Difference between revisions of "MAT2233"
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(Began second table of topics ( up to inverses)) |
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− | <div style="text-align: center;">1.1 | + | <div style="text-align: center;">1.1 and 1.2</div> |
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− | * | + | * Adding equations and multiplying equations by constants <!-- 1073-Mod 12.1 --> |
− | * [[Solving Equations]] <!-- 1073-Mod R --> | + | * [[Solving Equations and Inequalities]] <!-- 1073-Mod R --> |
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− | [[Vectors | + | [[Vectors and Matrices]] |
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+ | [[Gauss-Jordan Elimination]] | ||
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− | * Vectors and vector | + | * Vectors and vector addition |
* Matrix notation | * Matrix notation | ||
− | * The | + | * The Gauss-Jordan method for solving a linear system of equation |
* The rank of a matrix | * The rank of a matrix | ||
* Sums of Matrices | * Sums of Matrices | ||
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− | |Week 3 | + | |Week 3 |
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* [[Range of a Function]] <!-- 1073-Mod 1.2-> | * [[Range of a Function]] <!-- 1073-Mod 1.2-> | ||
− | * [[Vectors | + | * [[Vectors and Matrices]], [[Gauss-Jordan Elimination]] <!-- 2233-1.3--> |
* [[Transformations of Functions]] <!-- 1073-Mod 6 --> | * [[Transformations of Functions]] <!-- 1073-Mod 6 --> | ||
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− | |Week | + | |Week 3 |
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* The Identity matrix | * The Identity matrix | ||
* The Inverse of a Matrix | * The Inverse of a Matrix | ||
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* Various characterizations for an invertible matrix | * Various characterizations for an invertible matrix | ||
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+ | |Week 4 | ||
− | | | + | || |
− | + | <div style="text-align: center;">1.8 and 1.9</div> | |
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− | <div style="text-align: center;"> | + | <div style="text-align: center;">2.1</div> |
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− | [[ | + | [[Introduction to Linear Transformations]] |
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− | * [[Systems of Equations | + | * [[Introduction to Linear Systems of Equations]] <!-- 2233-1.1 & 1.2 --> |
− | * [[ | + | * [[Vectors and Matrices]], [[Gauss-Jordan Elimination]] <!-- 1073-7.2--> |
+ | * [[Transformations of Functions]] <!-- 1073-Mod 6 --> | ||
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− | * | + | * Linear Transformations |
− | * | + | * Requirements for a transformation to be linear |
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+ | |Week 5 | ||
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+ | || | ||
− | + | <div style="text-align: center;">1.7, 2.8, and 2.9</div> | |
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− | <div style="text-align: center;"> | + | <div style="text-align: center;">3.2</div> |
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− | [[ | + | [[Subspaces of Rⁿ and Linear Independence]] |
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− | * [[ | + | * [[Matrix Algebra and Matrix Multiplication]] <!-- 2233-2.3--> |
− | * [[Linear | + | * [[The Inverse of a Linear Transformation]] |
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− | * | + | * Definition of a subspace of Rⁿ |
− | * | + | * Defining linear independence for a set of vectors |
− | * | + | * Definition of a basis for a subspace |
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|- | |- | ||
+ | |Week 6 | ||
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+ | <div style="text-align: center;">4.1</div> | ||
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− | <div style="text-align: center;"> | + | <div style="text-align: center;">4.1</div> |
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− | [[ | + | [[Introduction to Vector Spaces]] |
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− | * [[ | + | * [[Matrix Algebra and Matrix Multiplication]] <!-- 2233-2.3--> |
− | + | * [[Subspaces of Rⁿ and Linear Independence]] | |
− | * [[ | ||
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− | * Linear | + | * Definition of a vector space(or linear space) |
− | * | + | * Subspaces of vector spaces |
+ | * Linear combinations and bases for vector spaces | ||
+ | * Examples of vector spaces of functions | ||
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|- | |- | ||
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− | | | + | |Week 6 |
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− | + | <div style="text-align: center;">4.2</div> | |
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− | [[ | + | [[The Column Space and Nullspace of a Linear Transformation]] |
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− | * [[ | + | * [[Introduction to Linear Transformations ]] |
− | * [[Range | + | * [[Range of a Function]] <!-- 1073- mod 1.2--> |
− | * [[ | + | * [[The Inverse of a Linear Transformation]] |
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− | * The image of a | + | * The image (or column space) of a linear transformation |
