The analysis of the voltage, V for the circuit given in Figure Q4 can be expressed in the following three equations: R,(i, – i2) + R_(i, – i,) = V,la Rzi, + Rą(i, – iz) + R;(i, – i4) = V_la Rsia + R4(iz – i2) + R2(iz – i4) = V½la where R is the resistance and i is the current. Analyze the system of linear equations above for i1, iz, and i, by using Gauss elimination method with pivoting.

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Q4 The analysis of the voltage, V for the circuit given in Figure Q4 can be expressed in the
following three equations:
R, (i, - i,) + R2(i, - i2) = V,la
Rzi, + R,(i, – ig) + R,(i, - i,) = V,la
Rşiz + R4(iz – iz) + R2(iz – i) = Vala
where R is the resistance and i is the current. Analyze the system of linear equations above
for i,, iz, and iz by using Gauss elimination method with pivoting.
OV
100
200
Va
200LV
12
V2
R.
OV
100
R5
300
250
Figure Q4
Transcribed Image Text:Q4 The analysis of the voltage, V for the circuit given in Figure Q4 can be expressed in the following three equations: R, (i, - i,) + R2(i, - i2) = V,la Rzi, + R,(i, – ig) + R,(i, - i,) = V,la Rşiz + R4(iz – iz) + R2(iz – i) = Vala where R is the resistance and i is the current. Analyze the system of linear equations above for i,, iz, and iz by using Gauss elimination method with pivoting. OV 100 200 Va 200LV 12 V2 R. OV 100 R5 300 250 Figure Q4
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