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Lorentz transformation
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Related lectures (31)
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Quantum Theory: Lorentz Transformation
Explores the Lorentz transformation in Quantum Theory, emphasizing Fock space representation and momentum concepts.
Quantum Field Theory: Poincaré Group
Explores Einsteinian relativity, the Lorentz group, and Poincaré transformations, emphasizing proper and non-orthochronous components.
Lorentz Transformations: Symmetries and Boosts
Explores Lorentz transformations, boosts, and symmetries in Newtonian mechanics.
Lorentz Transformations and Covariant Tensors
Explores Lorentz transformations, covariant tensors, rotational invariance, and linear transformations in vector spaces.
Tensors and Lorentz Transformations
Covers tensors, Lorentz transformations, and electrodynamics in relativistic notation.
Special and General Relativity
Introduces special and general relativity, Einstein equations, and gravitational dynamics.
Lie Algebra of Lorentz Group
Covers the Lie algebra of the Lorentz group, focusing on boosts, rotations, and transformations.
Spherical Tensors and Wigner-Eckart Theorem
Covers the transformation of vectors and tensors in quantum physics.
Lorentz-Minkowski Spacetime
Covers Lorentz-Minkowski spacetime, speed of light interpretation, isometries, and special relativity principles.
Conformal Transformations: Part 1
Covers the topic of conformal transformations, including translations, dilations, rotations, and the conformal algebra.
EM Field: Discrete Symmetries
Covers EM Field and Discrete Symmetries, emphasizing the importance of symmetries in quantum field theory.
Galilean Transformations: Spacetime and Measurements
Explores Galilean transformations in spacetime, focusing on measurements and coordinate transformations.
Quantum Field Theory II
Covers massive vectors, quantum field theory, and Lorentz transformations, focusing on normalization and completeness.
Relativistic Equation of Motion
Explores spacetime structure, 4-vectors, Lorentz force, and dispersion relation in relativistic motion.
Lorentz Invariance: Velocities, Time Dilation, Length Contraction
Explores Lorentz invariance, covering velocities, time dilation, and length contraction, with implications for symmetries and physical interpretations.
Indicial Notation and Vectors
Explores indicial notation, vectors, and the transformation law in the context of mass flux density.
Lorentz Covariant Formulation: Maxwell Equations
Covers Lorentz transformations, Maxwell equations, and charge conservation in Lorentz invariant physics.
Lorentz Invariance and Covariant Tensors
Explores Lorentz invariance, tensors in vector spaces, and electromagnetic potentials.
Special Relativity: Lorentz Transformations
Explores special relativity, Lorentz transformations, time dilation, and the constancy of the speed of light.
Representation of Lorentz Fields
Explains the representation of Lorentz fields and the concept of gravitons and gravitinos.
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