− | * The kernel of a linear transformation | + | * The kernel (or nullspace) of a linear transformation |
− | * | + | * Properties of the kernel |
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− | + | |Week 7 | |
− | |Week | ||
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− | <div style="text-align: center;">3. | + | <div style="text-align: center;">4.3 and 4.5</div> |
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− | + | <div style="text-align: center;">3.3 and 4.1</div> | |
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− | + | [[The Dimension of a Vector Space]] | |
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− | + | * [[Introduction to Vector Spaces]] | |
+ | * [[Subspaces of Rⁿ and Linear Independence]] | ||
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− | * | + | * The number of vectors in a basis of R<sup>n</sup> |
− | * | + | * Dimension of a subspace in Rⁿ |
− | * | + | * The dimension of a vector space |
+ | * The dimension of the nullspace (or kernel) and the column space (or image) | ||
+ | * The Rank-nullity Theorem | ||
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− | | | + | |Week 8 |
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− | + | <div style="text-align: center;">6.1 and 6.2</div> | |
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− | + | <div style="text-align: center;">Appendix A and 5.1</div> | |
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− | + | [[Dot Products and Orthogonality]] | |
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− | + | * [[The Dimension of a Vector Space]] | |
− | + | * [[Subspaces of Rⁿ and Linear Independence]] | |
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− | * [[ | ||
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+ | * Orthogonal vectors | ||
+ | * Length (or magnitude or norm) of a vector | ||
+ | * Unit vectors | ||
+ | * Orthonormal vectors | ||
+ | * Orthogonal projections | ||
+ | * Orthogonal complements | ||
+ | * Cauchy-Schwarz inequality | ||
+ | * The angle between vectors | ||
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+ | |- | ||
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− | + | |Week 9 | |
− | |Week 9 | ||
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− | <div style="text-align: center;"> | + | <div style="text-align: center;">6.3 and 6.4</div> |
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− | + | <div style="text-align: center;">5.2 and 5.3</div> | |
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− | + | ||
− | + | <p> [[Orthonormal Bases and the Gram-Schmidt Process]] </p> | |
− | + | <p> [[Orthogonal Transformations and Orthogonal Matrices]] </p> | |
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− | + | * [[Subspaces of Rⁿ and Linear Independence]] | |
− | + | * [[Dot Products and Orthogonality]] | |
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− | + | * Orthogonal transformations | |
+ | * Orthonormal Bases | ||
+ | * Orthogonal matrices | ||
+ | * The transpose of a matrix | ||
+ | * The Gram-Schmidt Process | ||
+ | * QR factorization | ||
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− | | | + | |Week 10 |
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− | + | <div style="text-align: center;">6.5 and 6.6</div> | |
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− | + | <div style="text-align: center;">5.4</div> | |
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− | + | [[The Least-squares Solution]] | |
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− | [[ | ||
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− | * [[ | + | * [[Dot Products and Orthogonality]] |
− | + | * [[The Column Space and Nullspace of a Linear Transformation]] | |
− | * [[ | ||
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− | * | + | * The orthogonal complement of the image is equal to the left nullspace (or kernel of the transpose) for all matrices |
− | + | * The least-squares solution for a linear system | |
− | * | + | * Data fitting using the least-squares solution |
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− | | | + | |Week 11 |
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− | + | <div style="text-align: center;">3.1 and 3.2</div> | |
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− | [[Determinants]] | + | <p> [[Introduction to Determinants]] </p> |
+ | <p> [[Cramer's Rule]] </p> | ||
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− | * [[ | + | * [[Orthonormal Bases and the Gram-Schmidt Process]] |
− | + | * [[The Inverse of a Linear Transformation]] | |
− | * [[ | + | * [[Sigma Notation]] |
− | * [[ | ||
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− | * | + | * The determinant of 2 by 2 and 3 by 3 matrices |
− | * | + | * The determinant of a general n by n matrix |
− | * | + | * The determinant of a triangular matrix |
− | * Invertibility | + | * Properties of the determinant |
+ | * The determinant of the transpose | ||
+ | * Invertibility and the determinant | ||
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|- | |- | ||
− | |Week 12 | + | |
+ | |Week 12 | ||
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− | <div style="text-align: center;"> | + | <div style="text-align: center;">3.3</div> |
