Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Modify the circuit in the figure considering that the Thévenin source can give a maximun current of 20μA and through the transistor a maximum current of IC (max) = 5mA can circulate. Consider that the voltage of Thévenin Vth = 5V and that R2 = 100Kohms.arrow_forward2.35 Find (a) io, (b) iy, and (c) iz in the circuit in Fig. P2.35. PSPICE MULTISIN Figure P2.35 12 Ω + σε ΟΔ 18 V 6ΩΣύς 12 Σ10Ω Σ5Ωarrow_forwardPlease in typing format please ASAP for answer in typing format please ASAParrow_forward
- *2.61 Find Req for the circuit in Fig. P2.61. 18 Ω 6Ω 36Ω 1892 6Ω 92 1Ω M 18 Ω Figure P2.61: Circuit for Problem 2.61. Reqarrow_forwardP2.17. Find the Thévenin and Norton equivalent circuits for the two-terminal circuit shown in Figure P2.17. 10 Ω 10 V 5Ω 1 A Figure P2.17arrow_forwardPRACTICE PROBLEM2.13 For the circuit shown in Fig. 2.45, find (a) v and v. (b) the power dis- sipated n the 3-k and 20-k resistorS. and (c) the power supplicd by rhe current source. 1 k2 3 K2 10 mA 20 k2 ww wwarrow_forward
- Find the value of current i o in figure P2.35 using WITHOUT USING PSPICE.arrow_forwardFind Vs in the circuit in Fig. P2.38, if VBE = 18 V. Vs A 1+ E R₁ = 3kQ www VBE B R₂ = 2KQ C I R₁ = 1kQ Figure 1 +12 V Darrow_forwardI hope the solution is in a clear picture and a white paper with a lot of thanks.arrow_forward
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