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Engineering Electromagnetics and Waves 2nd Global Edition By Aziz Inan, Umran Inan, Ryan Said

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The 2nd Global Edition of Engineering Electromagnetics and Waves by Aziz Inan, Umran Inan, and Ryan Said is structurally organized into 11 core chapters. [1]
Unlike traditional textbooks that begin with complex vector math or electrostatics, this text utilizes an "early transmission lines" pedagogical approach. It naturally bridges standard lumped electrical circuits and distributed electromagnetic wave phenomena using simpler circuit theory before moving into full field-matter mathematics. [1, 2, 3]
Chapter-by-Chapter Core Topics
The complete table of contents spans 11 structural chapters covering: [1, 2]
  • Chapters 1–3 (Transmission Lines & Circuits): Introduces lumped vs. distributed networks, the electromagnetic spectrum, transient responses and pulse propagation, sinusoidal steady-state behavior, standing waves, the Smith Chart, and impedance matching. [1, 2, 3, 4]
  • Chapters 4–6 (Static Fields): Covers electrostatics (Coulomb's and Gauss's Laws, potential, capacitance), steady electric currents (Ohm's Law, resistance), and magnetostatics (Biot-Savart and Ampère's Laws, inductance). [1]
  • Chapters 7–9 (Waves and Maxwell's Equations): Details time-varying fields and Maxwell's equations, plane wave propagation in various media, power flow via the Poynting vector, and wave reflection, transmission, and refraction at planar interfaces. [1, 2, 3]
  • Chapters 10–11 (Guided Waves & Matter): Explores parallel-plate and dielectric slab waveguides with TE/TM/TEM modes, along with modern field-matter interactions, microelectromechanical systems (MEMS), and metamaterials. [1]

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