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 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 jwL27Can 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 like
- Convert 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 VUSING 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 27Question is in image provided.
- For the series-parallel network below caluate the following. Express your answer in polar notation R₂ www 202 E = 30 V / 0° Z Z₁ = Is= Ic= VL= pf = + I R₁ www 3 Ω ZT V N 2 2 + V₁ moo X₁ = 60 lagging or leading Xc 8 Ω Ic o units º units o units º units7. 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 ΚΩUsing the format approach, write the nodal equations for the networks in Figure. Using determinants, solve for the nodal voltages. R₁ W ΖΩ 5A SA11 R₁ R₂40 50 3 A
- 3&page%3D1 American Uni. Girne American Uni.. O portal.gaueng.org My Profile - Zoom Dashboard My Courses This course Find the Norton equivalent of the circuit 60 30 40V ,50 202 A BI E E E E ere to searchUse nodal or loop analysis to find the voltage Vc for the circuit below. Jexpj0. -j2n HE Ve j4n 3Ω -j10VUSING NODAL THEOREM Please calculate branch currents la, Ib, Ic, Id, le and node voltages at nodes 1 and 2 using Nodal Theorem.

