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Electric Circuit Analysis by K. S. Suresh Kumar

Preface 
xvii
Acknowledgements 
xxii
 1. Circuit Variables and Circuit Elements 
1.1
 2. Basic Circuit Laws 
2.1
 3. Single Element Circuits 
3.1
 4. Nodal Analysis and Mesh Analysis of Memoryless Circuits 
4.1
 5. Circuit Theorems 
5.1
 6. Power and Energy in Periodic Waveforms 
6.1
 7. The Sinusoidal Steady-State Response 
7.1
 8. Sinusoidal Steady-State in Three-Phase Circuits 
8.1
 9. 
 
Dynamic Circuits with Periodic Inputs – Analysis by Fourier Series 
9.1
10. First-Order 
RL Circuits 
10.1
11. First-Order 
RC Circuits 
11.1
12. Series and Parallel 
RLC Circuits 
12.1
13. Analysis of Dynamic Circuits by Laplace Transforms 
13.1
14. Magnetically Coupled Circuits 
14.1
Index 
I.1
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C o n t e n t s
Preface 
xvii
Acknowledgements 
xxii
1. Circuit Variables and Circuit Elements 
1.1
1.1 Electromotive Force, Potential and Voltage 
1.2
1.1.1 Force Between Two moving Point Charges and Retardation Effect 
1.2
1.1.2 Electric Potential and Voltage 
1.4
1.1.3 Electromotive Force and Terminal Voltage of a Steady Source 
1.6
1.2 A Voltage Source with a Resistance Connected at its Terminals 
1.7
1.2.1 Steady-State Charge Distribution in the System 
1.7
1.2.2 Drift Velocity and Current Density 
1.8
1.2.3 Current Intensity 
1.9
1.2.4 Conduction and Energy Transfer Process 
1.10
1.2.5 Two-Terminal Resistance Element 
1.11
1.2.6 A Time-Varying Voltage Source with Resistance Across it 
1.13
1.3 Two-Terminal Capacitance 
1.14
1.4 Two-Terminal Inductance 
1.18
1.4.1 Induced Electromotive Force and its Location in a Circuit 
1.18
1.4.2 Relation Between Induced Electromotive Force and Current 
1.20
1.4.3 Farady’s Law and Induced Electromotive Force 
1.21
1.4.4 The Issue of a Unique Voltage Across a Two-Terminal Element 
1.22
1.4.5 The Two-Terminal Inductance 
1.23
1.5 Ideal Independent Two-Terminal Electrical Sources 
1.27
1.5.1 Ideal Independent Voltage Source 
1.27
1.5.2 Ideal Independent Current Source 
1.28
1.5.3 Ideal Short-Circuit Element and Ideal Open-Circuit Element 
1.29
1.6 Power and Energy Relations for Two-Terminal Elements 
1.29
1.6.1 Passive Sign Convention 
1.30
1.6.2 Power and Energy in Two-Terminal Elements 
1.31
1.7 Classification of Two-Terminal Elements 
1.36
1.7.1 Lumped and Distributed Elements 
1.37
1.7.2 Linear and Non-Linear Elements 
1.38
1.7.3 Bilateral and Non-Bilateral Elements 
1.40
1.7.4 Passive and Active Elements 
1.40
1.7.5 Time-Invariant and Time-Variant Elements 
1.41
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x
Contents
1.8 multi-Terminal Circuit Elements 
1.41
1.8.1 Ideal Dependent Sources 
1.41
1.9 Summary 
1.42
1.10 Problems 
1.44

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