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Electrical Circuit Analysis: Nodal Analysis Solutions for Given Circuits, Assignments of Engineering

Solutions to nodal analysis problems for electrical circuits as presented in chapter 16. The solutions include circuit diagrams and mathematical equations to determine voltages and currents.

Typology: Assignments

Pre 2010

Uploaded on 08/30/2009

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Download Electrical Circuit Analysis: Nodal Analysis Solutions for Given Circuits and more Assignments Engineering in PDF only on Docsity! Chapter 16, Solution 34. Consider the following circuit. + Vo(s) − Vo 10/s 2 4+ − Vs s Using nodal analysis, s10 V 4 V 2s VV ooos += + − o 2 os V)s2s(10 1 )2s( 4 1 1V 10 s 4 1 2s 1 )2s(V       ++++=      ++ + += ( ) o2s V30s9s220 1 V ++= = s o V V 30s9s2 20 2 ++ Chapter 16, Solution 35. Consider the following circuit. + Vo − I V1 + − 2/s 2I s Vs 3 At node 1, 3s V II2 1 + =+ , where s2 VV I 1s − = 3s V s2 VV 3 11s + = − ⋅ 1s 1 V 2 s3 V 2 s3 3s V −= + s1 V2 s3 V 2 s3 3s 1 =      + + s21 V2s9s3 )3s(s3 V ++ + = s21o V2s9s3 s9 V 3s 3 V ++ = + = == s o V V )s(H 2s9s3 s9 2 ++ Chapter 16, Solution 36. From the previous problem, s2 1 V 2s9s3 s3 3s V I3 ++ = + = s2 V2s9s3 s I ++ = But o 2 s Vs9 2s9s3 V ++ = 2 2 3 9 2 3 9 2 9 9 o o Vs s sI V s s s + + = ⋅ + + = == I V )s(H o 9
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