Solutions for Basic Engineering Circuit Analysis
Problem 5P:
A model for a standard two D-cell flashlight is shown in Fig. P2.5. Find the power dissipated in the...Problem 6P:
An automobile uses two halogen headlights connected as shown in Fig. P2.6. Determine the power...Problem 7P:
Many years ago a string of Christmas tree lights was manufactured in the form shown in Fig. P2.7a....Problem 8P:
Find I1,I2, and I3 in the network in Fig.P2.8.Problem 9P:
Find I1 in the network in Fig.P2.9.Problem 10P:
Find I1 in the network in Fig.P2.10.Problem 11P:
Find I1 in the circuit in Fig.P2.11.Problem 12P:
Find I0 and I1 in the circuit in Fig.P2.12.Problem 13P:
Find Ix,Iy, and Iz in the network in Fig.P2.13.Problem 14P:
Find Ix in the circuit in Fig.P2.14.Problem 15P:
Find Ix in the network in Fig. P2.15.Problem 16P:
Find I1 in the network in Fig. P2.16.Problem 17P:
Find Vbd in the circuit in Fig. P2.17.Problem 18P:
Find I1 in the circuit in Fig. P2.18.Problem 19P:
Find I1,I2, and I3 in the network in Fig. P2.19.Problem 20P:
Find Vfb and Vec in the circuit in Fig. P2.20.Problem 22P:
Find VBE and VDA in the circuit in Fig. P2.22.Problem 23P:
Find Vx and Vy in the circuit in Fig. P2.23.Problem 24P:
Find Vac in the circuit in Fig. P2.24.Problem 25P:
Find Vad and Vce in the circuit in Fig. P2.25.Problem 26P:
Find Vo in the circuit in Fig. P2.26.Problem 27P:
Find V1,V2, and V3 in the network in Fig. P2.27.Problem 28P:
Find Vo in the network in Fig. P2.28.Problem 29P:
Find V1,V2, and V3 in the network in Fig. P2.29.Problem 30P:
If Vo=3V in the circuit in Fig. P2.30, find Vs.Problem 32P:
The 10-V source absorbs 2.5-mW of power. Calculate Vba and the power absorbed by the dependent...Problem 33P:
Find Vbd in the network in Fig. P2.33.Problem 34P:
Find V1 in the network in Fig. P2.34.Problem 37P:
In the network in Fig. P2.37, find VS if VEB=6V.Problem 38P:
Find VS in the circuit in Fig. P2.38, if VBE=18V.Problem 39P:
Find VA in the network in Fig. P2.39.Problem 43P:
Find VA and VO in the circuit in Fig. P2.43.Problem 46P:
Find Vo in the circuit in Fig. P2.46.Problem 47P:
Find I0 in the network in Fig. P2.47.Problem 48P:
Find Io in the network in Fig. P2.48.Problem 50P:
Find the current IA in the circuit in Fig. P2.50.Problem 51P:
Find IS in the network in Fig. P2.51.Problem 52P:
Find Io in the circuit in Fig. P2.52.Problem 53P:
Find Io in the network in Fig. P2.53.Problem 54P:
Find Vo in the circuit in Fig. P2.54.Problem 55P:
Find Vo in the network in Fig. P2.55.Problem 56P:
Find Io in the network in Fig. P2.56.Problem 57P:
Find Io in the network in Fig. P2.57.Problem 58P:
Find IL in the circuit in Fig. P2.58.Problem 59P:
Find RAB in the network in Fig. P2.59.Problem 60P:
Find RAB in the circuit in Fig. P2.60.Problem 61P:
Find RAB in the circuit in Fig. P2.61.Problem 62P:
Find RAB in the network in Fig. P2.62.Problem 63P:
Find RAB in the circuit in Fig. P2.63.Problem 64P:
Find RAB in the circuit in Fig. P2.64.Problem 65P:
Find RAB in the circuit in Fig. P2.65.Problem 67P:
Find RAB in the network in Fig. P2.67.Problem 68P:
Given the resistor configuration shown in Fig. P2.68, find the equivalent resistance between the...Problem 72P:
Find the power supplied by the source in the network in Fig. P2.72. All resistors are 12k.Problem 73P:
Find I1 and Vo in the circuit in Fig. P2.73.Problem 74P:
Find I1 and Vo in the circuit in Fig. P2.74.Problem 75P:
Find Vab and Vdc in the circuit in Fig. P2.75.Problem 76P:
Find Io in the network in Fig. P2.76.Problem 77P:
Find Io in the circuit in Fig. P2.77.Problem 78P:
Find V1 in the network in Fig. P2.78.Problem 79P:
Find Vab in the circuit in Fig. P2.79.Problem 80P:
Find Vab in the network in Fig. P2.80.Problem 81P:
Find I1,I2, and V1 in the circuit in Fig. P2.81.Problem 82P:
Determine Vo in the network in Fig. P2.82.Problem 83P:
Calculate VAB in Fig. P2.83.Problem 85P:
Find Io in the circuit in Fig. P2.85.Problem 87P:
Find the power supplied by the current source in the network in Fig. P2.87. All resistors are 12.Problem 88P:
In the network in Fig. P2.88, V1=12V. Find VS.Problem 89P:
In the circuit in Fig. P2.89, Vo=2V. Find IS.Problem 90P:
In the network in Fig. P2.90, V1=14V. Find VS.Problem 91P:
If VR=15V, find VX in Fig. P2.91.Problem 92P:
Find the value of IA in the network in Fig. P2.92.Problem 93P:
If V1=5V in the circuit in Fig. P2.93, find IS.Problem 95P:
Find the value of VS in the network in Fig. P2.95 such that the power supplied by the current source...Problem 96P:
In the network in Fig. P2.96, VO=6V. Find IS.Problem 98P:
Find the value of IA in the circuit in Fig. P2.98.Problem 99P:
If the power supplied by the 2-A current source is 40 W, find VS and the power absorbed by the 5-V...Problem 102P:
