36 monthsProgramme duration
27,300 GBPTuition Fee/year
SepStarting Month
Programme overview
Main Subject
Engineering - Mechanical
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
- Learn to apply in-demand engineering expertise to real industry needs in aerospace energy and manufacturing for a safer, cleaner future.
- Develop essential practical skills in our specialist labs and workshops, featuring professional-grade facilities for complex system design and prototyping.
- Benefit from our advanced training based on practice, alongside dedicated academic advisers and opportunities to meet employers.
Mechanical engineering is about solving real-world problems through creativity and innovation. It is crucial to the advancement of technology, the enhancement of human well-being, and the promotion of sustainable development.
You'll develop skills that could help you develop energy-efficient systems to minimise waste, reduce energy consumption or mitigate environmental impact. You'll also learn financial, strategic and project management - equipping you with the skills to manage complex engineering projects and lead multidisciplinary teams.
At Sussex, we undertake world-class research, which enriches your teaching. Our Energy and Materials Engineering Research Centre, for example, has specialisms in dynamics and control, thermofluids, energy efficiency, energy storage, materials, and manufacturing.
You’ll explore core subjects such as:
- engineering mechanics
- thermodynamics
- fluid dynamics
- materials science.
You'll gain practical experience, including in our Future Technologies Labs. There is also a dedicated manufacturing lab with facilities such as CNC machines and 3D printers. The curriculum allows for specialisation in advanced topics, including:
- mechanical dynamics
- advanced thermofluids
- computational fluid dynamics.
You’ll design and develop mechanical systems using CAD software, carry out engineering analysis and computer simulations, and work on real-world projects under the guidance of lecturers.
Through collaborative group projects such as Formula Student, you'll build essential professional skills, such as problem-solving, teamwork, and communication.
We have dedicated academic advisers to support you during you time at Sussex, as well as a team of student mentors. You could go on to use your skills and experience to help develop sustainable power generation, power-trains for automotive vehicles or jet engines for aircraft propulsion.
Programme overview
Main Subject
Engineering - Mechanical
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
- Learn to apply in-demand engineering expertise to real industry needs in aerospace energy and manufacturing for a safer, cleaner future.
- Develop essential practical skills in our specialist labs and workshops, featuring professional-grade facilities for complex system design and prototyping.
- Benefit from our advanced training based on practice, alongside dedicated academic advisers and opportunities to meet employers.
Mechanical engineering is about solving real-world problems through creativity and innovation. It is crucial to the advancement of technology, the enhancement of human well-being, and the promotion of sustainable development.
You'll develop skills that could help you develop energy-efficient systems to minimise waste, reduce energy consumption or mitigate environmental impact. You'll also learn financial, strategic and project management - equipping you with the skills to manage complex engineering projects and lead multidisciplinary teams.
At Sussex, we undertake world-class research, which enriches your teaching. Our Energy and Materials Engineering Research Centre, for example, has specialisms in dynamics and control, thermofluids, energy efficiency, energy storage, materials, and manufacturing.
You’ll explore core subjects such as:
- engineering mechanics
- thermodynamics
- fluid dynamics
- materials science.
You'll gain practical experience, including in our Future Technologies Labs. There is also a dedicated manufacturing lab with facilities such as CNC machines and 3D printers. The curriculum allows for specialisation in advanced topics, including:
- mechanical dynamics
- advanced thermofluids
- computational fluid dynamics.
You’ll design and develop mechanical systems using CAD software, carry out engineering analysis and computer simulations, and work on real-world projects under the guidance of lecturers.
Through collaborative group projects such as Formula Student, you'll build essential professional skills, such as problem-solving, teamwork, and communication.
We have dedicated academic advisers to support you during you time at Sussex, as well as a team of student mentors. You could go on to use your skills and experience to help develop sustainable power generation, power-trains for automotive vehicles or jet engines for aircraft propulsion.
Admission Requirements
For entry, either Mathematics: Analysis and Approaches or Mathematics: Applications and Interpretation at Higher Level will be accepted.
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