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Electrodynamics -- Fall 2013


Material covered:

(Syllabus)

Week Tuesday Thursday
Aug 26   Mathematical introduction: Vectors
Sep 2 Mathematical introduction: Vector differential operations - no class -
Sep 9 Mathematical introduction: Laplace operator; vector integral calculus; curvilinear coordinates Mathematical introduction: Dirac delta-function. Theory of vector fields
Sep 16 Electrostatics: Coulomb law, electric field, charge density, Gauss law Electric potential
Sep 23 Boundary conditions. Electrostatic energy Laplace equation. Uniquness theorems. Method of image charges.
Sept 30 Capacitance.  Method of image charges - continuation Separation of variables in rectangular geometries
Oct 7 Separation of variables in the spherical geometry Separation of variables in spherical and cylindrical geometry
Oct 14 - no class - Test 1
Oct 21 Multipole expansion Magnetostatics. Magnetic field. Motion of charged particles.
Oct 28 Currents: linear, surface, volume. Continuity equation. Biot-Savart law. Magnetic field of an infinite straight wire Biot-Savart law: applications. Divergence and curl of B from BS law.
Nov 4 Ampere law in the differential and integral forms. Applicatoins. Magnetic vector potential. Multipole expansion for magnetic vector potential. Magnetic moment.
Nov 11 Dipolar field for electric and magnetic dipoles. Torque, energy, and force for a simple electric dipole. Solving prolems.
Nov 18 Test 2 Ohm's law. Problems with non-uniform currents. Motional EMF in particular cases.
Nov 25 Motional EMF in general. Faraday's law. Electric field generated by changing magnetic field. Thanksgiving
Dec 2 Electric field generated by a slow change of the current in a straight wire. Mutual inductance and self-inductance. Energy of magnetic and electric fields from solenoid and capacitor. Maxwell equations. Additional Maxwell term and its justification
Dec 9 Poynting theorem. Electromagnetic waves in vacuum. Transversality. Intensity. Review

 
Book
 
D.J. Griffith: Introduction to Electrodynamics, Fourth Edition

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