LEC # | TOPICS | INSTRUCTORS |
---|---|---|
Introduction | ||
1 | Overview - Aspirations of Modeling and Simulation, Logistics (PDF) | Yip |
2 | Diffusion at the Particle Level (PDF) | Yip |
3 | From Random Walks to Continuum Diffusion (PDF) | Bazant |
Part 1: Continuum Methods (CM) (PDF) | ||
4 | Conservation Laws | Rosales |
5 | Constitutive Relations | Rosales |
6 | Discrete/Continuum Issues | Rosales |
7 | Finite Difference Methods | Powell |
8 | Weighted Residual Finite Element Methods | Powell |
9 | Heat Conduction | Powell |
10 | Materials Processing Applications | Powell |
11 | Variational Finite Element Methods | Ulm |
12 | Elasticity Concepts and Problems | Ulm |
13 | Applications in Structural Mechanics | Ulm |
14 | Equations of Fluids Dynamics | Beers |
15 | Problems in Incompressible Flow | Beers |
16 | Fluid-Structure Interactions | Radovitzky |
17 | Multiscale Problems involving Continuum Mechanics | Radovitzky |
18 | CM Review | |
19 | Quiz 1 | |
Part 2: Particle Methods (PM) | ||
20 | Monte Carlo Methods I: Percolation (PDF) | Bazant |
21 | Monte Carlo Methods II: Fractal Patterns (PDF) | Bazant |
22 | Monte Carlo Methods III: Random Packings | Bazant |
23 | Basic Monte Carlo (PDF) | Mirny |
24 | Monte Carlo Modeling of Physical Systems (PDF) | Mirny |
25 | Optimization by MC and Genetic Programming (PDF) | Mirny |
26 | Stochastic Simulations in Biology | Mirny |
27 | Basic Classical Molecular Dynamics (PDF - 1.6 MB) | Buehler |
28 | Introduction to Interatomic Potentials (PDF - 1.7 MB) | Buehler |
29 | Modeling of Metals (PDF - 2.6 MB) | Buehler |
30 | Reactive Potentials (PDF - 2.9 MB) Dislocations in Nickel (AVI - 18.7 MB) | Buehler |
31 | MD Simulation of Fluids (PDF) | Hadjiconstantinou |
32 | Dilute Gases and Direct Simulation Monte Carlo (DSMC) I (PDF) | Hadjiconstantinou |
33 | Dilute Gases and DSMC II | Hadjiconstantinou |
34 | PM Review | |
35 | Quiz 2 | |
Part 3: Quantum Methods (QM) | ||
36 | Quantum Calculations in Modeling and Simulation | Yip |
37 | Introduction - Hartree-Fock and Density Function Theory Methods | Yip |
Final Project Presentations |