Covers conservation of momentum, electromagnetic fields, relativistic energy-momentum, intensity definitions, and practical examples of solar emissions.
Explores relativistic kinematics, including the transformation of coordinates, the Lorentz transformation, and the invariance of the space-time interval.
Delves into the variational method in relativistic quantum field theory without cutoff, emphasizing weakly entangled states and the transition to relativistic continuous matrix product states.
Explores the transformation of Newton's second law in the context of Einstein's relativity and Lorentz transformations, discussing the equivalence of physical quantities in different inertial frames.