Schaum’s Outline of Electric Circuits 7th edition by Mahmood Nahvi, Joseph Edminister – Ebook PDF Instant Download/Delivery: 1260011968, 978-1260011968
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ISBN 10: 1260011968
ISBN 13: 978-1260011968
Author: Mahmood Nahvi, Joseph Edminister
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More than 40 million students have trusted Schaum’s to help them study faster, learn better, and get top grades. Now Schaum’s is better than ever-with a new look, a new format with hundreds of practice problems, and completely updated information to conform to the latest developments in every field of study. Each Outline presents all the essential course information in an easy-to-follow, topic-by-topic format and helpful tables and illustrations also help increase your understanding of the subject at hand.
Schaum’s Outline of Electrical Circuits, Seventh Edition features:
• Updated content to match latest curriculum
• Over 500 problems with clear explanations
• Accessible format for quick and easy review
• Material that supports all the major textbooks for electric circuits courses
• Extra practice on topics such as amplifiers and operational amplifier circuits, waveforms and signals, AC power, and more
• Access to revised Schaums.com website with access to 25 problem-solving videos, and more
Schaum’s Outline of Electric Circuits 7th Table of contents:
CHAPTER 1: Introduction
- Electrical Quantities and SI Units
- Force, Work, and Power
- Electric Charge and Current
- Electric Potential
- Energy and Electrical Power
- Constant and Variable Functions
CHAPTER 2: Circuit Concepts
- Passive and Active Elements
- Sign Conventions
- Voltage-Current Relations
- Resistance
- Inductance
- Capacitance
- Circuit Diagrams
- Nonlinear Resistors
CHAPTER 3: Circuit Laws
- Introduction
- Kirchhoff’s Voltage Law
- Kirchhoff’s Current Law
- Circuit Elements in Series
- Circuit Elements in Parallel
- Voltage Division
- Current Division
CHAPTER 4: Analysis Methods
- The Branch Current Method
- The Mesh Current Method
- Matrices and Determinants
- The Node Voltage Method
- Network Reduction
- Input Resistance
- Output Resistance
- Transfer Resistance
- Reciprocity Property
- Superposition
- Thévenin’s and Norton’s Theorems
- Maximum Power Transfer Theorem
- Two-Terminal Resistive Circuits and Devices
- Interconnecting Two-Terminal Resistive Circuits
- Small-Signal Model of Nonlinear Resistive Devices
CHAPTER 5: Amplifiers and Operational Amplifier Circuits
- Amplifier Model
- Feedback in Amplifier Circuits
- Operational Amplifiers
- Analysis of Circuits Containing Ideal Op Amps
- Inverting Circuit
- Summing Circuit
- Noninverting Circuit
- Voltage Follower
- Differential and Difference Amplifiers
- Circuits Containing Several Op Amps
- Integrator and Differentiator Circuits
- Analog Computers
- Low-Pass Filter
- Decibel (dB)
- Real Op Amps
- A Simple Op Amp Model
- Comparator
- Flash Analog-to-Digital Converter
- Summary of Feedback in Op Amp Circuits
CHAPTER 6: Waveforms and Signals
- Introduction
- Periodic Functions
- Sinusoidal Functions
- Time Shift and Phase Shift
- Combinations of Periodic Functions
- The Average and Effective (RMS) Values
- Nonperiodic Functions
- The Unit Step Function
- The Unit Impulse Function
- The Exponential Function
- Damped Sinusoids
- Random Signals
CHAPTER 7: First-Order Circuits
- Introduction
- Capacitor Discharge in a Resistor
- Establishing a DC Voltage Across a Capacitor
- The Source-Free RL Circuit
- Establishing a DC Current in an Inductor
- The Exponential Function Revisited
- Complex First-Order RL and RC Circuits
- DC Steady State in Inductors and Capacitors
- Transitions at Switching Time
- Response of First-Order Circuits to a Pulse
- Impulse Response of RC and RL Circuits
- Summary of Step and Impulse Responses in RC and RL Circuits
- Response of RC and RL Circuits to Sudden Exponential Excitations
- Response of RC and RL Circuits to Sudden Sinusoidal Excitations
- Summary of Forced Response in First-Order Circuits
- First-Order Active Circuits
CHAPTER 8: Higher-Order Circuits and Complex Frequency
