By C A Balanis
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Extra info for Advanced Engineering Electromagnetics (Second Edition)
Boston, MA, 1987 21. N. N. Rao, Elements of Engineering Electromagnetics, Fourth Edition, Prentice-Hall, Englewood Cliffs, NJ, 1994. 22. M. A. Plonus, Applied Electromagnetics, McGraw-Hill, New York, 1978. 23. A. T. Adams, Electromagnetics for Engineers, Ronald Press, New York, 1971. 24. M. Zahn, Electromagnetic Field Theory, John Wiley & Sons, New York, 1979. 25. L. M. Magid, Electromagnetic Fields, Energy, and Waves, John Wiley & Sons, New York, 1972. 26. S. Seely and A. D. Poularikas, Electromagnetics: Classical and Modern Theory and Applications, Dekker, New York, 1979.
Constitutive relations 1. 2. 3. 4. 5. 6. Circuit theory Relations between electromagnetic ﬁeld and circuit theories Ᏹ (electric ﬁeld intensity) Ᏼ (magnetic ﬁeld intensity) Ᏸ (electric ﬂux density) Ꮾ (magnetic ﬂux density) (electric current density) ᏹ (magnetic current density) ∂Ᏹ 7. M. M. TIME-VARYING AND TIME-HARMONIC ELECTROMAGNETIC FIELDS BOUNDARY CONDITIONS As previously stated, the differential form of Maxwell’s equations are used to solve for the ﬁeld vectors provided the ﬁeld quantities are single-valued, bounded, and possess (along with their derivatives) continuous distributions.
M. 15 Inﬁnite Conductivity Media If actual electric sources and charges exist along the interface between the two media, or if either of the two media forming the interface displayed in Figure 1-4 is a perfect electric conductor (PEC), the boundary conditions on the tangential components of the magnetic ﬁeld [stated by (1-27a)] and on the normal components of the electric ﬂux density or normal components of the electric ﬁeld intensity [stated by (1-29a) or (1-30a)] must be modiﬁed to include the sources and charges or the induced linear electric current density (s ) and surface electric charge density (qes ).
Advanced Engineering Electromagnetics (Second Edition) by C A Balanis