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− | + | <div style="text-align: center;">6.3</div> | |
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− | + | [[The Geometric Interpretation of the Determinant]] | |
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− | + | * [[Orthonormal Bases and the Gram-Schmidt Process]] | |
− | + | * [[Introduction to Determinants]] | |
− | + | * [[The Inverse of a Linear Transformation]] | |
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− | + | * Cramer's Rule | |
− | + | * The adjoint and inverse of a matrix | |
− | + | * The area of a parallelogram and the volume of a parallelepiped | |
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− | + | |Week 13 | |
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− | + | <div style="text-align: center;">The beginning of 5.3 as well as the sections 5.1 and 5.2</div> | |
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− | <div style="text-align: center;">7.2 and 7.3</div> | + | <div style="text-align: center;">7.1, 7.2 and the beginning of 7.3</div> |
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− | [[ | + | [[Eigenvalues and Eigenvectors]] |
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− | * [[Determinants]] | + | * [[Introduction to Determinants]] |
− | * [[ | + | * [[The Column Space and Nullspace of a Linear Transformation]] |
− | * [[ | + | * [[The Inverse of a Linear Transformation]] |
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− | * | + | * The requirement for a matrix to be diagonalizable |
− | * Eigenvalues of | + | * Definition of an eigenvector |
− | + | * The characteristic equation used to find eigenvalues | |
− | * Eigenspaces | + | * Eigenvalues of a triangular matrix |
− | + | * Eigenspaces for specific eigenvalues | |
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− | |Week 14 | + | |
+ | |Week 14 | ||
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− | <div style="text-align: center;"> | + | <div style="text-align: center;">5.3 and 5.4</div> |
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− | + | <div style="text-align: center;">3.4 and 7.3</div> | |
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− | + | [[Diagonalization of Matrices]] | |
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− | + | * [[Eigenvalues and Eigenvectors]] | |
− | + | * [[The Column Space and Nullspace of a Linear Transformation]] | |
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− | [[ | ||
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− | * | + | * Similar matrices |
− | * | + | * Diagonalization in terms of linearly independent eigenvectors |
− | * | + | * Algebraic and geometric multiplicity for a specific eigenvalue |
+ | * The strategy for diagonalization | ||
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Latest revision as of 12:58, 29 January 2022
A comprehensive list of all undergraduate math courses at UTSA can be found here.
The Wikipedia summary of Linear Algebra and its history.
Topics List
Date | Sections from Lay | Sections from Bretscher | Topics | Prerequisite Skills | Student Learning Outcomes |
---|---|---|---|---|---|
Week 1 |
1.1 and 1.2
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1.1
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Week 2 |
1.3, 1.4, and 1.5
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1.2 and 1.3
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Week 3 |
2.1
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2.3
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Week 3 |
2.2 and 2.3
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2.4
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Week 4 |
1.8 and 1.9
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2.1
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Week 5 |
1.7, 2.8, and 2.9
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3.2
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Week 6 |
4.1
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4.1
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Week 6 |
4.2
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3.1
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Week 7 |
4.3 and 4.5
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3.3 and 4.1
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Week 8 |
6.1 and 6.2
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Appendix A and 5.1
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Week 9 |
6.3 and 6.4
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5.2 and 5.3
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Week 10 |
6.5 and 6.6
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5.4
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Week 11 |
3.1 and 3.2
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6.1 and 6.2
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Week 12 |
3.3
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6.3
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Week 13 |
The beginning of 5.3 as well as the sections 5.1 and 5.2
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7.1, 7.2 and the beginning of 7.3
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Week 14 |
5.3 and 5.4
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3.4 and 7.3
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