66 319 2a for prob 318 2s 4s 2s 4a determine v1 and

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Unformatted text preview: Prob. 3.16. 8Ω + vo − + − Figure 3.64 +− 2Ω 40 V 3io For Prob. 3.12. Using nodal analysis, find vo in the circuit of Fig. 3.61. 1Ω + 13 V − 4S For Prob. 3.15. 60 V + − Figure 3.60 v3 Using nodal analysis, find current io in the circuit of Fig. 3.64. v2 +− 4Ω 8Ω 3.16 + vo − 1S 8S v2 +− 2A For Prob. 3.11. 2Ω 2vo v1 Calculate v1 and v2 in the circuit in Fig. 3.60 using nodal analysis. v1 2S i2 40 Ω Figure 3.59 Determine voltages v1 through v3 in the circuit of Fig. 3.63 using nodal analysis. 30 Ω i1 24 V + − 3.15 e-Text Main Menu Figure 3.65 | Textbook Table of Contents | For Prob. 3.17. Problem Solving Workbook Contents CHAPTER 3 3.18 For the circuit in Fig. 3.66, find v1 and v2 using nodal analysis. Methods of Analysis ∗ 3.22 111 Use nodal analysis to determine voltages v1 , v2 , and v3 in the circuit in Fig. 3.70. 4 kΩ 4S 3vo 2 kΩ v1 −+ + vo − 1 kΩ 3 mA 3io v2 1S v1 1S v2 v3 io Figure 3.66 3.19 2A For Prob. 3.18. 2S 4S 2S 4A Determine v1...
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This note was uploaded on 07/16/2012 for the course KA KA 2000 taught by Professor Bkav during the Spring '12 term at Cambridge.

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