Electrical Circuits and Modified MasteringEngineering - With Access - 10th Edition - by NILSSON - ISBN 9780133992793

Electrical Circuits and Modified Master...
10th Edition
NILSSON
Publisher: PEARSON
ISBN: 9780133992793

Solutions for Electrical Circuits and Modified MasteringEngineering - With Access

Browse All Chapters of This Textbook

Chapter 3.2 - Resistors In ParallelChapter 3.3 - The Voltage-divider And Current-divider CircuitsChapter 3.4 - Voltage Division And Current DivisionChapter 3.5 - Measuring Voltage And CurrentChapter 3.6 - Measuring Resistance—the Wheatstone BridgeChapter 3.7 - Delta-to-wye (pi-to-tee) Equivalent CircuitsChapter 4 - Techniques Of Circuit AnalysisChapter 4.2 - Introduction To The Node-voltage MethodChapter 4.3 - The Node-voltage Method And Dependent SourcesChapter 4.4 - The Node-voltage Method: Some Special CasesChapter 4.5 - Introduction To The Mesh-current MethodChapter 4.6 - The Mesh-current Method And Dependent SourcesChapter 4.7 - The Mesh-current Method: Some Special CasesChapter 4.8 - The Node-voltage Method Versus The Mesh-current MethodChapter 4.9 - Source TransformationsChapter 4.10 - Thévenin And Norton EquivalentsChapter 4.11 - More On Deriving A Thévenin EquivalentChapter 4.12 - Maximum Power TransferChapter 5 - The Operational AmplifierChapter 5.2 - Terminal Voltages And CurrentsChapter 5.3 - The Inverting-amplifier CircuitChapter 5.4 - The Summing-amplifier CircuitChapter 5.5 - The Noninverting-amplifier CircuitChapter 5.6 - The Difference-amplifier CircuitChapter 5.7 - A More Realistic Model For The Operational AmplifierChapter 6 - Inductance, Capacitance, And Mutual InductanceChapter 6.1 - The InductorChapter 6.2 - The CapacitorChapter 6.3 - Series-parallel Combinations Of Inductance And CapacitanceChapter 6.4 - Mutual InductanceChapter 7 - Response Of First-order Rl And Rc CircuitsChapter 7.1 - The Natural Response Of An Rl CircuitChapter 7.2 - The Natural Response Of An Rc CircuitChapter 7.3 - The Step Response Of Rl And Rc CircuitsChapter 7.5 - Sequential SwitchingChapter 7.7 - The Integrating AmplifierChapter 8 - Natural And Step Responses Of Rlc CircuitsChapter 8.1 - Introduction To The Natural Response Of A Parallel Rlc CircuitChapter 8.2 - The Forms Of The Natural Response Of A Parallel Rlc CircuitChapter 8.3 - The Step Response Of A Parallel Rlc CircuitChapter 8.4 - The Natural And Step Response Of A Series Rlc CircuitChapter 9 - Sinusoidal Steady-state AnalysisChapter 9.3 - The PhasorChapter 9.4 - The Passive Circuit Elements In The Frequency DomainChapter 9.5 - Kirchhoff’s Laws In The Frequency DomainChapter 9.6 - Series, Parallel, And Delta-to-wye SimplificationsChapter 9.7 - Source Transformations And Thévenin-norton Equivalent CircuitsChapter 9.8 - The Node-voltage MethodChapter 9.9 - The Mesh-current MethodChapter 9.10 - The TransformerChapter 9.11 - The Ideal TransformerChapter 10 - Sinusoidal Steady-state Power CalculationsChapter 10.2 - Average And Reactive PowerChapter 10.3 - The Rms Value And Power CalculationsChapter 10.5 - Power CalculationsChapter 10.6 - Maximum Power TransferChapter 11 - Balanced Three-phase CircuitsChapter 11.3 - Analysis Of The Wye-wye CircuitChapter 11.4 - Analysis Of The Wye-delta CircuitChapter 11.5 - Power Calculations In Balanced Three-phase CircuitsChapter 12 - Introduction To The Laplace TransformChapter 12.4 - Functional TransformsChapter 12.5 - Operational TransformsChapter 12.7 - Inverse TransformsChapter 12.8 - Poles And Zeros Of F(s)Chapter 13 - The Laplace Transform In Circuit AnalysisChapter 13.2 - Circuit Analysis In The S DomainChapter 13.3 - ApplicationsChapter 13.4 - The Transfer FunctionChapter 13.5 - The Transfer Function In Partial Fraction ExpansionsChapter 13.7 - The Transfer Function And The Steady-state Sinusoidal ResponseChapter 14 - Introduction To Frequency Selective CircuitsChapter 14.2 - Low-pass FiltersChapter 14.3 - High-pass FiltersChapter 14.4 - Bandpass FiltersChapter 14.5 - Bandreject FiltersChapter 15 - Active Filter CircuitsChapter 15.1 - First-order Low-pass And High-pass FiltersChapter 15.2 - ScalingChapter 15.4 - Higher Order Op Amp FiltersChapter 15.5 - Narrowband Bandpass And Bandreject FiltersChapter 16 - Fourier SeriesChapter 16.2 - The Fourier CoefficientsChapter 16.3 - The Effect Of Symmetry On The Fourier CoefficientsChapter 16.4 - An Alternative Trigonometric Form Of The Fourier SeriesChapter 16.5 - An ApplicationChapter 16.6 - Average-power Calculations With Periodic FunctionsChapter 16.8 - The Exponential Form Of The Fourier SeriesChapter 16.9 - Amplitude And Phase SpectraChapter 17 - The Fourier TransformChapter 17.2 - The Convergence Of The Fourier IntegralChapter 17.3 - Using Laplace Transforms To Find Fourier TransformsChapter 17.6 - Operational TransformsChapter 17.7 - Circuit ApplicationsChapter 17.8 - Parseval’s TheoremChapter 18 - Two-port CircuitsChapter 18.2 - The Two-port ParametersChapter 18.3 - Analysis Of The Terminated Two-port CircuitChapter 18.4 - Interconnected Two-port Circuits

