397 by inspection calculate the power absorbed by the

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Unformatted text preview: nd i3 in the circuit in Fig. 3.87. 30 Ω 3.49 Find vx and ix in the circuit shown in Fig. 3.91. i2 ix 10 Ω 10 Ω i1 Figure 3.87 v | | For Prob. 3.44. e-Text Main Menu 10 Ω vx 4 3A i3 + 120 V − 30 Ω v ∗ + 10 V − For Prob. 3.40. 50 V + − 30 Ω Figure 3.91 | Textbook Table of Contents | + vx − 2Ω 5Ω + − 4 ix For Prob. 3.49. Problem Solving Workbook Contents CHAPTER 3 3.50 Find vo and io in the circuit of Fig. 3.92. 50 Ω Methods of Analysis 3.53 115 For the circuit shown in Fig. 3.95, write the node-voltage equations by inspection. 10 Ω 1 kΩ + vo − io 5 mA + − 10 Ω 4 io 100 V + − 40 Ω 0.2vo Figure 3.92 2A 3.51 4 kΩ v2 2 kΩ 20 mA v3 2 kΩ 10 mA For Prob. 3.50. Figure 3.95 Section 3.6 4 kΩ v1 Nodal and Mesh Analyses by Inspection 3.54 For Prob. 3.53. Write the node-voltage equations of the circuit in Fig. 3.96 by inspection. Obtain the node-voltage equations for the circuit in Fig. 3.93 by inspection. Determine the node voltages v1 and v2 . G1 I1 6A 1Ω v1 G2 v1 v2 4Ω 2Ω 3.52 For Prob. 3.54. For Prob. 3.51. 3...
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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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