R=59 3 4 R = 30 Ω www R=79 ww R = 180 ww 2 5 R = 350 ww R = 100 R = 50 ww 1 OV₁ = 10 volts OV6 = 200 volts 6 Answer the following questions: (a) Using Ohm's and Kirchhoff's laws, write down the linear equations of the system above and convert them into matrix form.

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R = 30 N
R = 35 N
3
2
1
OV, = 10 volts
R = 7 N
R = 5 N
R = 10 N
R = 18 N
R = 5 N
OVs = 200 volts
4
5
Answer the following questions:
(a) Using Ohm's and Kirchhoff's laws, write
down the linear equations of the system
above and convert them into matrix form.
(b) Use a numerical method to find the
values of the currents in the circuit.
Note: for part (b) use Newton's Elimination
method and LU decomposition to an
accuracy of three decimal places.
(c) Use the numerical method to find the
inverse of the matrix of the system above
and conclude your calculations about the
2/3
system above.
Note : for part (c) use the Gauss-Jordan
method and LU decomposition to an
accuracy of three decimal places.
Transcribed Image Text:R = 30 N R = 35 N 3 2 1 OV, = 10 volts R = 7 N R = 5 N R = 10 N R = 18 N R = 5 N OVs = 200 volts 4 5 Answer the following questions: (a) Using Ohm's and Kirchhoff's laws, write down the linear equations of the system above and convert them into matrix form. (b) Use a numerical method to find the values of the currents in the circuit. Note: for part (b) use Newton's Elimination method and LU decomposition to an accuracy of three decimal places. (c) Use the numerical method to find the inverse of the matrix of the system above and conclude your calculations about the 2/3 system above. Note : for part (c) use the Gauss-Jordan method and LU decomposition to an accuracy of three decimal places.
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