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Discrete Symmetries: Asymptotic States and S-matrix
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Related lectures (29)
Asymptotic States and S-matrix: Operators
Explores asymptotic states, S-matrix, and operators in quantum field theory, emphasizing the role of discrete symmetries and complete sets of states.
Asymptotic States and S-matrix
Covers the concept of asymptotic states and S-matrix in quantum field theory, focusing on the evolution of wave packets and the scattering states.
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Covers the concepts of cross section and lifetime in quantum fluids, focusing on transition and differential probabilities.
Asymptotic States and S-matrix
Explores asymptotic states, S-matrix, Lippmann-Schwinger equation, and energy robustness in quantum field theory.
Isometries in Euclidean Spaces
Explores isometries in Euclidean spaces, including translations, rotations, and linear symmetries, with a focus on matrices.
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Explains the inertia tensor, main axes, principal moments, and balancing of rotating solids.
Symmetries in Particle Physics
Explores symmetries in particle physics, covering parity, charge conjugation, fermion quantum numbers, chirality, and their applications in understanding particle interactions.
Estimators and Confidence Intervals
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Infinite Coin Tosses: Independence
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Symmetries in Mechanics and Wave Equations
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