Mechanical Engineering Technology (MET)

MET focuses on the practical application of engineering principles to design, test, and build mechanical systems. It emphasizes hands-on skills and the use of modern tools.

Overview

MET program is focuses on the application of engineering principles to design, develop, test, and manufacture mechanical devices and systems. Unlike traditional mechanical engineering, which is more theory-focused, MET emphasizes practical implementation, hands-on problem-solving, and the use of modern tools and technologies.
What you'll learn in the BA program

What you'll learn in the BA program

Students in MET learn practical skills to design, build, test, and maintain mechanical systems. They study mechanical design with CAD tools, materials and manufacturing processes such as machining and CNC, and applied mechanics including statics, dynamics, thermodynamics, and fluid mechanics. The program also covers automation with sensors, PLCs, and basic robotics, as well as machine systems like engines, pumps, and HVAC. Students gain experience in prototyping, testing, troubleshooting, and using modern engineering tools to solve real-world problems.

  • Metrology and Quality Control
  • Principles of Physics II (with Laboratory)
  • CNC Programming and Machining I
  • Applied Engineering Mathematics
  • Statics with Applications (with Laboratory)

Admission requirements

GCE A Level : Minimum 12 points, with a B grade in Physics and Mathematics / Minimum 12 points, note B en Physique et en Mathématiques, Baccalaureate : Series C, D, E, or F / Série C, D, E ou F, with a minimum score of 12/20.
Admission requirements

Curriculum courses

Applied Engineering Mathematics, Statics with Applications and Laboratory, and Design and Manufacturing.

5 General Education Course
19 Major Education Course
Metrology and Quality Control course image
2 Credits

Metrology and Quality Control

Study of measurement techniques and methods to ensure product quality.

Principles of Physics II course image
4 Credits

Principles of Physics II

Advanced physics concepts including electricity, magnetism, and thermodynamics.

CNC Programming & Machining I course image
6 Credits

CNC Programming & Machining I

Introduction to CNC programming and machining processes

Principles of Physics II LAB course image
1 Credit

Principles of Physics II LAB

Laboratory experiments to apply physics theories practically.

Flexibility

Flexibility and Customization in MET Programs

Specialized Curriculum

Students gain practical experience through internships, and capstone projects, preparing them for roles in manufacturing, automation, and product design

Adaptability to Career Goals

These programs typically feature modular course structures, allowing students to specialize in areas like thermodynamics or materials science.

Tech-Enhanced Teaching

Faculty in MET programs often blend traditional instruction with digital tools, including simulation software and virtual labs.

Common questions students are asking us

Can I work in manufacturing, robotics, automation, product design, or R&D?

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