Engineering and Entrepreneurship with Year in Industry
Entry requirements
A level
Excluding General Studies. Grade A or above in Mathematics, Pure Mathematics or Further Mathematics and grade A in another Science subject required.
Access to HE Diploma
Pass the HE to Access Diploma with 30 L3 credits at Distinction and 15 L3 credits at Merit Grade. This must include 15 L3 credits at Distinction Grade in Maths and 15 L3 credits at Distinction grade in another Science subject area. Please also see our website for GCSE requirements
International Baccalaureate Diploma Programme
Applicants will be considered with IB 36 OR 666 in three Higher Level subjects. All applicants will be required to have Grade 6 in HL Maths (Analysis and Approaches) and another Science subject.
Pearson BTEC Level 3 National Extended Diploma (first teaching from September 2016)
Applicants studying one of the following BTEC Extended Diplomas will be considered without an A Level Science subject, however A Level Maths grade A is still required: Applied Science, Aeronautical Engineering, Building Services Engineering Construction and the Built Environment, Civil Engineering, Operations and Maintenance Engineering, Electrical/Electronic Engineering, Engineering, Manufacturing Engineering, Mechanical Engineering, Environmental Sustainability. Applicants studying any other BTEC Extended Diploma will be required to achieve grade A or above in A Level Maths and grade A in another A Level Science subject.
Scottish Advanced Higher
Grade A or above in Mathematics, Pure Mathematics or Further Mathematics and grade A in another Science subject required.
Scottish Higher
Grade A or above in Mathematics, Pure Mathematics or Further Mathematics and grade A in another Science subject required.
UCAS Tariff
We've calculated how many Ucas points you'll need for this course.
About this course
- Pitch for up to £10,000 to start a business as part of your degree
- A pioneering programme, designed to support innovators and entrepreneurs in the fields of mechanical and electronic engineering
- Aimed at aspiring engineers and designers with a flair for business and the uncanny ability to solve complex problems
- Gain technical expertise alongside team-working, management and entrepreneurial skills
- Focus on problem-based learning: work on real-world projects with industry partners
To learn more about modules, assessment methods, facilities and our staff research expertise please visit our course page.
Modules
For a full list of modules please visit our course page.
Assessment methods
Please visit our course page for current assessment methods.
Tuition fees
Select where you currently live to see what you'll pay:
Extra funding
We understand the financial pressures that undergraduate students can face when arriving at university for the first time and that is why we offer bursaries to complement government loans for low household income families, scholarships for exceptional students, sportspeople and those meeting other criteria as well as expert funding advice and guidance. For more information, please visit our course page.
The Uni
University of Exeter - Exeter campuses
Engineering
What students say
We've crunched the numbers to see if overall student satisfaction here is high, medium or low compared to students studying this subject(s) at other universities.
How do students rate their degree experience?
The stats below relate to the general subject area/s at this university, not this specific course. We show this where there isn’t enough data about the course, or where this is the most detailed info available to us.
Engineering (non-specific)
Teaching and learning
Assessment and feedback
Resources and organisation
Student voice
Who studies this subject and how do they get on?
Most popular A-Levels studied (and grade achieved)
After graduation
The stats in this section relate to the general subject area/s at this university – not this specific course. We show this where there isn't enough data about the course, or where this is the most detailed info available to us.
Engineering (non-specific)
What are graduates doing after six months?
This is what graduates told us they were doing (and earning), shortly after completing their course. We've crunched the numbers to show you if these immediate prospects are high, medium or low, compared to those studying this subject/s at other universities.
Top job areas of graduates
As a mixed subject within engineering where students get a chance to learn from a range of disciplines, this course isn't taken by as many people as some of the more specialist disciplines. Demand for engineering skills is high, though, and so unemployment rates are low and the average starting salary was a very healthy £26,400 for 2015 graduates. Graduates are able to specialise enough to be working in jobs in engineering — especially in design and development - as well as engineering project management. IT and management consultancy were some of the more common jobs outside engineering. Bear in mind that a lot of courses are four years long, and lead to a MEng qualification — this is necessary if you want to become a Chartered Engineer.
What about your long term prospects?
Looking further ahead, below is a rough guide for what graduates went on to earn.
Engineering (non-specific)
The graph shows median earnings of graduates who achieved a degree in this subject area one, three and five years after graduating from here.
£26k
£33k
£37k
Note: this data only looks at employees (and not those who are self-employed or also studying) and covers a broad sample of graduates and the various paths they've taken, which might not always be a direct result of their degree.
Explore these similar courses...
This is what the university has told Ucas about the criteria they expect applicants to satisfy; some may be compulsory, others may be preferable.
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This is the percentage of applicants to this course who received an offer last year, through Ucas.
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This is what the university has told Ucas about the course. Use it to get a quick idea about what makes it unique compared to similar courses, elsewhere.
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Course location and department:
This is what the university has told Ucas about the course. Use it to get a quick idea about what makes it unique compared to similar courses, elsewhere.
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Teaching Excellence Framework (TEF):
We've received this information from the Department for Education, via Ucas. This is how the university as a whole has been rated for its quality of teaching: gold silver or bronze. Note, not all universities have taken part in the TEF.
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This information comes from the National Student Survey, an annual student survey of final-year students. You can use this to see how satisfied students studying this subject area at this university, are (not the individual course).
This is the percentage of final-year students at this university who were "definitely" or "mostly" satisfied with their course. We've analysed this figure against other universities so you can see whether this is high, medium or low.
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This information is from the Higher Education Statistics Agency (HESA), for undergraduate students only.
You can use this to get an idea of who you might share a lecture with and how they progressed in this subject, here. It's also worth comparing typical A-level subjects and grades students achieved with the current course entry requirements; similarities or differences here could indicate how flexible (or not) a university might be.
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Post-six month graduation stats:
This is from the Destinations of Leavers from Higher Education Survey, based on responses from graduates who studied the same subject area here.
It offers a snapshot of what grads went on to do six months later, what they were earning on average, and whether they felt their degree helped them obtain a 'graduate role'. We calculate a mean rating to indicate if this is high, medium or low compared to other universities.
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Graduate field commentary:
The Higher Education Careers Services Unit have provided some further context for all graduates in this subject area, including details that numbers alone might not show
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The Longitudinal Educational Outcomes dataset combines HRMC earnings data with student records from the Higher Education Statistics Agency.
While there are lots of factors at play when it comes to your future earnings, use this as a rough timeline of what graduates in this subject area were earning on average one, three and five years later. Can you see a steady increase in salary, or did grads need some experience under their belt before seeing a nice bump up in their pay packet?
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