3103 calculate the voltage vo textbook table of

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Unformatted text preview: 2V Figure 3.99 3.58 If the Schematics Netlist for a network is as follows, draw the network. R_R1 R_R2 R_R3 R_R4 R_R5 V_VS I_IS F_F1 VF_F1 E_E1 1Ω +− 1Ω Use PSpice to solve the problem in Example 3.4. 3.64 4Ω 3V For Prob. 3.57. By inspection, obtain the mesh-current equations for the circuit in Fig. 3.100. 3.65 R1 R2 i1 V1 + − R3 R4 V2 R6 i3 + − i4 Section 3.9 3.66 +− R7 R_R1 R_R2 R_R3 R_R4 V_VS I_IS +V 4 − R8 io Section 3.8 For Prob. 3.58. 3.60 Use PSpice to solve Prob. 3.22. 3.61 Rework Prob. 3.51 using PSpice. v | e-Text Main Menu 3 3 2 0 3 0 0 0 20 50 70 30 20V DC 2A 4 kΩ vo 100 Figure 3.102 3.67 100 4 2 Applications 3 mV + − Use PSpice to solve Prob. 3.44. v 1 2 2 3 1 2 + + − Circuit Analysis with PSpice 3.59 | 2K 4K 8K 6K 3K DC DC VF_F1 0V 1 Calculate vo and io in the circuit of Fig. 3.102. V3 Figure 3.100 2 0 0 4 3 0 1 3 0 2 The following program is the Schematics Netlist of a particular circuit. Draw the circuit and determine the voltage at node 2. R5 i2 1 2 3 3 1 4 0 1 5 3 50io 20 kΩ vo − For Prob. 3.66. For the simplified transistor circuit of Fig. 3.103, calculate the voltage vo . | Textbook Table of Contents | Problem Solving Workbook Contents CHAPTER 3 Methods of Analysis 1 kΩ 3.71 i 400i 30 mV + − 2 kΩ Figure 3.103 3.68 Calculate vs for the transistor in Fig. 3.107 given that vo = 4 V, β = 150, VBE = 0.7 V. 1 kΩ + vo − 5 kΩ 117 10 kΩ...
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