Write a matrix equation that determines the loop currents. 24 V 192 452 $252 Ω 18 V 592 m 3 Ω 14 V 1₁ 1₂ 13 14 352 26 V 252 H 17 V 3 Ω 392 32 Ω 33 Ω €292 *** For each matrix, let row 1 correspond to loop 1, row 2 correspond to loop 2, and so on. Also, enter positive values for positive voltages and negative values for negative voltages. 1₁ 12 13 ¹4 11
Write a matrix equation that determines the loop currents. 24 V 192 452 $252 Ω 18 V 592 m 3 Ω 14 V 1₁ 1₂ 13 14 352 26 V 252 H 17 V 3 Ω 392 32 Ω 33 Ω €292 *** For each matrix, let row 1 correspond to loop 1, row 2 correspond to loop 2, and so on. Also, enter positive values for positive voltages and negative values for negative voltages. 1₁ 12 13 ¹4 11
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determines the loop currents.
24 V
51 Ω
ww
452
2 Ω
18 V
1592
M
mys
€3Q2
14 V
1₁
1₂
13
14
352
H
26 V
252
17 V
3 Ω
3Q2
292
392
292
...
For each matrix, let row 1
correspond to loop 1, row 2
correspond to loop 2, and so
on. Also, enter positive values
for positive voltages and
negative values for negative
voltages.
1₁
12
13
4
||"
Transcribed Image Text:Write a matrix equation that
determines the loop currents.
24 V
51 Ω
ww
452
2 Ω
18 V
1592
M
mys
€3Q2
14 V
1₁
1₂
13
14
352
H
26 V
252
17 V
3 Ω
3Q2
292
392
292
...
For each matrix, let row 1
correspond to loop 1, row 2
correspond to loop 2, and so
on. Also, enter positive values
for positive voltages and
negative values for negative
voltages.
1₁
12
13
4
||
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