 10+j12 ohmsZ4 = 8+j4 ohmsZ5 = 2+j3 ohmsZ6 = 5+j10 ohmsNote: Please include a step-by-step explanation. Thanks!!!#18 please choose the correct answer
- Please answer in typing format please ASAP for the like please clear the Please answer asap for the like pleaseObtain sum of minterms form for the following equation.a. F = A+BC’+ACb. F = A’B+B+CD’Use nodal analysis to calculate the node voltages in phasor form, and va(t) in steady state for the circuit below with R1=2Ω, R2=4Ω, C1=0.125F, L1=1H, vs(t)= 80cos(4t-600) V and is(t)= 5cos(4t-200) A.