Lecturer: Prof. W. Gilbert Strang
College/University: Massachusetts Institute of Technology (MIT)
- The Geometry of Linear Equations
- Elimination with Matrices
- Multiplication and Inverse Matrices
- Factorization into A=LU
- Transposes, Permutations, and Spaces Rn
- Column Space and Nullspace
- Solving Ax=0: Pivot Variables, special Solutions
- Solving Ax=b: Row Reduced Form R
- Independence, Basis, and Dimension
- The Four Fundamental Subspaces
- Matrix Spaces
- Graphs, Networks, and Independence Matrices
- Review
- Orthogonal Vectors and Subspaces
- Projections onto Subspaces
- Projection Matrices and Least Squares
- Orthogonal Matrices and Gram-Schmidt
- Properties of Determinants
- Determinant Formulas and Cofactors
- Cramer's Rule, Inverse Matrix, and Volume
- Eigenvalues and Eigenvectors
- Diagonalization and Powers of A
- Differential Equations and eAt
- Markov Matrices and Fourier Series
- Review
- Symmetric Matrices and Positive Definiteness
- Complex Matrices; Fast Fourier Transform
- Positive Definite Matrices and Minima
- Simliar Matrices and Jordan Form
- Singular Value Decomposition
- Linear Transformation and Their Matrices
- Change of Basis; Image Compression
- Review
- Left and Right Inverses; Pseudoinverses
- Review
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