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Related lectures (31)
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Group Theory: Reducible and Irreducible Representations
Explores group theory in quantum physics, emphasizing reducible and irreducible representations, conservation laws, and group properties.
Group Representations: Matrices and Symmetry
Explores group representations using matrices, discussing reducible vs. irreducible representations and the Great Orthogonality Theorem.
Fundamentals of Electromagnetic Waves and Their Properties
Provides an overview of electromagnetic wave properties, including speed, refraction, frequency spectrum, and polarization.
Risk Analysis and Management: Principles II
Covers risk analysis principles, terminology, and quantification methods in engineering.
Quantum Mechanics: Commutators and Ehrenfest Theorem
Covers the formalism of quantum mechanics, focusing on commutators, the Ehrenfest theorem, and their implications for measurements and uncertainties.
Ideals and Representations
Covers ideals, representations, modules, and maximal ideals in associative algebras.
Eigenvalues and Eigenvectors
Covers the concept of eigenvalues and eigenvectors in linear algebra, focusing on the properties of endomorphisms.
Quantum Harmonic Oscillator: Coupling and Coherent States
Covers the quantum harmonic oscillator and its applications in coupling quantum circuits.
Fluid Dynamics: Oscillation and Streamline Analysis
Covers fluid dynamics principles, focusing on oscillation frequency and streamline analysis, along with method resolution in programming.
Mathematics: Cylinders and Parametrizations
Discusses the mathematical concepts of cylinders and their parametrizations, including surface area, volume, and related exercises.
Representation Theory: Algebras and Homomorphisms
Covers the goals and motivations of representation theory, focusing on associative algebras and homomorphisms.
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