Difference between revisions of "AIM 5113"
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− | + | Statistical Reasoning, Distributions | |
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− | * | + | * Understanding probabilistic and statistical reasoning, Excel, data visualization |
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|Week 5 | |Week 5 | ||
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− | + | Monte Carlo Method | |
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− | * | + | * Numerical integration, implementing the Monte-Carlo method |
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|Week 6 | |Week 6 | ||
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− | + | Introduction to ODEs | |
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− | * | + | * Statement of basic theorems, higher-order equations |
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|Week 7 | |Week 7 | ||
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− | + | Boundary conditions, phase portraits, Finite difference methods. | |
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− | * | + | * Learn to implement finite difference methods |
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|Week 8 | |Week 8 | ||
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− | + | Frequency domain methods, Laplace transforms | |
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− | * | + | * Applying transform methods to solve ODEs |
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|Week 9 | |Week 9 | ||
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− | + | Control theory | |
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− | * | + | * Designing and implementing control for systems of ODEs |
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|Week 10 | |Week 10 | ||
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− | Introduction to | + | Introduction to PDEs |
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Derivatives | Derivatives | ||
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− | * | + | * Basic PDEs such as Laplace and Wave equation |
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|Week 11 | |Week 11 | ||
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− | + | Signal processing and data acquisition | |
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− | * | + | * z-transform, Discrete Fourier Transform |
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|Week 12 | |Week 12 | ||
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− | + | Fourier and Laplace transform revisited | |
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− | + | Optimization I | |
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− | * | + | * Linear vs Nonlinear programming |
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|Week 14 | |Week 14 | ||
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− | + | Optimization II | |
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− | * | + | * Optimal control, Neural Networks |
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Revision as of 08:16, 23 March 2023
Course description
This course introduces students to mathematical techniques useful in an industrial setting.
Topics List
Date | Sections | Topics | Prerequisite Skills | Student Learning Outcomes |
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Week 1 |
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Model Fitting, Basis Functions and Applications of the Inner Product |
| |
Week 2 |
|
Model Fitting, Basis Functions and Applications of the Inner Product |
| |
Week 3 |
|
Model Fitting, Basis Functions and Applications of the Inner Product |
| |
Week 4 |
|
Statistical Reasoning, Distributions |
| |
Week 5 |
|
Monte Carlo Method |
| |
Week 6 |
|
Introduction to ODEs |
| |
Week 7 |
|
Boundary conditions, phase portraits, Finite difference methods. |
| |
Week 8 |
|
Frequency domain methods, Laplace transforms |
|
|
Week 9 |
|
Control theory |
|
|
Week 10 |
|
Introduction to PDEs |
Derivatives |
|
Week 11 |
|
Signal processing and data acquisition |
|
|
Week 12 |
|
Fourier and Laplace transform revisited |
|
|
Week 13 |
|
Optimization I |
| |
Week 14 |
|
Optimization II |
|
|