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Quantum Field Theory II
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Related lectures (30)
Quantum Theory: Lorentz Transformation
Explores the Lorentz transformation in Quantum Theory, emphasizing Fock space representation and momentum concepts.
EM Field: Discrete Symmetries
Covers EM Field and Discrete Symmetries, emphasizing the importance of symmetries in quantum field theory.
Tensors and Lorentz Transformations
Covers tensors, Lorentz transformations, and electrodynamics in relativistic notation.
Quantum Field Theory: Poincaré Group
Explores Einsteinian relativity, the Lorentz group, and Poincaré transformations, emphasizing proper and non-orthochronous components.
Special and General Relativity
Introduces special and general relativity, Einstein equations, and gravitational dynamics.
Relativistic Charged Particle Dynamics
Covers the equation of motion for a relativistic charged particle and Lorentz transformations, along with tensors and electrodynamics.
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.
Lorentz Transformation and Particle Representation
Explores Lorentz transformations, particle creation through momentum, and the Poincaré group.
Quantum Field Theory II: EM Field and Particle States
Covers the EM field and particle states in quantum field theory.
Lorentz-Minkowski Spacetime
Covers Lorentz-Minkowski spacetime, speed of light interpretation, isometries, and special relativity principles.
Proper Time: Lorentz Transformations
Explores worldlines, Lorentz transformations, proper time intervals, and inertial reference frames in relativistic physics.
Relativistic Quantum Mechanics
Explores special relativity, the Schrödinger and Dirac equations, antiparticles, and fermions' shortcomings.
Lie Algebra of Lorentz Group
Covers the Lie algebra of the Lorentz group, focusing on boosts, rotations, and transformations.
Relativistic Kinematics
MOOC: Mechanics: Change of Reference Frame and Relativity
Explores relativistic kinematics, including the transformation of coordinates, the Lorentz transformation, and the invariance of the space-time interval.
Principle of Relativity: Inertia Frames and Coordinate Transformations
MOOC: Mechanics: Change of Reference Frame and Relativity
Covers Galileo's principle of relativity, inertia frames, and Lorentz transformations in electromagnetism.
Discrete Symmetries: Introduction
Introduces discrete symmetries in Quantum Field Theory and discusses their implications in nature and interactions.
Reading and Lorentz Transformation
Covers reading, finding, Lorentz transformation, diffusion, and isolated systems.
Causal Structure of Spacetime
Explores the causal structure of spacetime in special relativity, focusing on the relativistic interval and Lorentz transformations.
Lie Groups: Representations and Transformations
Explores Lie groups, scalar fields, and vector spaces transformations.
General Relativity: Predictions and Observations
Explores general relativity, focusing on predictions and observations, including gravitational lensing, black holes, and cosmology.
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