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Pseudo-differential operator
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Related lectures (12)
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Differential Operators: Vector Analysis
Covers differential operators, vector analysis, Fourier analysis, and potential fields with applications to gravity.
Discrete Symmetries Introduction
Introduces the concept of discrete symmetries in Quantum Field Theory and their impact on particles and anti-particles.
Discrete Symmetries Introduction
Covers the introduction to discrete symmetries and the violation of symmetry by weak interactions.
Vector Analysis: Applications and Operators
Explores vector fields, potentials, Fourier analysis, and differential operators in scalar fields.
Adding Blocks in Scratch
Covers the process of adding new blocks in Scratch.
Quantum Physics I
Covers commutators, observables, uncertainty principle, displacement operator, Cauchy-Schwarz inequality, and transforming operators.
Signals & Systems II: Convolution Stability and Operators
Explores convolution stability, LID operators, and the Z-transform properties.
Signals & Systems II: Difference Equations and Operators
Covers difference equations, z-transform method, system equivalence, and stability criteria.
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.
Lindblad equation
Covers the interpretation of the Lindblad equation and its unitary part in quantum gases.
States of Composite Systems
Covers the states of composite systems in Hilbert space, including operators, observables, tensor products, eigenvalues, and partial measurements.
Light-ray Operators: Generalization and Applications
Covers light-ray operators in conformal field theory and their properties, including the Null Energy Condition and connections to Lorentz inversion formulas.
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