Genel
Electromagnetic Theory II - PHYS506
2013-2014 Fall
Instructor: Prof. Dr. Altan Baykal
Playlist link: https://www.youtube.com/watch?list=PLuiPz6iU5SQ9d1uu1NrVO2BmCuyfddILt&v=LPnlqV5dGVI
Electromagnetic Theory II - PHYS506
2013-2014 Fall
Instructor: Prof. Dr. Altan Baykal
Playlist link: https://www.youtube.com/watch?list=PLuiPz6iU5SQ9d1uu1NrVO2BmCuyfddILt&v=LPnlqV5dGVI
Maxwell equations, Maxwell Displacement Current,
Vector and Scalar Potentials,
Gauge Transformations, Lorentz and Coulomb Gauge,
Green Function for the wave equations.
Day 1
Green Function for the wave equation,
Poynting's theorem and conservation of energy,
Momentum for a system of charge particles and electromagnetic fields.
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Day 2
Plane waves in a nonconducting medium,
Linear and Circular Polarization,
Reflection and refraction of electromagnetic waves at a plane interface between dielectrics.
Day 1
Fields at the Surface of and within a Conductor and Waveguides.
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Day 2
Waveguides,
Modes in a rectangular waveguide,
Energy flow in waveguides.
Attenuation in Waveguides,
Resonant Cavities,
Fields and radiation of a localized oscillating source.
Day 1
Electric Dipole Fields and Radiation
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Day 2
Magnetic dipole and Quadrupole Fields
Day 1
Multipole Expansion of the Electromagnetic Fields
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Day 2
Angular Distribution of Multipole Radiation,
Sources of Multipole Radiation,
Scattering at Long Wavelengths.
Day 1
Scattering by dipoles,
Scattering by a small dielectric sphere,
Scattering by a small perfectly conducting sphere.
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Day 2
Perturbation theory of scattering,
Born approximation,
Blue Sky
Day 1
Diffraction Theory,
Diffraction by a Circular Aperture
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Day 2
Special Theory of Relativity,
Lorentz transformations,
4 vectors,
Light Cone,
Proper Time,
Time Dilation
Day 1
Relativistic Doppler Shift
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Day 2
Addition of Velocities,
4- Velocity,
Relativistic Momentum and Energy of Particle,
Mathematical Properties of the Space Time of Special Relativity
Day 1
Invariance of Electric Charge,
Covariance of Electrodynamics
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Day 2
Transformation of Electromagnetic Fields,
Elementary Approach to a Relativistic Lagrangian
Day 1
Hamiltonian for a charge particle interacting with external electromagnetic fields,
Manifestly Covariant Treatment of the Relativistic Lagrangian
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Day 2
Motion in Combined, Uniform, Static Electric and Magnetic Field,
Lagrangian for the Electromagnetic Field
Day 1
Canonical and Symmetric Stress Tensors,
Conservation Laws
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Day 2
Solution of the Wave Equation in Covariant Form,
Invariant Green Function
Day 1
Lienard-Wiechert Potentials and Fields for a Point Charge.
Larmor's Formula
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Day 2
Larmor's Formula and Its Relativistic Generalization
Angular Distribution of Radiation Emitted by an Accelerated Charge,
Distribution in Frequency Radiated by Accelerated Charges,
Summary of Bremsstrahlung Emission.
Day 1
Summary of Synchrotron Radiation,
Cherenkov radiation.
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Day 2
Thomson Scattering,
Radiative Reaction Force.