Course summary
Our Mechanical Engineering degree adopts a practical approach that will develop your skills and knowledge for a career involving innovation and leadership. Mechanical engineering is concerned with anything that moves and many things that don’t. From a simple nut and bolt, through to the complex multi-physics of aerodynamics in Formula One, mechanical engineering solves the broadest range of challenges and leads to a multitude of different and exciting careers. Our approach reinforces your learning from lectures through practical activities, and allows you to fully assess your assumptions while building teamwork and project management skills essential to your future career. The degree is professionally accredited by the Institution of Mechanical Engineering (IMechE) as meeting partial fulfilment of the educational requirements to become a Chartered Engineer. Year 1 In the modern world, Mechanical Engineers are part of small or large teams developing complex systems, which is why our broad based common first year adds significant value to your degree. You will study themes from within mechanical engineering, but also the fundamentals behind electrical, electronics and chemical processes, along with a solid foundation in engineering mathematics. Year 2 Specialist modules in mechanical engineering will begin in the second year, where you will cover main themes of materials, statics and dynamics, fluids and thermodynamics, complemented by design and laboratory activities. You have the opportunity to undertake a business development project, to introduce you to Industry 4.0 concepts. Year 3 In year three, you will work on an engaging individual project shaped over your interests and ambitions. Your supervisor, a leading specialist in the subject area, will guide you to gain an in-depth knowledge of the topic for successful project completion. Previous examples include:
- Wind turbine blade icing study
- Microstructural design of steels for improving strength and toughness
- Graphene-based coating systems for corrosion protection
- Lightweight pipe inspection robot
- Revolutionary flywheel energy storage (FES) solution
How to apply
This is the deadline for applications to be completed and sent for this course. If the university or college still has places available you can apply after this date, but your application is not guaranteed to be considered.
Application codes
- Course code:
- H300
- Institution code:
- L14
- Campus name:
- Main Site
- Campus code:
- -
Points of entry
The following entry points are available for this course:
- Year 1
- Year 2
Entry requirements
Qualification requirements
A level - ABB
Pearson BTEC Level 3 National Extended Diploma (first teaching from September 2016)
Access to HE Diploma - D: 30 credits M: 15 credits
International Baccalaureate Diploma Programme - 32 points
Minimum of four GCSEs at grade B or 5 with Mathematics at grade B or 6, and GCSE English Language at grade C or 4
Student Outcomes
The number of student respondents and response rates can be important in interpreting the data – it is important to note your experience may be different from theirs. This data will be based on the subject area rather than the specific course. Read more about this data on the Discover Uni website.
Fees and funding
Tuition fees
No fee information has been provided for this course
Tuition fee status depends on a number of criteria and varies according to where in the UK you will study. For further guidance on the criteria for home or overseas tuition fees, please refer to the UKCISA website .
Additional fee information
Provider information
Lancaster University
Bailrigg
Lancaster
LA1 4YW