Basic Electric Circuit Theory: A One-Semester Text
Autor Isaak D. Mayergoyz, W. Lawsonen Limba Engleză Hardback – 17 sep 1996
Key Features
* Designed as a comprehensive one-semester text in basic circuit theory
* Features early introduction of phasors and ac steady-state analysis
* Covers the application of phasors and ac steady-state analysis
* Consolidates the material on dependent sources and operational amplifiers
* Places emphasis on connections between circuit theory and other areas in electrical engineering
* Includes PSpice tutorials and examples
* Introduces the design of active filters
* Includes problems at the end of every chapter
* Priced well below similar books designed for year-long courses
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Specificații
ISBN-13: 9780124808652
ISBN-10: 0124808654
Pagini: 464
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.83 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0124808654
Pagini: 464
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.83 kg
Editura: ELSEVIER SCIENCE
Public țintă
Undergraduate students at Electrical Engineering Departments who take a one semester course on Basic Circuit Theory.Cuprins
(Chapter Headings): Basic Circuit Variables and Elements. Kirchhoffs Laws. AC Steady State. Equivalent Transformations of Electric Circuits. Thevenins Theorem and Related Topics. Nodal and Mesh Analysis. Transient Analysis. Dependent Sources and Operational Amplifiers. Frequency Characteristics of Electric Circuits. Magnetically Coupled Circuits and Two-Port Elements. Appendices.
Basic Circuit Variables and Elements: Introduction. Circuit Variables. Reference Directions. The Resistor. The Inductor. The Capacitor. Ideal Independent Voltage and Current Sources. Summary. Problems. Kirchhoff's Laws: Introduction. CircuitTopology. Kirchhoff's Laws. Linearly Independent Kirchhoff Equations. Summary. Problems. AC Steady State: Introduction. AC Quantities. Amplitude and Phase Relationships for Circuit Elements. Phasors. Impedance and Admittance. AC Steady State Equations. AC Power. Complex Frequency. Summary. Problems. Equivalent Transformations of Electric Circuits: Introduction. General Series and Parallel Connections. Voltage and Current Divider Rules. Input Impedance. Symmetry. The Superposition Principle. An Introduction to Electric Circuit Simulation with PSpice. Summary. Problems. Thevenin's Theorem and Related Topics: Introduction. Non-Ideal Two-Terminal Circuit Elements. Equivalent Transformations of Non-Ideal Voltage and Current Sources. Thevenin's Theorem. Norton's Theorem. Nonlinear Resistive Circuits. Summary. Problems. Nodal and Mesh Analysis: Introduction. Nodal Analysis. Mesh Current Analysis. PSpice Simulations. Summary. Problems. Transient Analysis: Introduction. First Order Circuits. Second Order Circuits. Transfer Functions and Their Applications. Impulse Respons and Convolution Integral. Circuits with Diodes (Rectifiers). PSpice Simulations. Summary. Problems. Dependent Sources and Operational Amplifiers: Introduction. Dependent Sources As Linear Models for Transistors. Analysis of Circuits with Dependent Sources. Operational Amplifiers. PSpice Simulations. Summary. Problems. Frequency Characteristics of Electric Circuits: Introduction. Resonance. Passive Filters. Bode Plots. Active-RC Filters. Synthesis of Transfer Functions with Active-RC Circuits. PSpice Simulations. Summary. Problems. Magnetically Coupled Circuits and Two-Port Elements: Introduction. Mutual Inductance and Coupled Circuit Equations. Transformers. Theory of Two-Port Elements. PSpice Simulations. Summary Problems. Appendices.
Basic Circuit Variables and Elements: Introduction. Circuit Variables. Reference Directions. The Resistor. The Inductor. The Capacitor. Ideal Independent Voltage and Current Sources. Summary. Problems. Kirchhoff's Laws: Introduction. CircuitTopology. Kirchhoff's Laws. Linearly Independent Kirchhoff Equations. Summary. Problems. AC Steady State: Introduction. AC Quantities. Amplitude and Phase Relationships for Circuit Elements. Phasors. Impedance and Admittance. AC Steady State Equations. AC Power. Complex Frequency. Summary. Problems. Equivalent Transformations of Electric Circuits: Introduction. General Series and Parallel Connections. Voltage and Current Divider Rules. Input Impedance. Symmetry. The Superposition Principle. An Introduction to Electric Circuit Simulation with PSpice. Summary. Problems. Thevenin's Theorem and Related Topics: Introduction. Non-Ideal Two-Terminal Circuit Elements. Equivalent Transformations of Non-Ideal Voltage and Current Sources. Thevenin's Theorem. Norton's Theorem. Nonlinear Resistive Circuits. Summary. Problems. Nodal and Mesh Analysis: Introduction. Nodal Analysis. Mesh Current Analysis. PSpice Simulations. Summary. Problems. Transient Analysis: Introduction. First Order Circuits. Second Order Circuits. Transfer Functions and Their Applications. Impulse Respons and Convolution Integral. Circuits with Diodes (Rectifiers). PSpice Simulations. Summary. Problems. Dependent Sources and Operational Amplifiers: Introduction. Dependent Sources As Linear Models for Transistors. Analysis of Circuits with Dependent Sources. Operational Amplifiers. PSpice Simulations. Summary. Problems. Frequency Characteristics of Electric Circuits: Introduction. Resonance. Passive Filters. Bode Plots. Active-RC Filters. Synthesis of Transfer Functions with Active-RC Circuits. PSpice Simulations. Summary. Problems. Magnetically Coupled Circuits and Two-Port Elements: Introduction. Mutual Inductance and Coupled Circuit Equations. Transformers. Theory of Two-Port Elements. PSpice Simulations. Summary Problems. Appendices.