Medical Technology and Bioengineering at Kent has earned an impressive 11th place in The Complete University Guide 2025. This program is all about shaping engineers who can design innovative systems for medical practices and biological research. It beautifully blends engineering principles with biology and medical sciences, giving students a well-rounded education for those passionate about both areas.
Students get to work in state-of-the-art laboratories and use cutting-edge equipment, enhancing their hands-on learning and research experiences.
Through this program, students gain the essential skills and knowledge needed for careers in biomedical engineering, with a strong emphasis on crafting solutions for the challenges faced in healthcare and biological research.
Final-Year Research Project: In their final year, students dive into a significant individual project that lets them really dig into a specific area of biomedical engineering. This project emphasizes independent research, critical thinking, and crafting innovative solutions to tackle real-world challenges.
Cross-Disciplinary Collaboration: The program encourages teamwork with other departments, like Biosciences, allowing students to participate in interdisciplinary research projects that blend engineering principles with biological sciences.
Year in Industry (Optional): Happening between the second and final year, the optional year in industry offers students a chance to gain invaluable workplace experience. It’s a great opportunity to explore a particular career path and can even lead to a job offer after graduation if the placement goes well.
Industry Collaborations: The course has strong connections with various industries, providing numerous placement opportunities. These partnerships ensure that students acquire practical experience and get a taste of the latest practices in biomedical engineering.
Pursue a career in medical device development, clinical engineering, biomechanics, biomaterials, rehabilitation engineering, or pharmaceutical technology.
Opportunities in industries such as healthcare, medical imaging, diagnostics, prosthetics, and wearable health technologies.
Further academic study through taught master's degrees (e.g., MSc Biomedical Engineering, MSc Medical Physics), research degrees (MPhil/PhD), or medical school entry for qualified candidates.
Potential to register as a Chartered Engineer (CEng) with an accredited MEng or appropriate combination of BEng and MSc, enhancing professional standing.
Entrepreneurial opportunities in health-tech startups or innovation hubs focused on biomedical solutions.
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