Difference between revisions of "MAT3613"
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− | * | + | * Differential equations: what they are and why they are important; order of a differential equation; solutions; initial value problems. |
− | * | + | * Theory of first order differential equations; Cauchy problem; existence and uniqueness. |
− | + | * The method of separation of variables; examples of separable differential equations. | |
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+ | * HOMEWORK # 1 – First | ||
+ | * Order ODEs: Due at the beginning of Week IV | ||
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* Integration techniques. | * Integration techniques. | ||
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* and 3 | * and 3 | ||
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− | * | + | * Homogeneous differential equations. |
− | + | * Linear differential equations of first order; integrating factors. | |
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− | * | + | * Bernoulli equations. |
− | + | * Exact differential equations. The integrating factor for exact equations. | |
* nan | * nan | ||
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* Chaps. 1-3 | * Chaps. 1-3 | ||
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− | * | + | * Collect HOMEWORK # 1 Firs-order ODEs not solved for the first derivative: Clairaut equations, Lagrange equations. |
− | * | + | * Overview of the solutions methods discussed so far (Chapters 1-3). |
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* Integration techniques. Partial derivatives. Integrating factor methods. | * Integration techniques. Partial derivatives. Integrating factor methods. | ||
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− | * Linear | + | * MDTERM EXAM # 1: |
− | + | * First-order ODEs Linear independence and Wronskian. | |
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* Linear dependence, independenc e of vectors. | * Linear dependence, independenc e of vectors. | ||
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− | * | + | * Reduction of the order. Linear homogeneous differential equations. Abel’s theorem. |
− | * | + | * Fundamental solutions. Linear nonhomogeneous equations; variation of parameters. |
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* nan | * nan | ||
+ | * HOMEWORK # 2 – | ||
+ | * Second and higher order ODEs: Due at the beginning of Week X | ||
+ | * (extended later) | ||
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* Wronskian. Algebraic equations. Determinant s. | * Wronskian. Algebraic equations. Determinant s. | ||
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− | * | + | * Variation of parameters (continued) |
− | + | * Method of undetermined coefficients | |
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* Variation of parameters. Method of undetermine d coefficients. | * Variation of parameters. Method of undetermine d coefficients. | ||
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− | * | + | * SPRING BRAKE |
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* asdfas | * asdfas | ||
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− | * | + | * Preparation for remote instruction. |
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* asdfas | * asdfas | ||
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− | * | + | * Higher order ODEs. |
* nan | * nan | ||
* nan | * nan | ||
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* 6, 10 | * 6, 10 | ||
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− | * | + | * Overview of the solutions methods for second and higher order differential equations. |
− | * | + | * Collect HOMEWORK # 2 (extended deadline) |
* nan | * nan | ||
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− | * | + | * MDTERM EXAM # 2: |
− | * | + | * Second and higher-order ODEs |
− | * | + | * Laplace transform. Definition. |
− | * | + | * Main properties. |
− | + | * HOMEWORK # 3 – L- | |
− | + | * transform. Applications of L-transform for ODES and systems of ODEs: Due at the beginning of Week XV | |
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* Improper integrals with infinite limits. | * Improper integrals with infinite limits. | ||
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* 11 | * 11 | ||
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− | * | + | * Theorem(s) for inverse L- transforms |
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* 11 | * 11 | ||
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− | * | + | * Applications of L-transform to ODEs. |
− | * | + | * Applications of L-transform to systems of ODEs. |
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* Properties of the L- transform and inverse L-transform. | * Properties of the L- transform and inverse L-transform. | ||
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− | * | + | * Applications of L-transform to ODEs and systems of ODEs. |
− | + | * Overview of the solutions methods discussed. | |
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* Solutions methods discussed. | * Solutions methods discussed. |
Revision as of 09:29, 30 June 2020
Topics List
Date | Sections | Topics | Prerequisite Skills | Student Learning Outcomes |
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Week I |
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Week II |
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Week III |
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Week IV |
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Week V |
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Week VI |
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Week VII |
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Week VIII |
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Week IX |
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Week X |
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Week XI |
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Week XII |
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Week XIII |
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Week XIV |
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Week XV |
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Week XVI |
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