MEng Energy Engineering with Industrial Study
Entry requirements
A Level: A*AA /AAAA to include A level Mathematics and Chemistry or Physics. IB: 7,6,6 at Higher Level including Mathematics and Chemistry or Physics at Higher Level grade 6 with a minimum of 32 points overall. We will consider Standard Level Mathematics grade 7.. BTEC: only considered when combined with other qualifications.
About this course
Master of Engineering in Energy Engineering with Industrial Study, a chemical engineering degree centred on the scientific and practical aspects of the energy sector. Core topics include Systems Design, Data Analysis, Research Methods, and Project Management. This five-year programme includes an industrial study placement in the third year. The first year covers foundational principles through modules such as Chemistry and Materials, Introduction to Transport Phenomena, Discover: Labs and Data Analysis, and Modelling Concepts and Tools (MCT). The second year advances into Energy Systems, Policy, Markets and Regulation, Process Design Exercise, Science for Energy Engineering 2, and Sustainable Process Engineering. The third year consists of the Chemical Engineering Industrial Study. The fourth year features Design Project, Energy Data and Analytics, Science for Energy Engineering 3, and Energy efficiency and sustainability. The final year concludes with advanced study including Advanced Transport Processes, Research Project, Energy Systems Modelling, and Fuel Cell Systems, Modelling, and Control.
Modules
- Chemistry and Materials
- Introduction to Transport Phenomena
- Discover: Labs and Data Analysis
- Modelling Concepts and Tools (MCT)
- Process Design and Analysis
- Science for Energy Engineering 1
- Energy Systems, Policy, Markets and Regulation
- Process Design Exercise
- Science for Energy Engineering 2
- Sustainable Process Engineering
- Systems Design and Control
- Mass, Heat and Momentum Transport
- Chemical Engineering Industrial Study
- Design Project
- Energy Data and Analytics
- Science for Energy Engineering 3
- Energy efficiency and sustainability
- Energy Economics
- Plant Optimisation
- Business and Project Management
- Advanced Transport Processes
- Research Project
- Energy Systems Modelling
- Fuel Cell Systems, Modelling, and Control
- Energy Systems Design and Policy
- Environmental, Energy Law
- Industry 4.0 and Big Data
- Introduction to Hydrogen and Fuel Cells
- Net Zero Energy Systems
- Thermal Energy