BSc (Econ)(Hons) Economics, Finance and Management
Spanning three years, with options to extend to four or five years to include a year ab...
QMUL-London UK
INTAKE: September
The BSc (Hons) Biomedical Engineering and Clinical Materials (Intercalated) at QMUL is a one-year program aimed at medical students who wish to gain a deeper understanding of the engineering principles applied in the medical field. It offers a comprehensive curriculum that bridges the gap between medicine, engineering, and materials science. The program is ideal for those who want to specialize in areas like medical device development, biomaterials, tissue engineering, and clinical applications of engineering solutions. It allows students to apply their medical knowledge to solve complex biomedical challenges.
Curriculum: The curriculum of the BSc (Hons) Biomedical Engineering and Clinical Materials (Intercalated) is carefully designed to offer a balanced combination of theoretical learning and practical laboratory experience. The modules cover subjects such as biomaterials, biomechanics, medical imaging, and the design of medical devices. Students are introduced to the principles of material science, including the properties and applications of metals, ceramics, and polymers in the medical field. The program also includes a focus on clinical practice, with students gaining insights into how engineering solutions are applied in real-world medical settings. The rigorous coursework prepares graduates for further study or careers in biomedical engineering and related fields.
Research Focus: QMUL has a strong research tradition in biomedical engineering and clinical materials, with a particular focus on translating academic research into practical healthcare solutions. The university’s research activities span across various aspects of biomedical engineering, such as the development of new medical devices, the use of biomaterials for implants and prosthetics, and advancements in tissue engineering. Students on the intercalated program benefit from being part of this research-driven environment, with opportunities to engage in cutting-edge projects and collaborate with leading researchers in the field. This research-focused approach ensures that students are well-prepared to contribute to the ongoing innovations in the biomedical sector.
Industry Engagement: Queen Mary University of London is renowned for its strong connections with industry partners, particularly in the field of healthcare and engineering. The BSc (Hons) Biomedical Engineering and Clinical Materials (Intercalated) program offers numerous opportunities for students to engage with industry professionals through placements, internships, and collaborative research projects. These connections allow students to gain real-world experience and insight into the practical applications of biomedical engineering in clinical environments. By working with leading medical technology companies, students develop essential skills that enhance their employability upon graduation.
Global Perspective: QMUL embraces a global perspective, with a diverse student body and partnerships with leading institutions around the world. The BSc (Hons) Biomedical Engineering and Clinical Materials (Intercalated) program is no exception, offering students the opportunity to work with peers from different cultural and academic backgrounds. This international outlook enriches the learning experience and prepares graduates to work in a globalized healthcare and engineering sector. The university’s emphasis on global collaboration fosters a dynamic academic environment where students are encouraged to think critically and engage with complex global healthcare challenges.
QMUL-London UK
IELTS: 6.5
£ 29950
Undergraduate Entry Requirements:
Students must provide:
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.
Queen Mary University of London offers a range of scholarships and bursaries to its students.
Queen Mary Principal's Scholars Program: A scholarship program for undergraduate students who have an offer of admission from Queen Mary University of London and have achieved exceptional academic grades. The scholarship covers full tuition fees for three years of study, as well as a £2,000 annual stipend for living expenses.
Queen Mary International Excellence Scholarships: A scholarship program for international undergraduate and postgraduate students who have an offer of admission from Queen Mary University of London and have demonstrated academic excellence. The scholarship covers full tuition fees for one year of study.
Queen Mary Law Scholarships: A scholarship program for undergraduate and postgraduate law students who have an offer of admission from Queen Mary University of London and have demonstrated academic excellence. The scholarship covers full or partial tuition fees, depending on the level of academic achievement.
Queen Mary Engineering and Materials Science Scholarships: A scholarship program for undergraduate and postgraduate students studying engineering or materials science who have an offer of admission from Queen Mary University of London and have demonstrated academic excellence. The scholarship covers full or partial tuition fees, depending on the level of academic achievement.
The BSc Hons Biomedical Engineering and Clinical Materials (Intercalated) course at Queen Mary University of London offers students a unique opportunity to gain specialized knowledge in the field of biomedical engineering and clinical materials. This intercalated degree program provides an in-depth understanding of the principles and applications of engineering in the medical and healthcare sectors. Graduates of this program are well-prepared for a variety of exciting career paths at the intersection of engineering, healthcare, and medical research.
Biomedical Engineer: Graduates can pursue careers as biomedical engineers, working on the design, development, and implementation of medical devices, equipment, and systems. They may contribute to the development of prosthetics, diagnostic tools, imaging systems, or rehabilitation devices, ensuring their safety, efficacy, and compliance with regulatory standards.
Clinical Engineer: Graduates can work as clinical engineers, collaborating with healthcare professionals to optimize medical equipment and systems within clinical settings. They may be responsible for the maintenance, calibration, and safety of medical devices, as well as the integration of technology in healthcare environments.
Medical Device Designer: Graduates can enter the field of medical device design, specializing in the creation and improvement of innovative medical technologies. They may work on projects related to surgical instruments, implantable devices, or assistive technologies, incorporating principles of biomechanics, materials science, and human factors engineering.
Research and Development Scientist: Graduates can pursue careers in research and development (R&D) within academic institutions, medical device companies, or healthcare organizations. They may contribute to cutting-edge research projects, exploring new materials, technologies, and therapeutic interventions to advance the field of biomedical engineering and clinical materials.
Regulatory Affairs Specialist: Graduates can work in regulatory affairs roles, ensuring that medical devices and technologies comply with national and international regulations and standards. They may be responsible for preparing documentation, conducting risk assessments, and navigating the regulatory processes involved in bringing new medical products to market.
Quality Assurance Engineer: Graduates can enter the field of quality assurance, focusing on maintaining and improving the quality and safety of medical devices and systems. They may develop and implement quality control processes, conduct audits, and ensure compliance with industry standards and regulations.
Medical Sales and Marketing: Graduates can pursue careers in sales and marketing within the medical device industry. They may work for manufacturers or distributors, promoting and selling medical devices and technologies to healthcare professionals and institutions.
Healthcare Technology Manager: Graduates can work in managerial roles within healthcare organizations, overseeing the implementation and management of medical technologies and systems. They may be responsible for evaluating new technologies, training staff, and ensuring the effective and safe use of medical equipment.
Further Studies and Professional Development: The BSc Hons Biomedical Engineering and Clinical Materials (Intercalated) program provides a solid foundation for further academic studies or professional development in the field of biomedical engineering, clinical engineering, or related disciplines. Graduates can pursue advanced degrees such as a Master's or Ph.D. in Biomedical Engineering or undertake specialized training and certifications to enhance their expertise.