Engineering electromagnetics/ Nathan Ida.

By: Ida, NathanPublisher: New York : Springer, 2004Edition: 2nd edDescription: xvii, 1235 p. : ill. ; 24 cmISBN: 0387201564Subject(s): Electromagnetic devices -- Mathematical models | Electromagnetism -- MathematicsDDC classification: 621.34
Contents:
1. Vector algebra -- 2. Vector calculus -- 3. Coulomb's law and the electric field -- 4. Gauss's law and the electric potential -- 5. Boundary value problems : analytic methods of solution -- 6. Boundary value problems : numerical (approximate) methods -- 7. The steady electric current -- 8. The static magnetic field -- 9. Magnetic materials and properties -- 10. Faraday's law and induction -- 11. Maxwell's equations -- 12. Electromagnetic waves and propagation -- 13. Reflection and transmission of plane waves -- 14. Theory of transmission lines -- 15. The Smith chart, impedance matching, and transmission line circuits -- 16. Transients on transmission lines -- 17. Waveguides and resonators -- 18. Antennas and electromagnetic radiation.
Review: "The book is a comprehensive two semester textbook. It is written with all details of derivations included and all steps in solutions listed. It requires little beyond basic calculus and can be used for self-study. The wealth of examples and alternative explanations makes it approachable by students."--BK JACKET.
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Book Book Central Library (CL)
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Electrical Engineering 621.3 IDA (Browse shelf) Available SEECS007530
Book Book Central Library (CL)
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Electrical Engineering 621.3 IDA (Browse shelf) Available SEECS007527
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Electrical Engineering 621.3 IDA (Browse shelf) Available SEECS007528
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Electrical Engineering 621.3 IDA (Browse shelf) Available SEECS007529
Book Book Central Library (CL)
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Electrical Engineering 621.3 IDA (Browse shelf) Available SEECS007531
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1. Vector algebra -- 2. Vector calculus -- 3. Coulomb's law and the electric field -- 4. Gauss's law and the electric potential -- 5. Boundary value problems : analytic methods of solution -- 6. Boundary value problems : numerical (approximate) methods -- 7. The steady electric current -- 8. The static magnetic field -- 9. Magnetic materials and properties -- 10. Faraday's law and induction -- 11. Maxwell's equations -- 12. Electromagnetic waves and propagation -- 13. Reflection and transmission of plane waves -- 14. Theory of transmission lines -- 15. The Smith chart, impedance matching, and transmission line circuits -- 16. Transients on transmission lines -- 17. Waveguides and resonators -- 18. Antennas and electromagnetic radiation.

"The book is a comprehensive two semester textbook. It is written with all details of derivations included and all steps in solutions listed. It requires little beyond basic calculus and can be used for self-study. The wealth of examples and alternative explanations makes it approachable by students."--BK JACKET.

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