- Introduction
- Series RLC Circuit
- Parallel RLC Circuit
- Two-Mesh Circuit
- Complex Frequency
- Generalized Impedance (R, L, C) in s-Domain
- Network Function and Pole-Zero Plots
- The Forced Response
- The Natural Response
- Magnitude and Frequency Scaling
- Higher-Order Active Circuits
CHAPTER 9: Sinusoidal Steady-State Circuit Analysis
- Introduction
- Element Responses
- Phasors
- Impedance and Admittance
- Voltage and Current Division in the Frequency Domain
- The Mesh Current Method
- The Node Voltage Method
- Thévenin’s and Norton’s Theorems
- Superposition of AC Sources
CHAPTER 10: AC Power
- Power in the Time Domain
- Power in Sinusoidal Steady State
- Average or Real Power
- Reactive Power
- Summary of AC Power in R, L, and C
- Exchange of Energy between an Inductor and a Capacitor
- Complex Power, Apparent Power, and Power Triangle
- Parallel-Connected Networks
- Power Factor Improvement
- Maximum Power Transfer
- Superposition of Average Powers
CHAPTER 11: Polyphase Circuits
- Introduction
- Two-Phase Systems
- Three-Phase Systems
- Wye and Delta Systems
- Phasor Voltages
- Balanced Delta-Connected Load
- Balanced Four-Wire, Wye-Connected Load
- Equivalent Y- and D-Connections
- Single-Line Equivalent Circuit for Balanced Three-Phase Loads
- Unbalanced Delta-Connected Load
- Unbalanced Wye-Connected Load
- Three-Phase Power
- Power Measurement and the Two-Wattmeter Method
CHAPTER 12: Frequency Response, Filters, and Resonance
- Frequency Response
- High-Pass and Low-Pass Networks
- Half-Power Frequencies
- Generalized Two-Port, Two-Element Networks
- The Frequency Response and Network Functions
- Frequency Response from Pole-Zero Location
- Ideal and Practical Filters
- Passive and Active Filters
- Bandpass Filters and Resonance
- Natural Frequency and Damping Ratio
- RLC Series Circuit; Series Resonance
- Quality Factor
- RLC Parallel Circuit; Parallel Resonance
- Practical LC Parallel Circuit
- Series-Parallel Conversions
- Polar Plots and Locus Diagrams
- Bode Diagrams
- Special Features of Bode Plots
- First-Order Filters
- Second-Order Filters
- Filter Specifications; Bandwidth, Delay, and Rise Time
- Filter Approximations: Butterworth Filters
- Filter Design
- Frequency Scaling and Filter Transformation
CHAPTER 13: Two-Port Networks
- Terminals and Ports
- Z-Parameters
- T-Equivalent of Reciprocal Networks
- Y-Parameters
- Pi-Equivalent of Reciprocal Networks
- Application of Terminal Characteristics
- Conversion between Z- and Y-Parameters
- h-Parameters
- g-Parameters
- Transmission Parameters
- Interconnecting Two-Port Networks
- Choice of Parameter Type
- Summary of Terminal Parameters and Conversion
CHAPTER 14: Mutual Inductance and Transformers
- Mutual Inductance
- Coupling Coefficient
- Analysis of Coupled Coils
- Dot Rule
- Energy in a Pair of Coupled Coils
- Conductively Coupled Equivalent Circuits
- Linear Transformer
- Ideal Transformer
- Autotransformer
- Reflected Impedance
CHAPTER 15: Circuit Analysis Using Spice and PSpice
- Spice and PSpice
- Circuit Description
- Dissecting a Spice Source File
- Data Statements and DC Analysis
- Control and Output Statements in DC Analysis
- Thévenin Equivalent
- Subcircuit
- Op Amp Circuits
- AC Steady State and Frequency Response
- Mutual Inductance and Transformers
- Modeling Devices with Varying Parameters
- Time Response and Transient Analysis
- Specifying Other Types of Sources
- Summary
CHAPTER 16: The Laplace Transform Method
- Introduction
- The Laplace Transform
- Selected Laplace Transforms
- Convergence of the Integral
- Initial-Value and Final-Value Theorems
- Partial-Fractions Expansions
- Circuits in the s-Domain
- The Network Function and Laplace Transforms
CHAPTER 17: Fourier Method of Waveform Analysis
- Introduction
- Trigonometric Fourier Series
- Exponential Fourier Series
- Waveform Symmetry
- Line Spectrum
- Waveform Synthesis
- Effective Values and Power
- Applications in Circuit Analysis
- Fourier Transform of Nonperiodic Waveforms
- Properties of the Fourier Transform
- Continuous Spectrum
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