Introduces linear statics for linear elastic solids in small deformations, stress equilibrium, the Virtual Work Principle, and the Finite Element Method.
Explores methods to construct Green functions in electrostatics, including image charge and eigenfunction expansion, under different boundary conditions.
Explores electric and magnetic properties in antennas, including dielectric and magnetic properties, power analysis, Maxwell's equations, and vector potentials.
Explores the local approach of the finite element method, covering nodal shape functions, solution restrictions, sizes, boundary conditions, and assembly operations.
Explores the theory and applications of Green functions in classical electrodynamics, emphasizing the importance of choosing the right function based on boundary conditions.