| Learning Outcomes |
PO |
MME |
| The students who succeeded in this course: |
|
|
| LO-1 |
Will have the ability to use numerical methods in analyzing a problem in engineering |
PO-1 Recovery adequate knowledge in the field of mathematics, science and civil engineering; ability to use theoretical and applied information in these areas to model and solve Civil Engineering problems.
PO-3 The ability of designing a complex system, process, device product under realistic constraints and conditions and to meet certain requirements; for this purpose, the ability of applying modern design methods. PO-4 Skill of development, selection, using modern techniques and tools are necessary for engineering applications, ability of using information technology effectively.
|
Examination |
| LO-2 |
Will have the ability to choose the right solution for a given topic |
PO-6 Ability of working within single-disciplinary and multi-disciplinary teams effectively and skill of individual work. PO-9 Awareness of professional and ethical responsibilities. PO-11 Knowledge about contemporary issues and the global and societal effects of engineering practices on health, environment, and safety awareness of the legal consequences of engineering solutions
|
Examination |
PO: Programme Outcomes MME:Method of measurement & Evaluation |
| Course Contents |
| Error calculation, solutions of linear and non-linear equation and simultaneous equations, numerical differential and integration, interpolation, curve-fitting. |
| Weekly Course Content |
| Week |
Subject |
Learning Activities and Teaching Methods |
| 1 |
Introduction and error estimation
|
Description Method |
| 2 |
Taylor / McLaurin Series |
Description Method |
| 3 |
Solution of non-linear equations: Bi-section method, Simple iteration. |
Description Method |
| 4 |
Solution non-linear equations: Newton-Raphson |
Description Method |
| 5 |
Solution non-linear equations: Secant |
Description Method |
| 6 |
Inversion of matrix: Gauss Elimination
|
Description Method |
| 7 |
Inversion of matrix: L.U method |
Description Method |
| 8 |
mid-term exam |
|
| 9 |
Solution non-linear equations systems: Linear iteration |
Description Method |
| 10 |
Solution non-linear equations systems: Newton method |
Description Method |
| 11 |
Eigenvalue problems |
Description Method |
| 12 |
Linear regression and curve-fitting
|
Description Method |
| 13 |
Numerical differential and Integration (trapezoidal, Gauss and Simpson) |
Description Method |
| 14 |
Numerical differential and Integration (trapezoidal, Gauss and Simpson)
|
Description Method |
| 15 |
Differential equations |
Description Method |
| 16 |
final exam |
|
| Recommend Course Book / Supplementary Book/Reading |
| 1 |
Karagöz İ. Sayısal Analiz, Nobel Yayınevi, 2008. |
| 2 |
Bakioğlu M. Sayısal Analiz, Beta Yayınevi, 2013 |
| Required Course instruments and materials |
| Karagöz I. Sayisal Analiz, Nobel Yayinevi, 2008.
Bakioglu M. Sayisal Analiz, Beta Yayinevi, 2013
Bakioglu M, Çelik M. Mühendisler için EXCEL uygulamalari, Nobel Yayinevi,2013. |