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008 190109b ||||| |||| 00| 0 eng d
020 _a9789339203276
020 _a9789353169725
040 _c0
082 _a538.56
_bHAY
100 _aHayt William H
245 _aEngineering electromagnetics
250 _a9
505 _tChapter 1: Vector Analysis
_tChapter 2: Coulomb’s Law and Electric Field Intensity
_tChapter 3: Electric Flux Density, Gauss’s Law, and Divergence
_tChapter 4: Energy and Potential
_tChapter 5: Current and Conductors
_tChapter 6: Dielectrics and Capacitance
_tChapter 7: Poisson’s and Laplace’s Equations
_tChapter 8: The Steady Magnetic Field
_tChapter 9: Magnetic Forces, Materials, and Inductance
_tChapter 10: Time-Varying Fields and Maxwell’s Equations
_tChapter 11: Transmission Lines
_tChapter 12: The Uniform Plane Wave
_tChapter 13: Plane Wave Reflection and Dispersion
_tChapter 14: Guided Waves and Radiation
_tChapter 15: Waveguides and Resonators
_tChapter 16: Vector Analysis
520 _aEngineering Electromagnetics is a classic book that provides a comprehensive discussion on core concepts of the subject area. It follows an application-based approach, by supporting theoretical concepts with numerous solved examples and illustrations. This adapted edition focuses on enhancing the electrostatics portion and adding more solved examples. With all its careful revisions, the book is now a more useful resource for students of electrical engineering as well as electronics and communication engineering.
650 _aElectromagnetism.
650 _aElectromagnetic theory
700 _aBuck, J. A.
700 _aAkhtar, Jaleel M.
942 _2ddc
_cBK
999 _c728
_d728