1. For the circuit in Fig. below, using nodal analysis obtain io, nodal voltages and branch currents using Nodal Analysis. 2. Solve the nodal equations using Octave. Write an Octave script file 3. Simulate the circuit using LTSpice. Compare the results obtained analytically and by Octave. 4. The document should be presented in MS word. It is obligatory to be written in Times New Roman 12 and titles in bold 14. 5. In due time the word document and the script file in Octave should be sent attached to the Google classroom. 4Ω 60 V wwwwww 10 S2 www www 222 310 892 I

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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1. For the circuit in Fig. below, using nodal analysis obtain io, nodal voltages and branch
currents using Nodal Analysis.
2.
Solve the nodal equations using Octave. Write an Octave script file
3. Simulate the circuit using LTSpice. Compare the results obtained analytically and by
Octave.
4. The document should be presented in MS word. It is obligatory to be written in Times
New Roman 12 and titles in bold 14.
5.
In due time the word document and the script file in Octave should be sent attached to
the Google classroom.
4Ω
60 V
wwwww
10 Ω
ww
Fig. 1.1
202
ΖΩ
Bio
892
I
Transcribed Image Text:1. For the circuit in Fig. below, using nodal analysis obtain io, nodal voltages and branch currents using Nodal Analysis. 2. Solve the nodal equations using Octave. Write an Octave script file 3. Simulate the circuit using LTSpice. Compare the results obtained analytically and by Octave. 4. The document should be presented in MS word. It is obligatory to be written in Times New Roman 12 and titles in bold 14. 5. In due time the word document and the script file in Octave should be sent attached to the Google classroom. 4Ω 60 V wwwww 10 Ω ww Fig. 1.1 202 ΖΩ Bio 892 I
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