Branch Current Methods EMF’s and resistor value are indicated in figure below. Apply Branch currents method , step by step, use your own words to explain the solutions. Find current through each resistor. Do power analysis to confirm your solutions. İf Va= 0V find potantials of Vb , Vc, Vd, Vf, Vg and calculate Vad, Vfb, Vcg, Vbf=? В D R1=3R. R2 - 4R. %3D E3 = IDE. E2 = 5E. 8E = E1 F A R3 = Ro R4 = 2e, G E4 = E

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Branch Current Methods
EMF's and resistor value are indicated in figure below. Apply Branch currents method , step by step, use your own
words to explain the solutions. Find current through each resistor.
Do power analysis to confirm your solutions.
İf Va= 0V find potantials of Vb , Vc, Vd, Vf, Vg and calculate Vad, Vfb, Vcg, Vbf=?
В
D
R1=3R.
R2 - 4R.
E3 = lDE,
E2 = 5€,
8E,= E1
F
A
R3 = Ro
R4 = 2e,
G
E4 = E
Transcribed Image Text:Branch Current Methods EMF's and resistor value are indicated in figure below. Apply Branch currents method , step by step, use your own words to explain the solutions. Find current through each resistor. Do power analysis to confirm your solutions. İf Va= 0V find potantials of Vb , Vc, Vd, Vf, Vg and calculate Vad, Vfb, Vcg, Vbf=? В D R1=3R. R2 - 4R. E3 = lDE, E2 = 5€, 8E,= E1 F A R3 = Ro R4 = 2e, G E4 = E
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