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Lecture
Electromagnetic Fields
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Related lectures (31)
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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.
Vector Fields and Lorentz Tensors: Representation Theory
Covers the transformation properties of vector fields and their representation in Lorentz tensors.
Lorentz Transformations and Covariant Tensors
Explores Lorentz transformations, covariant tensors, rotational invariance, and linear transformations in vector spaces.
Symmetry Breaking: Magnetic Fields in Cosmology
Covers symmetry breaking and its role in generating magnetic fields in cosmology.
QED: Gauge Theories
Covers Quantum Electrodynamics (QED), instantons, Feynman rules, and gauge theories in modern particle physics.
EM Field: Quantum Field Theory II
Covers the electromagnetic (EM) field in Quantum Field Theory II, discussing gauge transformations, symmetry principles, and field quantization.
Tensors and Lorentz Transformations
Covers tensors, Lorentz transformations, and electrodynamics in relativistic notation.
Newton's Laws
Covers Newton's three laws of motion, fundamental forces, and exercises, including gravitational and electromagnetic forces.
Scalar, Vector or Tensor? Gravity
Discusses defining tensors, space-time dimensionality, and challenges in formulating a relativistic theory of gravity.
EM Field: Discrete Symmetries
Covers EM Field and Discrete Symmetries, emphasizing the importance of symmetries in quantum field theory.