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Lecture
Linear Applications: Matrices and Transformations
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Related lectures (30)
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Isometries in Euclidean Spaces
Explores isometries in Euclidean spaces, including translations, rotations, and linear symmetries, with a focus on matrices.
Symmetries of Navier-Stokes Equations
Explores the symmetries of Navier-Stokes equations in periodic boxes, including translations, transformations, rotations, and scaling.
Isometries: Definition and Examples
Explores isometries, distinguishing between rotations and reflections, and the preservation of orientation in geometric transformations.
Matrices and Orthogonal Transformations
Explores orthogonal matrices and transformations, emphasizing preservation of norms and angles.
Rotations and Symmetries
Covers the preservation of isometry by rotations and symmetries.
Discrete Symmetries: Asymptotic States and S-matrix
Covers the concept of discrete symmetries, focusing on the introduction to asymptotic states and S-matrix.
Rotations (2D): Definitions and Analytical Expressions
Covers the concept of 2D rotations and their analytical expressions.
Geometric Transformations in R2 and R3: Visualizations and Rotations
Covers visualizations in orthonormal bases in R2, focusing on rotations and reflections.
Symmetries in Mechanics and Wave Equations
Explores symmetries in Newtonian mechanics and wave equations, highlighting their significance in understanding physical laws.
Symmetries of the Wave Equation
Explores the symmetries of the wave equation under Lorentz transformations and the Poincare group.