4) Determine voltages v1 through v3 in the circuit using nodal analysis. 2 A Vi www 2% 2 S www 1 S V2 8 S www V3 + 1° 1 www 4 S 13 V
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A: Summary of ValuesXL=326.73ΩXC1=153.2ΩXC2=306.4ΩXS=173.53ΩXP≈135.18ΩZT≈168.05Ωθ≈53.5∘
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- A 50 Hz high voltage Schering bridge is shown in the figure. The component parameters are as follows under balanced condition: Cs-150 microfarad, C2-0.677 microfarad, R2-634 ohm, and R1-168 ohm. Find the dissipation factor of the tested material. 220V rms Lütfen birini seçin 0.1340 b.0.1672 E0051 0.0.0749 e.0.1128 88888888 00000000 25 kV rms R R₁ R₂ II (C₂ 12²Can you please draw me the phasor diagram for this circuit. I think it should look similar to the second pic but not sure. Thank you I will likeConvert the voltage sources in to current sources. a. Find the voltage Vab and the polarity of points a and b. b. Find the magnitude and direction of the current I3. 13 R30 R2 R3360 12 NR4 ab + E E9V E 20 V
- 7. Find all currents in the circuit below (IT, 11, 12, 13, 14 and 15). Hint: you might want to use Delta to Wye or Wye to Delta conversion. 136 V 业 t 13.068 B WI R₁ 10 ΚΩ R₁ R3 www 22 ΚΩ 12 kn R₂ 39 ΚΩ C www R5 9.1 ΚΩTask 3 A three phase, four wire star connected load consisting of: ZR: a resistor of 9500 in series with a 3H inductor ZB: a resistor of 1950 ZY: a resistor of 1950 in series with a 4µF capacitor Using the equipment available in the power lab (Room T017), connect the given load to a three-phase supply available in the lab and: 3.1. Determine the current of each line and the neutral current and measure the total power supplied by the source. 3.2. Analytically, calculate all currents and the total power and compare with those obtained in measurements. 3.3. Device a method and measure the waveform of the neutral current. Discuss the obtained waveform and the reason for any distortion in the waveform 3.4. Validate your calculations using computer simulationExplain these diagrams simply for someone who doesn’t understand