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Biomedical Engineering at University of Sheffield - UCAS

Course summary

Biomedical engineering is a dynamic, multidisciplinary field that links engineering and medicine to improve human health and quality of life. It’s a field where you can make a real impact, using cutting-edge technology to develop innovations that help people live longer, healthier, and happier lives. The Biomedical Engineering BEng course prepares you to be at the forefront of the rapidly growing medical technology sector, developing your skills and knowledge to create innovative solutions that can save and improve lives. This well-established course helps you build a strong foundation in engineering principles, while equipping you with the skills to design, innovate, and improve medical technologies. You’ll gain hands-on experience and knowledge that will empower you to make a real impact through advanced biomedical solutions. Our expert academic team, composed of industry experts, clinicians and academics, has been teaching biomedical engineering at Sheffield for over a decade. They will show you how both traditional and contemporary engineering principles can be applied to transform healthcare, integrating diverse engineering disciplines to develop innovative solutions that improve health and quality of life. The BEng offers unparalleled flexibility to allow you to tailor your course to your interests. Your first year gives an introduction to bioengineering, at the end of which you’ll begin to broadly tailor the course towards a specialism, by choosing one of the following four specialisms for the rest of the course:

  • Biomedical Engineering: use engineering principles to help safeguard and enhance human health.
  • Medical Devices and Systems: develop novel devices and improve clinical engineering systems.
  • Biomaterials Science and Tissue Engineering: apply materials engineering and cell biology principles to repair damaged body tissues and organs.
  • Biomanufacturing: apply chemical engineering and cell biology principles to the manufacture of pharmaceuticals and other biologically active substances.
The final year involves undertaking an individual project, where you’ll collaborate closely with an academic expert in your chosen specialism. This project allows you to apply your knowledge and skills to a real-world challenge, exploring your area of interest in depth. It also provides valuable experience that enhances your employability and prepares you for your future career. Accredited by the Institute of Physics and Engineering in Medicine (IPEM) and the Institution of Engineering and Technology (IET)on behalf of the Engineering Council for the purposes of fully meeting the academic requirement for registration as an Incorporated Engineer and partially meeting the academic requirement for registration as a Chartered Engineer. Why study this course?
  • Number one for teaching on my course: We are ranked number one in the Russell Group for teaching on my course in the subject of bioengineering, medical, and biomedical engineering (National Student Survey 2024).
  • Unique, state-of-the-art facilities: You’ll work in specialised biomedical spaces, including the Bio Mammalian and Bio Bacteria labs, as well as advanced areas like the Microfabrication room, Electronics Cleanroom, and the Pilot Plant in The Diamond building.
  • Top 4 for bioengineering and biomedical engineering: Ranked in the top 5 for bioengineering and biomedical engineering (The Times and Sunday Times Good University Guide 2025).
  • Broad choice of specialisms: From your second year you can choose between four specialisms: Biomedical Engineering, Medical Devices and Systems, Biomaterials Science and Tissue Engineering, or Biomanufacturing. This flexibility allows you to tailor your degree to your interests and career goals.
  • Global Engineering Challenge: Join teams of students to solve engineering problems in developing countries, pushing you to develop you as a professional engineer and enhancing your career prospects.


How to apply

Application codes

Course code:
H673
Institution code:
S18
Campus name:
Main Site
Campus code:
-

Points of entry

The following entry points are available for this course:

  • Year 1

Entry requirements

Qualification requirements

To find out if you're eligible for additional consideration or an alternative offer, visit: ww.sheffield.ac.uk/undergraduate/apply/access-sheffield

Please click the following link to find out more about qualification requirements for this course

https://www.sheffield.ac.uk/undergraduate


English language requirements

You must demonstrate that your English is good enough for you to successfully complete your course. For this course we require: GCSE English Language at grade 4/C; IELTS grade of 6.5 with a minimum of 6.0 in each component; or an alternative acceptable English language qualification

English language requirements for undergraduates

https://www.sheffield.ac.uk/undergraduate/apply/english-language


Student Outcomes

Operated by the Office for Students
30%
Employment after 15 months (Most common jobs)
80%
Go onto work and study

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

Tuition fees for 2026 entry have not been confirmed. Please use 2025-26 information as a guide.
Biomedical Engineering at University of Sheffield - UCAS