Lecture Notes in Physics Introduction to Plasma Physics Michael Gedalin
Lecture Notes in Physics Introduction to Plasma Physics Michael Gedalin
Lecture Notes for Solid State Physics
Lecture notes for Duurzame Energie: Zon, Wind en Water
Lecture Notes for Chapter 8
Lecture notes for Challenges in the Physics of Life and Energy, part
Lecture Notes and Solved Problems
Lecture notes 3
Lecture Notes 21: More on Gauge Invariance, Why Photon Mass = 0, "Universal"/Common Aspects of Fundamental Forces
lecture notes 21
Lecture notes 2(RD)
Lecture Notes 19: Magnetic Fields in Matter I
Lecture Notes 18: Relativistic Electrodynamics
Lecture Notes 17: Proper Time, Proper Velocity, The Energy-Momentum 4-Vector, Relativistic Kinematics, Elastic/Inelastic Collisions, Compton Scattering
Lecture Notes 16: Magnetic Vector Potential, A; B = Curl A, Magnetostatic Boundary Conditions
Lecture Notes 14: Electromagnetic Radiation from An Arbitrary Source, Radiation Reaction on a Moving Point Charge
Lecture Notes 14.5: Classical Non-Relativistic Theory of Scattering of EM Radiation, Thomson and Rayleigh Scattering
Lecture Notes 13: Steady Electric Currents, Magnetic Field, B
Lecture Notes 12: Microscopic Theory of Dielectrics, Clausius-Mossotti Eqn, Langevin and DeBye Eqns; Ferro-, Piezo- and Pyro-Electric Materials
Lecture Notes 12: Lienard-Wiechert Retarded Potentials for Moving Point Charge, Retarded Electric and Magnetic Fields Associated with Moving Point Charge
Lecture Notes 11: Potentials and Fields, Potential Formulation, Gauge Transformations, Jefimenko's Equations, Feynman-Heaviside Eqns for Moving Point Charge