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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- please teach me how to use Kirchoff's lawA 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 12²Electrical Principles - Reactance 2. Answer the following question Draw the phasors la, Ib, I, VL, and Vs taking VL as reference phasor R₁ jwL1 + Vs I + VL R₂ Ia jwL27
- For the circuit given in Figure 1, a) Find the Thevenin equivalent circuit with respect to terminals a-b b) When a 5000 resistor is connected to terminal a-b, find the voltage on the resistor wwwwwwmm c) It will be connected to a-b terminals and its voltage on 5000 load will be 132 kV rms. What should be the capacitive reactance value that will increase it? wwwwwwwww d) What happens to the short-circuit current when the a-b terminals are short-circuited? 2+1202 000 m da 127/6 kV rms ob 1.5 +/902 000 w 12725 kV msPlease show complete solution. Please check the circuit/ figure. Find the following: V1 V2 V3 V6 R45 R2345 Itotal I2 I1 Vtotal[Q3] Analyze the following electrical circuit with mesh analysis by finding the currents using Gauss-elimination method 10 Q 15 Q 25 0 20Q 35Q - 1000 V 1000V 2000 V 2000 V 30 2 40 Q
- For the circuit given in figurese lNode Voltage Aralysis and find the voltage and turrant across R4. R2 Node 1 R4 Node 2 R6 5k Vs1 2V 6k VS2 - RS 9K R1 7K 3V R3 8K Fgures Stepn Equation ode 1 Equation Node 2 4 Value for Node 1 Voltage VNI Value for Node 2 Voltage VN2 Voltage Are R Carrent Across RACan 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 likeUSING NODAL ANALYSIS SOLVE THE CURRENT THROUGH EACH IMPEDANCES. Z1 Z2 23 Z5 V1 V2 Z1 = 1+j2 Z2 = 2-13 Z3 = 3 + j4 Z4 = 4-j5 V1 = 12 V2 = 18 25 = 5+j6 Z6 = 6-j7 27 = 7+j8 Z6 Z4 27