University of Chester
UCAS Code: G171 | Bachelor of Science (with Honours) - BSc (Hons)
Entry requirements
A level
Must include A-level Maths
Access to HE Diploma (Mathematics), to include 45 credits at level 3, 30 of which must be at Merit, including at least 15 in Maths
International Baccalaureate Diploma Programme
Including 5 in an appropriate HL Mathematics course
Leaving Certificate - Higher Level (Ireland) (first awarded in 2017)
Including H3 in Maths
Pearson BTEC Level 3 National Extended Diploma (first teaching from September 2016)
Considered alongside A-level Maths
Scottish Higher
Including Maths at grade B
UCAS Tariff
About this course
This course brings together topics from both mathematics and computer subjects where there is a common relevance. It offers the opportunity to explore both theory and practice, developing computational skills to test theoretical concepts experimentally through computational modelling and algorithm design and testing.
A student enrolled on this programme can expect the following:
- To be taught by academics research-active in computational mathematics, numerical analysis, computational modelling and software development, machine learning, deep learning, cybersecurity
- To develop practical IT and programming skills using state-of-the-art software and hardware, which can be found in industry, commerce and academia
- To develop a skill for using computational tools to further explore and test mathematical hypotheses, through algorithms, simulation and modelling
- To develop skills and knowledge appropriate to preparation for postgraduate study or further research, and to a range of vocations and careers
- To provide effective, structured learning opportunities which promote the practical application of Computer Science in industry, business and research domains
Modules
For the latest example of curriculum availability on this course, please refer to the University of Chester's Website.
Assessment methods
Assessment in each module is selected with the aim that the form of assessment chosen should be the most effective way to assess students’ attainment of the learning outcomes of that module. This implies that it must both assess the learning outcomes and also be selected so as not to disadvantage any group of students. Therefore, in many modules assessment balances coursework and formal written examination. The coursework is selected to assess skills that are more effectively assessed through project work, investigations and the writing of computer programs. It is carefully designed to reduce the likelihood of cheating, and steps are taken to monitor student submissions for evidence of malpractice. Formal written examinations provide the most effective way to assess many mathematical skills. The balance between examination and coursework serves to help many students (who would otherwise lack confidence) to gain reassurance through successful completion of coursework before attempting a formal examination and this makes a significant contribution to equality of opportunity.
Tuition fees
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What students say
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.
Computer science
Sorry, no information to show
This is usually because there were too few respondents in the data we receive to be able to provide results about the subject at this university.
Who studies this subject and how do they get on?
Most popular A-Levels studied (and grade achieved)
Mathematics
Sorry, no information to show
This is usually because there were too few respondents in the data we receive to be able to provide results about the subject at this university.
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.
Computer science
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
This is a newly-classified subject area for this kind of data, so we don’t currently have very much information to display or analyse yet. The subject is linked to important and growing computing industries, and over time we can expect more students to study them — there could be opportunities that open up for graduates in these subjects as the economy develops over the next few years.
Mathematics
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
Want to feel needed? This is one of the most flexible degrees of all and with so much of modern work being based on data, there are options everywhere for maths graduates. With all that training in handling figures, it's hardly surprising that a lot of maths graduates go into well-paid jobs in the IT or finance industries, and last year, a maths graduate in London could expect a very respectable average starting salary of £27k. And we're always short of teachers in maths, so that is an excellent option for anyone wanting to help the next generation. And if you want a research job, you'll want a doctorate — and a really good maths doctorate will get you all sorts of interest from academia and finance — and might secure some of the highest salaries going for new leavers from university.
What about your long term prospects?
Looking further ahead, below is a rough guide for what graduates went on to earn.
Computer science
The graph shows median earnings of graduates who achieved a degree in this subject area one, three and five years after graduating from here.
£22k
£23k
£29k
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.
Mathematics
The graph shows median earnings of graduates who achieved a degree in this subject area one, three and five years after graduating from here.
£20k
£26k
£26k
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.
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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?
Have a question about this info? Learn more here