Book Details

Electric Circuits, Tenth Edition, is designed for use in a one or two-semester Introductory Circuit Analysis or Circuit Theory Course taught in Electrical or Computer Engineering Departments. This title is also suitable for readers seeking an introduction to electric circuits.


Electric Circuits is the most widely used introductory circuits textbook of the past 25 years. As this book has evolved to meet the changing learning styles of students, the underlying teaching approaches and philosophies remain unchanged.


MasteringEngineering for Electric Circuits is a total learning package that is designed to improve results through personalized learning. This innovative online program emulates the instructor's office-hour environment, guiding students through engineering concepts from Electric Circuits with self-paced individualized coaching.


Teaching and Learning Experience

This program will provide a better teaching and learning experience - for you and your students.

  • Personalize Learning with Individualized Coaching: MasteringEngineering provides students with wrong-answer specific feedback and hints as they work through tutorial homework problems.
  • Emphasize the Relationship between Conceptual Understanding and Problem Solving Approaches: Chapter Problems and Practical Perspectives illustrate how the generalized techniques presented in a first-year circuit analysis course relate to problems faced by practicing engineers.
  • Build an Understanding of Concepts and Ideas Explicitly in Terms of Previous Learning: Assessment Problems and Fundamental Equations and Concepts help students focus on the key principles in electric circuits.
  • Provide Students with a Strong Foundation of Engineering Practices: Computer tools, examples, and supplementary workbooks assist students in the learning process.

Sample Solutions for this Textbook

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More Editions of This Book

Corresponding editions of this textbook are also available below:

Electric Circuits (9th Edition)
9th Edition
ISBN: 9780136114994
Electric Circuits. (11th Edition)
11th Edition
ISBN: 9780134746968
Electric Circuits, Student Value Edition Format: Unbound (saleable)
11th Edition
ISBN: 9780134747170
Electric Circuits Plus Mastering Engineering with Pearson eText 2.0 - Access Card Package (11th Edition) (What's New in Engineering)
11th Edition
ISBN: 9780134814117
ELECTRIC CIRCUITS-W/MASTERINGENGINEERING
11th Edition
ISBN: 9780134894300
EBK ELECTRIC CIRCUITS
11th Edition
ISBN: 9780134747224
EBK ELECTRIC CIRCUITS
11th Edition
ISBN: 8220106795262
Electric Circuits (8th Edition)
8th Edition
ISBN: 9780131989252
Electric Circuits (10th Edition)
10th Edition
ISBN: 9780133760033
EBK ELECTRIC CIRCUITS
10th Edition
ISBN: 8220100801792
Electric Circuits, Global Edition
10th Edition
ISBN: 9781292060545
EBK ELECTRIC CIRCUITS
10th Edition
ISBN: 9780100801790

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