Given Io=2mA in the network in Fig. P2.102, find VA.Problem 103P:
Find the value of Vx in the network in Fig. P2.103, such that the 5-A current source supplies 50 W.Problem 104P:
Given Ia=2mA in the circuit in Fig. P2.104, find IA.Problem 105P:
Given Va in the network in Fig. 2.105, find IA.Problem 106P:
Find the value of Vx in the circuit in Fig. P2.106 such that the power supplied by the 5-A source is...Problem 107P:
Find the power absorbed by the network in Fig. P2.107.Problem 108P:
Find the value of g in the network in Fig. P2.108 such that the power supplied by the 3-A source is...Problem 110P:
Find Io in circuit in Fig. P2.110.Problem 111P:
Find Io in circuit in Fig. P2.111.Problem 112P:
Determine the value of Vo in the network in Fig. P2.112.Problem 114P:
Find the value of VS in the network in Fig. P2.114.Problem 116P:
Find Vo in the circuit in Fig. P2.116.Problem 117P:
Find Vo in the network in Fig. P2.117.Problem 118P:
Find I1 in the network in Fig. P2.118.Problem 119P:
A single-stage transistor amplifier is modeled as shown in Fig. P2.119. Find the current in the load...Problem 120P:
Find Io in the circuit in Fig. P2.120.Problem 121P:
Find Vo in the circuit in Fig. P2.121.Problem 122P:
A typical transistor amplifier is shown in Fig. P2.122. Find the amplifier gain G (i.e., the ratio...Problem 123P:
Find VX in the network in Fig. P2.123.Problem 124P:
Find Vo in the network in Fig. P2.124.Problem 125P:
Find I1,I2, and I3 in the circuit in Fig. P2.125.Problem 126P:
Find Io in the network in Fig. P2.126.Problem 127P:
Find the power absorbed by the 12-k resistor on the right side of the network in Fig. P2.127.Problem 129P:
Find the value of k in the network in Fig. P2.129 such that the power supplied by the 6-A source is...Problem 2FE.1TP:
What is the power generated by the source in the network in Fig. 2PFE-1? a. 2.8W c. 3.6W b. 1.2Wd....Problem 2FE.2TP:
Find v ah in the circuit in Fig. 2PFE-2. a. 5V c. 15V b. 10V d. 10VProblem 2FE.4TP:
Find the equivalent resistance of the circuit in Fig. 2PFE-4 at the terminals AB. a. 4k c. 8k b. 12k...Problem 2FE.5TP:
The 100-V source is absorbing 50W of power in the network in Fig. 2PFE-5. What is R? a. 17.27c....Problem 2FE.6TP:
Find the power supplied by the 40-V source in the circuit in Fig. 2PFE-6. a. 120Wc. 212W b. 232Wd....Problem 2FE.7TP:
What is the current I0 in the circuit in Fig. 2PFE-7? a. 0.84mA c. 2.75mA b. -1.25mA d. -0.22mAProblem 2FE.10TP:
Find the current Ix in Fig. 2PFE-10. a. 1/2Ac. 3/2A b. 5/3Ad. 8/3ABrowse All Chapters of This Textbook
Chapter 1 - Basic ConceptsChapter 2 - Resistive CircuitsChapter 3 - Nodal And Loop Analysis TechniquesChapter 4 - Operational AmplifiersChapter 5 - Additional Analysis TechniquesChapter 6 - Capacitance And InductanceChapter 7 - first- And Second-order Transient CircuitsChapter 8 - Ac Steady-state AnalysisChapter 10 - Magnetically Coupled Networks
Book Details
Circuit analysis is the fundamental gateway course for computer and electrical engineering majors.
Basic Engineering Circuit Analysis has long been regarded as the most dependable textbook. Irwin and Nelms has long been known for providing the best supported learning for students otherwise intimidated by the subject matter. In this new 11th edition, Irwin and Nelms continue to develop the most complete set of pedagogical tools available and thus provide the highest level of support for students entering into this complex subject.
Irwin and Nelms’ trademark student-centered learning design focuses on helping students complete the connection between theory and practice. Key concepts are explained clearly and illustrated by detailed worked examples. These are then followed by Learning Assessments, which allow students to work similar problems and check their results against the answers provided. The WileyPLUS course contains tutorial videos that show solutions to the Learning Assessments in detail, and also includes a robust set of algorithmic problems at a wide range of difficulty levels.
Irwin and Nelms’ trademark student-centered learning design focuses on helping students complete the connection between theory and practice. Key concepts are explained clearly and illustrated by detailed worked examples. These are then followed by Learning Assessments, which allow students to work similar problems and check their results against the answers provided. The WileyPLUS course contains tutorial videos that show solutions to the Learning Assessments in detail, and also includes a robust set of algorithmic problems at a wide range of difficulty levels.
Sample Solutions for this Textbook
We offer sample solutions for Basic Engineering Circuit Analysis homework problems. See examples below:
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