Overview
Description
Formulation of differential models, balances of masses, force, momentum and energy. Parameter reduction, scaling, transformations. Initial and boundary conditions. Analog, analytical and numerical solution techniques.
Requirements
Units
LectureN/A
Learning Outcomes
- apply knowledge of mathematics, science and engineering to formulate descriptive differential models. They will be able to solve the developed models using computational techniques.
- identify, formulate and solve engineering problems which are derived from scientific principles and used to solve applied engineering problems.
- use the techniques, skills, and modern engineering tools, necessary for engineering practice.