MBA Master of Business Administration
The MBA program at the University of Sheffield offers a comprehensive curriculum design...
Western Bank-The University of Sheffield
INTAKE: Jan & Sept
This master's course provides students with the technical knowledge, expertise, and transferable skills necessary to excel in the rapidly evolving field of biomedical engineering. It caters to individuals from engineering, computer science, or basic sciences backgrounds who are keen to apply engineering solutions to medical and biological problems.
Curriculum: The program offers three distinct themes: Biomaterials, Imaging, and In Silico Medicine. Students can tailor their learning experience by selecting modules that align with their interests, ranging from biomechanics to virtual reality and 3D visualization approaches. The curriculum emphasizes both theoretical understanding and practical application, with opportunities to develop experimental skills in world-class laboratories and advanced modeling techniques.
Research Focus: Students engage in in-depth research projects that allow them to explore specific areas of interest within biomedical engineering. The program's close partnership with research centers like the Insigneo Institute for In Silico Medicine and POLARIS positions students at the forefront of biomedical innovation, providing access to cutting-edge research and developments in the field.
Industry Engagement: While specific industry engagement initiatives are not detailed in the available sources, the program's emphasis on practical application and collaboration with leading research centers suggests opportunities for interaction with industry professionals. This approach ensures that students are well-prepared to tackle real-world challenges in the biomedical engineering sector.
Global Perspective: The University of Sheffield attracts a diverse cohort of students and faculty from around the world, fostering an international learning environment. This diversity enriches classroom discussions and collaborative projects, providing students with a global perspective on biomedical engineering challenges. Graduates are thus equipped to work effectively in multicultural teams and address issues in various cultural and regulatory contexts worldwide.
Western Bank-The University of Sheffield
IELTS: 6.5
£ 27500
Postgraduate Entry Requirements:
Students must provide:
Work experience: Some postgraduate courses may require relevant work experience in the field.
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.
Postgraduate students may be eligible for the following scholarships:
Postgraduate Taught Merit Scholarship: This scholarship is available to UK, EU, and international students who have a conditional or unconditional offer to study a full-time or part-time postgraduate taught course at the University of Sheffield. The scholarship is worth 50% of the tuition fee for each year of study.
International Merit Postgraduate Taught Scholarship: This scholarship is available to international students who have a conditional or unconditional offer to study a full-time postgraduate taught course at the University of Sheffield. The scholarship is worth 50% of the tuition fee for each year of study.
Commonwealth Shared Scholarship Scheme: This scholarship is available to students from eligible developing Commonwealth countries who have a conditional or unconditional offer to study a full-time postgraduate taught course at the University of Sheffield. The scholarship covers the full tuition fee, airfare to and from the UK, and a monthly stipend.
Graduates of the MSc Bioengineering program have excellent career prospects in various sectors.
Biomedical Engineer: Graduates can work as biomedical engineers, contributing to the design, development, and maintenance of medical devices, equipment, and systems. They may be involved in developing prosthetics, implantable devices, diagnostic tools, and rehabilitation equipment.
Research Scientist: The program prepares graduates for research roles in academic institutions, research laboratories, and industrial R&D settings. They may contribute to cutting-edge research in areas such as tissue engineering, regenerative medicine, drug delivery systems, or biomedical imaging.
Product Development Engineer: Graduates can pursue careers in product development, working with companies involved in the design and manufacturing of medical devices and technologies. They may be responsible for translating research concepts into commercially viable products, ensuring compliance with regulatory standards.
Clinical Engineer: Graduates can work as clinical engineers, collaborating with healthcare professionals to implement and maintain medical equipment and technology in hospitals and clinics. They may also provide technical support and training to medical staff.
Biotechnology Industry: Graduates can find opportunities in the biotechnology industry, particularly in companies focused on biopharmaceuticals, biomaterials, and bioinstrumentation. They may work in areas such as process development, quality control, or regulatory affairs.
Healthcare Consultant: Graduates can pursue careers as healthcare consultants, providing expertise and guidance on the application of bioengineering technologies in healthcare settings. They may assist in the evaluation, implementation, and optimization of medical systems and processes.
Entrepreneurship: The program equips graduates with the knowledge and skills to start their own bioengineering ventures. They can identify market opportunities, develop innovative solutions, and navigate the business aspects of the bioengineering industry.