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Lorentz transformation
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Relativistic Charged Particle Dynamics
Covers the equation of motion for a relativistic charged particle and Lorentz transformations, along with tensors and electrodynamics.
Symmetries of the Wave Equation
Explores the symmetries of the wave equation and Lorentz boosts in relation to Galilean boosts.
Relativistic Formulation of Newtonian Mechanics
Explores the Lorentz covariant formulation of Newtonian mechanics, including 4-vectors and relativistic Newton's second law.
Symmetries and Groups in Quantum Mechanics
Covers the role of symmetries and groups in quantum mechanics, focusing on SU2 and SU3, their properties, and implications for physical theories.
Dynamics in Non-Inertial Frames
Covers dynamics in non-inertial frames, including velocity and acceleration transformations and the concept of apparent forces.
Principle of Relativity: Inertia Frames and Coordinate Transformations
Covers Galileo's principle of relativity, inertia frames, and Lorentz transformations in electromagnetism.
Consequences of Lorentz Transformations
Explores the consequences of Lorentz transformations in 1+1 dimensions for two observers and the implications on time and distance measurements.
Lie Groups: Representations and Transformations
Explores Lie groups, scalar fields, and vector spaces transformations.
Relativistic Motion of Charged Particles
Explores the relativistic motion of charged particles in electric fields, focusing on Lorentz covariant electrodynamics and the relativistic Larmor power.
Planck Units and Lorentz Transformations
Explores Planck units, Klein-Gordon equation, Lorentz transformations, and Maxwell equations' invariance.