The course emphasizes the application of cutting-edge 
topics such as advanced mechanics of materials, thermodynamics, and advanced 
engineering modelling techniques to real-world problems, incorporating 
sustainable, environmental, and ethical implications, equipping students with 
the ability to design, analyse, and implement either electrical and electronic, 
mechanical, or manufacturing solutions to complex problems. 
Additionally, students explore emerging technologies and 
industrial trends, ensuring they are well-prepared to adapt to the rapidly 
evolving technologies within engineering.
Upon successful completion of the program, graduates are 
equipped with the knowledge, skills, and qualifications necessary to pursue a 
wide range of career opportunities within the field of engineering. They could 
further their studies through postgraduate research and professional 
certifications enhancing career prospects.
With many practical and hands-on learning experiences, incorporated 
within the academic delivery, including experimental and advanced software 
analysis systems, involving
Laboratory equipment: -
  - Control systems equipment and controllers
- VR studio (in development)
- SolidWorks (Electrical/Mechanical)
- Metrology equipment and preparing samples
- Robotic systems -turtle bot waffle3 
- Raspberry Pie
- 3D Printers
- ANSYS Research Licences includes, FEA, CFD etc. 
- Ansys Electrical, Electronics and Electromagnetics
- SolidWorks
- MATLAB
- Simulink with multiple applications for 90 students
Our highly experienced industry experts and academics (PhD) will guide you 
through your learning, including lectures, seminars, online activities, 
practical activities, laboratory skills, peer-group learning, and independent 
study. 
 
You will undertake various assessments, including 
professional discussions, practical’s, and presentations.