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Linear Algebra: Operations and Applications
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Related lectures (43)
Eigenspaces: Definitions and Examples
MOOC: Linear Algebra (Part 2)
Introduces eigenspaces in linear algebra through definitions and practical examples of determining eigenspaces for matrices.
Linear Algebra: Systems of Equations and Transformations
Explores systems of linear equations, transformations, dilatation, rotation, and cross ratios in linear algebra.
Eigenvalues and Eigenvectors in 3D
Explores eigenvalues and eigenvectors in 3D linear algebra, covering characteristic polynomials, stability under transformations, and real roots.
Linear Algebra: Exercises
Covers exercises on matrices, vectors, and linear systems.
Elements of Lie Groups and Algebras
Explores the transformation of vectors and tensors in quantum physics, emphasizing Lie groups and algebras.
Linear Algebra Basics: Matrix Representations and Transformations
Explores linear algebra basics, emphasizing matrix representations of transformations and the importance of choosing appropriate bases.
Vector Transformation and Tense
Explores the transformation of vectors and tensors, including rotations and representations in quantum physics.
Linear Algebra in 3 Dimensions: Change of Bases
Explores changing bases in linear algebra in 3 dimensions, focusing on matrix transformations and vector representations.
Spherical Tensors and Wigner-Eckart Theorem
Covers the transformation of vectors and tensors in quantum physics.
Linear Algebra: Systems of Equations
Explores solving systems of equations using matrices and determinants.
Linear Applications: Matrices and Transformations
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Covers linear applications, matrices, transformations, and the principle of superposition.
Linear Transformations: Matrices and Applications
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Covers linear transformations using matrices, focusing on linearity, image, and kernel.
Linear Equations: Vectors and Matrices
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Covers linear equations, vectors, and matrices, exploring their fundamental concepts and applications.
Linear Algebra: Linear Dependence and Independence
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Explores linear dependence and independence of vectors in geometric spaces.
Linear Independence and Bases
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Covers linear independence, bases, and coordinate systems with examples and theorems.
Linear Algebra: Integers
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Explores linear algebra over integers, emphasizing solutions to A.x=b equations and Hermite normal form.
Matrix Operations: Linear Systems and Solutions
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Explores matrix operations, linear systems, solutions, and the span of vectors in linear algebra.
Linear Combinations and Matrix-Vector Product
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Explores linear combinations, matrix-vector product, and matrix equation solutions.
Linear Combinations: Vectors and Matrices
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Explores linear combinations of vectors and matrices in Rn, demonstrating geometric interpretations and matrix operations.
Linear Algebra: Systems of Equations and Vector Operations
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Explores systems of equations, vector operations, and geometric interpretations in linear algebra.
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