Find node voltages v1(t) and v2(t) in the sinusoidal steady state using nodal analysis. v1 R1 1 ohm V1 cos(t)V L2 1H v2 C1 1F
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- Given the circuit, solve for:a. Total currentb. Total apparent powerc. Total real powerd. Total reactive powere. pf of the circuitPlease, I need a complete solution. I promise to give it a thumbs up! :)NOTE: Polar form for Voltage & Current. Rectangular form for Impedance Find the total impedance of the circuit, total power (apparent) delivered by the current source, Draw the phasor diagram of the voltage and current at the source, the current passing through the R2 and L1 branch, Draw the phasor diagram of the voltage and current at the R2 and L1 branch. Also, is the circuit inductive, capacitive, or neither (resistive)?transform the circuit in phasor domain representation a) Determine the value of branch current, I1 and I2b) Determine the value of voltage across resistor, R1, R2 and R3c) Determine the value of voltage across capacitor, C1 and C2d) Determine the value of voltage across inductor, L.
- Describe the Step-by-step procedure for steady-state analysis of circuits with sinusoidal sources.What condition must be true of the sources. Please answer in typing format and don't copy paste from AI and short answerfor a resistance and capicitance in a series with a voltage source, show that it is possible to draw a phasor diagram for the current and all voltages from magnitude measurment of these quantities only .illustrate your answer graphicallyYou have been asked to investigate the loading effects on an alternator supplying a load and also charging a car battery at the same time. The output of the alternator has been rectified to smooth dc, and the circuit is shown below. Using Kirchhoff analysis, determine the initial current in each section along with its direction and the potential difference across the load.
- In the circuit shown in the figure, there is a load between the terminals a and b, consisting of the series connection of the resistor R0 and the inductance L0. The amplitude of the voltage Vs (t) is two root hundred and fifty phase angle Qs = zero degree period T = 200 PI microseconds. Since R = 300 ohms C = 1 nano F. a) Find the values of R0 and L0 that enable the load to draw maximum average power from the circuit b) Calculate the complex power on the load.True Fuels If the dumping ratio is between 0 and 1, the system poles are complex conjugates. The To Workspace Sink Block like the To File Sink Block, the time is not saved in the variable, and must be stored separately ir the damping Mactor/is zero, the unit-step kesponse is a Pufey sinusoidal.2. Using your values for Vps, Vind, VR, Vr, and V₁ from the Data and Calculations Tables above, construct and draw phasor diagrams on the attached graphical page below for each of the LR1, LR2, LR3, and LR4 circuits in Part 2. Be sure to appropriately label ALL the rms potentials.
- 1 In the system shown in the below figure, the switch is closed at t = 0. a Determine voltage reflection coefficient at the load and the source b. Sketch the bounce diagram of the VOLTAGE and the CURRENT and give sufficient information on it (up to 4us) C. Sketch diagram of voltage and current at source and load Mittetu Md. Calculate the steady state Vss. Vss and Iss. Iss opinti 15 Wan httons e. Find the value V(z-50m 1.7us) TERS Wertens atom Dett th will MARRI E yo w B pinn WERS THIS Suprin 90 MAKEL R₂=90 0 3 CAP 180. Rr = 180 Q - i T Mart 1800 H SUS Vg=90 V HIE 1 D = min 200 thin 1 FARG - Bilare. Radio T 149 SATISH SET Pan PARACHUNG G IN Sulta Ap 135 aytinius - FORES exotic Me GALER 2 Mer t=0 400 NITINE atas Aper SUMB satan THE SIM- " WAS Thy POST ANE nicht www.M upp 6 HIS 328 20 p Hifiq Z. = 60 52 WHAT p=10m/s 459 w 30 Patie SATE 108 1 = 100m MNA ACalculate the steady state currents flowing through inductors L₁ and L₂ and the steady state voltage across capacitor C in the circuit L₁ mm Vs = 20 V L₁ = 4 mH R₁ = 1 A R₂ = 3 L₂= 7 mH C = 6 4F shown below: Ri wwwww HH CQuestion 17) Read the question carefully and make your solutions. According to the figure given below, Find the steady-state expressions for the currents and in the circuit in figure when Vg=200cos(800t). 8002 240 mH 400 mH 400 mH M 100 Q