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This integrated masters degree blends engineering with biological and medical aspects of healthcare technologies. The first two years are the same across our Mechanical Engineering degrees and focus on the essential principles of mechanical engineering, as well as law and management, systems design, and modelling and computing, in order to take a product from initial concept to the marketplace.
During your third and fourth years you will focus on the mechanics of the human body, medical technologies and human factors in engineering. In your third year, you will also carry out an individual project, bringing together the concepts and skills you have learned.
During your fourth year, you will take advanced and specialised modules and participate in a group design project, applying your engineering knowledge to solve a real-world problem.
Your Industrial Placement Year will enhance your employability, with an additional year-long paid placement in an engineering organisation. You will be able to apply the knowledge and skills that you developed during the early years of your degree, developing vital professional knowledge and skills to prepare you to become a professional engineer after graduation.
You will have access to extensive facilities, which include the largest wind tunnel in any UK university, a high-resolution 3D imaging centre, dedicated student design studios and workshops, and a materials and structures research facility in our new National Infrastructure Laboratory.
Our courses are fully accredited by the Institution of Mechanical Engineers and offer a route to chartered status.
Typical modules include:
Year one: An Introduction to Engineering Design; Electrical and Electronics Systems; Mathematics for Engineering and the Environment; Mechanics, Structures and Materials; Mechanical Systems Analysis; ThermoFluids.
Year two: Engineering Management and Law; Fluid Mechanics; Materials and Structures; Mathematics for Engineering and the Environment Part II; Mechanics, Machines and Vibration; Systems Design and Computing; Thermodynamics; Electronics and Control.
Year three: Individual Project; Biomaterials; Engineering Design with Management; Finite Element Analysis in Solid Mechanics; Heat Transfer and Applications; Introduction to Biomedical Engineering; and Orthopaedic Biomechanics.
Year four: Group Design Project; Biological Materials and Biomedical Devices; Computational Methods in Biomedical Engineering Design; Manufacturing and Materials; Materials, Manufacturing, and Supply Chains; plus module options to deepen your knowledge.
Testing is conducted through a combination of unseen written examinations and assessed coursework in the form of problem-solving exercises, laboratory reports, design exercises, essays, and individual and group projects. Experimental, research and design skills are assessed through laboratory reports, coursework exercises and oral presentations.
The Industrial Placement Year is assessed via an individual reflective report.
Professionally accredited courses provide industry-wide recognition of the quality of your qualification.
This course is not accepting applications at this time. Please contact the provider to find out more.
The following entry points are available for this course:
Find out about equivalent entry requirements and qualifications for your country: https://www.southampton.ac.uk/uni-life/international/your-country.page
If you are not sure that your qualifications meet the requirements of this course please contact our Admissions Teams.
Find out more about qualification requirements for this course.
| Test | Grade | Additional details |
|---|---|---|
| IELTS (Academic) | 6.5 | with no component below 6.0 |
Find out more about the University’s English Language requirements https://www.southampton.ac.uk/studentadmin/admissions/admissions-policies/language.page
Most of the students who enrolled on this course in previous years met their offer conditions at our published entry criteria, securing their place on their chosen course.
We encourage all applicants with the potential to succeed, regardless of their background, to apply to study with us. Applicants who qualify for contextual admissions will be made an offer which is lower than the typical offer for that programme.
This section shows the range of grades students (with UK A-Levels or Pearson BTEC Level 3 National Extended Diplomas) who received offers were previously accepted with (learn more). It is designed to support your research but does not guarantee whether you will or won't get a place. Admissions teams consider various factors, including interviews, subject requirements, and entrance tests. Check all course entry requirements for eligibility.
We are unable to show previous accepted grades for this course. This could be because the course is new, it's a postgraduate course, there isn't enough historical data, or the provider has opted out of sharing their entry grades data for this course - learn more.
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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.
| Location | Fee | Year |
|---|---|---|
| England | £9535 | Year 1 |
| Northern Ireland | £9535 | Year 1 |
| Scotland | £9535 | Year 1 |
| Wales | £9535 | Year 1 |
| Channel Islands | £9535 | Year 1 |
| Republic of Ireland | £9535 | Year 1 |
| EU | £29400 | Year 1 |
| International | £29400 | Year 1 |
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.
Please see our website for further details and updates: www.southampton.ac.uk/uni-life/fees-funding.page