Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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Textbook Question
Chapter 9, Problem 29P
Find the Norton equivalent circuit for the network external to the 300
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Show ALL calculations for the following.
a. Find the Norton equivalent circuit for the network
external to the resistor R.
E9V
+₁
R₁
3 Ω
R₂ ≤60
a
b
www
RL
PROBLEM #7
FOR THE NETWORK
THE NETWORK HAS AN EQUIVALENT RESISTANCE
USE A S-Y CONVERSION.
100%
m
4252
MR
2002
W
682
SELECT A VALUE OF R SUCH THAT
OF 70.65.
HW
• 1-
a. For the network of Fig. 9.136, determine the value of
R for maximum power to R.
b. Determine the maximum power to R.
c. Plot a curve of power to R versus R for R equal to .
1, 14, 14, 14, and 2 times the value obtained in
part (a).
SA R4n
24 V
FIG. 9.136
*4.75 For the circuit in Fig. 4.141, determine the value of
R such that the maximum power delivered to the
load is 3 mW.
R
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RL
IV
Chapter 9 Solutions
Introductory Circuit Analysis (13th Edition)
Ch. 9 - (a) Using the superposition theorem, determine the...Ch. 9 - a. Using the superposition theorem, determine the...Ch. 9 - Using the superposition theorem, determine the...Ch. 9 - Using superposition, find the current l through...Ch. 9 - Using superposition, find the voltage VR3 for the...Ch. 9 - Using superposition, find the voltage V2 for the...Ch. 9 - Using superposition, find the current through R1...Ch. 9 - Using superposition, find the voltage across the...Ch. 9 - a. Find the Thévenin equivalent circuit for the...Ch. 9 - a. Find the Thévenin equivalent circuit for the...
Ch. 9 - a. Find the Thévenin equivalent circuit for the...Ch. 9 - Find the Thévenin equivalent circuit for the...Ch. 9 - Find the Thévenin equivalent circuit for the...Ch. 9 - Find the Thévenin equivalent circuit for the...Ch. 9 - a. Find the Thévenin equivalent circuit for the...Ch. 9 - Determine the Thevénin equivalent circuit for the...Ch. 9 - a. Determine the Thévenin equivalent circuit for...Ch. 9 - For the network in Fig. 9.142, find the Thévenin...Ch. 9 - For the transistor network in Fig. 9.143. a. Find...Ch. 9 - For each vertical set of measurements appearing in...Ch. 9 - For the network of Fig.9.145, find the Thévenin...Ch. 9 - a. Find the Norton equivalent circuit for the...Ch. 9 - a. Find the Norton equivalent circuit for the...Ch. 9 - Find the Norton equivalent circuit for the network...Ch. 9 - Find the Norton equivalent circuit for the network...Ch. 9 - Find the Norton equivalent circuit for the network...Ch. 9 - Find the Norton equivalent circuit for the network...Ch. 9 - Find the Norton equivalent circuit for the network...Ch. 9 - Find the Norton equivalent circuit for the network...Ch. 9 - a. Find the Norton equivalent circuit external to...Ch. 9 - a. Find the value of R for maximum power transfer...Ch. 9 - a. Find the value of R for maximum power transfer...Ch. 9 - a. Find the value of R for maximum power transfer...Ch. 9 - a. Find the value of RL in Fig.9.142 for maximum...Ch. 9 - a. For the network of Fig. 9.147, determine the...Ch. 9 - Find the resistance R1 in Fig.9.148 such that the...Ch. 9 - a. For the network in Fig.9.149, determine the...Ch. 9 - For the network in Fig. 9.150, determine the level...Ch. 9 - Using Millmans theorem, find the current through...Ch. 9 - Repeat Problem 38 for the network in Fig.9.152....Ch. 9 - Using Millmans theorem, find the current through...Ch. 9 - Using the dual of Millmans theorem, find the...Ch. 9 - Using the dual of Millmans theorem, find the...Ch. 9 - Using the substitution theorem, draw three...Ch. 9 - Using the substituion theorem, draw three...Ch. 9 - Using the substitution theorem, draw three...Ch. 9 - a. For the network in Fig. 9.159(a), determine the...Ch. 9 - a. For the network of Fig.9.16(a), determine the...Ch. 9 - a. Determine the voltageV for the network in...Ch. 9 - Using PSpice or Multisim and the superposition...Ch. 9 - Using PSpice or Multisim, determine the Thévenin...Ch. 9 - a. Using PSpice, plot the power delivered to the...Ch. 9 - Change the 300 resistor in Fig. 9.145 to a...
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- HW • 1- a. For the network of Fig. 9.136, determine the value of R for maximum power to R b. Determine the maximum power to R. c. Plot a curve of power to R versus R for R equal to . 1,14, 14, 1, and 2 times the value obtained in SA R40 24 V part (a). FIG. 9.136 *4.75 For the circuit in Fig. 4.141, determine the value of R such that the maximum power delivered to the load is 3 mW. Rarrow_forwardQ13. Find vx in the circuit shown. A) B) 4 V 5 V C) -2 V D) 2 V E) 3 V 10V +1 202 + V₂ 4Q Luv 40 www 100 100 www 1Qarrow_forward1- a. For the network of Fig. 9.136, determine the value of R for maximum power to R. b. Determine the maximum power to R. c. Plot a curve of power to R versus R for R equal to R40 SA R,40 R E+ 24 V 1, 1, 1, 1 and 2 times the value obtained in part (a). FIG. 9.136 *4.75 For the circuit in Fig. 4.141, determine the value of R such that the maximum power delivered to the load is 3 mW. ww www R1. 02 V 3 V wwarrow_forward
- :In the circuit in Fig shown below, V is 10 V + 12 V (+ 8 V + v - +1+)arrow_forwardFor the shown values and polarities provided, using SUPERPOSITION: a. Find the contribution to Vx from the voltage source only b. Find the contribution to V3 from the current source only 5000 5002 + 9V Vx 1 6mA 1kQ 5002arrow_forwardSolve for the voltage and current at 8 ohm resistor using Thevenin’s Theorem.a) Vth b) Rth c) Thevenin Equivalent Circuit (with complete values) d) voltage at 8 ohm resistor e) current at 8 ohm resistor f) Norton Equivalent Currentarrow_forward
- (1) plot the curve of the power against the load resistance and determine the maximum power (The maximum power transfer theorem states that, to obtain maximum external power from a source with a finite internal resistance, the resistance of the load must equal the resistance of the source as viewed from its output terminals)arrow_forwardFor the circuit below, use nodal analysis to determine v1 and v2 . Likewise, compute the power absorbed by the 6-Ωarrow_forwardKirchhoff's current law (KCL) is mostly to be applied to a circuit that are mostly closed to have multiple elements. Select one: True Falsearrow_forward
- Circuits Determine Vx using Mesh Analysis. Give the step-by-step solution.arrow_forwardYou are required to analyze the circuit given below, using Thevenin's theorem. You can use any technique to simplify the circuit if required (without disturbing Vo). Please address the followings: a) Compute open circuit voltage Voç across a-b terminals. b) Compute short circuit current (Ian) by short -circuiting the terminals a-b. c) Compute RyH using the values of Voc and Ish. d) Recompute RTH by inserting 1A current source across a-b terminals. 0.25 Vo 20 18V 30 Voarrow_forwardA 6000 resistor and 200Q XL are in parallel with a 440V source, Find: a) total current, b) Pf, c) true, apparent, and reactive power of the circuit.arrow_forward
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Thevenin's Theorem; Author: Neso Academy;https://www.youtube.com/watch?v=veAFVTIpKyM;License: Standard YouTube License, CC-BY