Class schedule | HW assignments (Including preparation and review of the class.) | Amount of Time Required | |
---|---|---|---|
1. | Introduction: mathematical models(ODE and PDE), numrical simution | review numerical analysis and differential equations | 190minutes |
2. | numerical methods for ODEs One step method: Euler method and Runge-Kutta method |
review C programing | 190minutes |
3. | Mathematical background of one step method for ODE: consistency, convergence |
review C programing | 190minutes |
4. | numrical simulations of ODEs and visualization | review C programing and visualization | 190minutes |
5. | nonlinear models(ODE) | review differential equation and numrical methods(Euler method, Runge-Kutta method) | 190minutes |
6. | simulations: system of nonlinear ODEs | review differential equation and numrical methods(Euler method, Runge-Kutta method) | 190minutes |
7. | Finite difference method(FDM) | review finite difference method | 190minutes |
8. | mathematical background of FDM | reivew the lecture note | 190minutes |
9. | FD schemes for (nonlinear) models | reivew the lecture note | 190minutes |
10. | simulations and visualization: heat equation | reivew the lecture note | 190minutes |
11. | simulations and visualization: wave equation | reivew the lecture note | 190minutes |
12. | simulations and visualization: convection equation | reivew the lecture note | 190minutes |
13. | simulations and visualization: reaction-diffusion(RD) equation | reivew the lecture note。 | 190minutes |
14. | Group work: simulations and visualization for RD system Presentation |
reivew the lecture note and prepare the presentation | 190minutes |
Total. | - | - | 2660minutes |
reports and/or exam | presentation | Total. | |
---|---|---|---|
1. | 20% | 10% | 30% |
2. | 25% | 10% | 35% |
3. | 25% | 10% | 35% |
Total. | 70% | 30% | - |
Work experience | Work experience and relevance to the course content if applicable |
---|---|
N/A | N/A |