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Lecture Notes on Electromagnetic Theory II (1TE626) at Uppsala University

This repository contains all TeX code (plain TeX, no LaTeX), MetaPost figures and supporting material as used in my lectures on Electromagnetic Theory II (1TE626) for Engineering Physics (master level) at Uppsala University.

The directory contains the following subdirectories:

lect-06 Elektriska fält i material (Electric fields in materials)

lect-07 Magnetiska fält i material (Magnetic fields in materials)

lect-08 Multipolutvecklingen (The multipole expansion)

lect-09 Maxwells ekvationer och vågutbredning (Maxwell's equations and electromagnetic waves)

lect-10 Vågutbredning i homogena och isotropa dielektrika (Electromagnetic waves in homogeneous and isotropic dielectrics)

lect-11 Retarderade potentialer som lösningar till Maxwells ekvationer (Retarded potentials as solutions to Maxwell's equations)

Compiling the TeX code and figures

In each directory, the included Makefile can be used to regenerate the documents, figures and graphs. Just run make and ensure to install any missing components in case there are any complaints.

In order to generate all documents and figures in all lectures, just run make in the elmagii root directory. In order to clean up all directories, just run make clean in the elmagii root directory.

Gallery of sample illustrations used in the course

Lecture 6 - Electric fields in materials: Boundary conditions for the normal and tangential components of electric field across a surface with non-zero charge density. Boundary conditions for normal component of electric field across a surface with non-zero charge density. Boundary conditions for the tangential component of electric field across a surface with non-zero charge density.

Lecture 7 - Magnetic fields in materials: The orientation of spin to form a magnetic polarization density. The orientation of spin to form a magnetic polarization density.

Lecture 7 - Magnetic fields in materials: The geometry used in calculating the equivalent volume and surface currents matching the (possibly inhomogeneous) general magnetization of a body. The geometry used in calculating the equivalent volume and surface currents matching the (possibly inhomogeneous) general magnetization of a body.

Lecture 8 - The multipole expansion: The scalar potential and static electric field from a linear electric quadrupole, being the simplest construction with a quadrupole moment as the first appearing term. The scalar potential and static electric field from a linear electric quadrupole, being the simplest construction with a quadrupole moment as the first appearing term.

Lecture 8 - The multipole expansion: The scalar potential and static electric field from a quadratic electric quadrupole. The scalar potential and static electric field from a quadratic electric quadrupole.

Copyright

Copyright (C) 2024, Fredrik Jonsson, under GPL 3.0.