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Schaum's outline series theroy and problems of electromagnetics

By: Contributor(s): Material type: TextTextLanguage: English Series: Schaum's outline seriesPublication details: New York, McGraw hill, Inc.: 1993.Edition: 2ndDescription: vii, 322pISBN:
  • 0071126058
Subject(s): Other classification:
  • CM65 L9;N3 TC
Summary: Like the popular previous edition, this valuable study guide keeps the mathematics as simple as possible and includes numerous concrete examples of concepts and principles, plus graphs and sketches to illuminate important points. New in this edition are chapters on transmission lines, waveguides and antennas, making this powerful study tool even more useful for both students and practitioners using electromagnetic field theory. Table of Content: Vector Analysis Coulomb Forces and Electric Field Intensity Electric Flux and Gauss' Law Divergence and the Divergence Theorem The Electrostatic Field: Work, Energy, and Potential Current, Current Density, and Conductors Capacitance and Dielectric Materials Laplace's Equation Ampere's Law and the Magnetic Field Forces and Torques in Magnetic Fields Inductance and Magnetic Circuits Displacement Current and Induced E
Item type: Textbook
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Textbook Textbook Central Science Library Central Science Library CM65 L9;N3 (Browse shelf(Opens below)) Available SL0859460

Appendix 315-316p.; Index 317-322p.

Like the popular previous edition, this valuable study guide keeps the mathematics as simple as possible and includes numerous concrete examples of concepts and principles, plus graphs and sketches to illuminate important points. New in this edition are chapters on transmission lines, waveguides and antennas, making this powerful study tool even more useful for both students and practitioners using electromagnetic field theory. Table of Content: Vector Analysis Coulomb Forces and Electric Field Intensity Electric Flux and Gauss' Law Divergence and the Divergence Theorem The Electrostatic Field: Work, Energy, and Potential Current, Current Density, and Conductors Capacitance and Dielectric Materials Laplace's Equation Ampere's Law and the Magnetic Field Forces and Torques in Magnetic Fields Inductance and Magnetic Circuits Displacement Current and Induced E

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