MSc Management
MSc Management: The MSc Management program at the University of Bradford equips student...
Bradford
INTAKE: September
The University of Bradford offers a dynamic BEng (Hons) Biomedical Engineering program with a placement year, providing students with a comprehensive understanding of engineering principles and their application in the healthcare sector. This undergraduate degree combines theoretical knowledge with practical skills, preparing students for careers at the forefront of biomedical innovation. With a focus on interdisciplinary learning and industry engagement, the program equips graduates with the expertise to design, develop, and implement medical devices, technologies, and solutions to address global healthcare challenges.
Curriculum: The curriculum of the BEng (Hons) Biomedical Engineering program at the University of Bradford is designed to cover key areas of biomedical engineering, including biomaterials, medical imaging, biomechanics, and physiological systems. Core modules provide students with a strong foundation in engineering principles, while specialized modules focus on biomedical applications and technologies. During the placement year, students have the opportunity to gain hands-on experience working in industry or research settings, applying their skills and knowledge in real-world projects. The program also emphasizes project-based learning, allowing students to work on design projects, case studies, and research initiatives, fostering creativity, critical thinking, and problem-solving abilities.
Research Focus: The University of Bradford has a vibrant research community in biomedical engineering, with faculty members conducting innovative research in areas such as regenerative medicine, medical imaging, and assistive technologies. Students in the BEng (Hons) Biomedical Engineering program have the opportunity to engage in research projects supervised by leading experts, exploring topics such as tissue engineering, neural interfaces, or medical device development. Through research-led teaching and laboratory-based activities, students develop analytical skills, experimental techniques, and research methodologies essential for advancing the field of biomedical engineering.
Industry Engagement: The BEng (Hons) Biomedical Engineering program at the University of Bradford emphasizes industry engagement to provide students with practical skills and industry insights relevant to the biomedical engineering sector. The university collaborates with healthcare institutions, medical device companies, and research organizations to offer students placement opportunities, internships, and collaborative projects. These industry connections enable students to gain valuable work experience, develop professional networks, and apply their knowledge in real-world settings. Industry engagement also facilitates guest lectures, workshops, and industry-led projects, allowing students to learn from industry professionals and stay abreast of emerging trends and technologies in biomedical engineering.
Global Perspective: The University of Bradford promotes a global perspective in the BEng (Hons) Biomedical Engineering program, addressing healthcare challenges and technological innovations from a global standpoint. Modules cover topics such as global health inequalities, healthcare infrastructure in developing countries, and international regulations for medical devices. The program encourages students to consider the social, ethical, and cultural dimensions of biomedical engineering in a global context, fostering an understanding of the diverse healthcare needs and technological solutions worldwide. Students have the opportunity to engage in international research collaborations, study abroad programs, or overseas placements, gaining exposure to different healthcare systems and contributing to global health initiatives through biomedical engineering innovation.
Bradford
IELTS 6
£ 24398
Undergraduate Entry Requirements
Academic Qualifications: Applicants should have successfully completed their secondary education with a minimum overall score of 70% or equivalent in their respective country's grading system.
English language proficiency:
Students must provide:
It is important to note that entry requirements may vary across different programs and courses. Additionally, meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as the number of available places and competition for certain courses.
The University of Bradford offers a range of scholarships to support students in their academic journey. These scholarships aim to recognize and reward academic excellence, encourage diversity, and provide financial assistance to students.
Academic Excellence Scholarship: This scholarship is awarded to high-achieving international students applying for undergraduate or postgraduate programs. The scholarship provides a fee reduction of up to £2,500 for the first year of study.
Vice-Chancellor's Award: This scholarship is offered to high-achieving international students who have demonstrated exceptional academic excellence and leadership qualities. The scholarship covers full tuition fees for the duration of the program.
Country-specific Scholarships: The University of Bradford offers scholarships specifically for students from certain countries or regions. These scholarships may have different eligibility criteria and application processes.
Social and Sport Scholarships: The University of Bradford recognizes the achievements of students in social or sporting activities. These scholarships are designed to support students who excel in areas such as community engagement, volunteering, and sports performance.
Graduates of the BEng (Hons) Biomedical Engineering program with a placement year from the University of Bradford have a wide range of career opportunities in the healthcare technology sector.
Biomedical Engineer: Graduates can pursue roles as biomedical engineers, where they design, develop, and maintain medical devices and equipment used in healthcare settings. They work on projects such as designing prosthetic limbs, developing medical imaging systems, or creating wearable health monitoring devices.
Clinical Engineer: Clinical engineers work in hospitals and healthcare institutions, managing and maintaining medical equipment and technology systems. They ensure that medical devices are functioning correctly, troubleshoot technical issues, and provide training to healthcare staff on equipment usage and maintenance.
Medical Device Designer: Graduates may work as medical device designers, creating innovative solutions to address healthcare challenges. They use their engineering skills to design and prototype medical devices such as surgical instruments, diagnostic tools, or rehabilitation equipment.
Research Scientist: Some graduates may choose to pursue careers in research, working in academic institutions, research laboratories, or healthcare companies. They conduct research to develop new medical technologies, investigate disease mechanisms, or improve healthcare outcomes.
Regulatory Affairs Specialist: Regulatory affairs specialists ensure that medical devices comply with regulatory standards and requirements. They work for medical device companies or regulatory agencies, managing the process of obtaining approvals and ensuring compliance with regulations.
Quality Assurance Engineer: Quality assurance engineers are responsible for ensuring the safety and effectiveness of medical devices. They develop and implement quality control processes, conduct product testing, and ensure compliance with regulatory standards.
Healthcare Consultant: Healthcare consultants provide expertise and advice to healthcare organizations, government agencies, and medical device companies. They may specialize in areas such as healthcare technology, regulatory compliance, or strategic planning.
Product Manager: Product managers oversee the development and launch of medical devices and technologies. They work closely with engineering teams, marketing departments, and regulatory agencies to bring products to market and ensure their success.
Biomechanical Engineer: Biomechanical engineers study the mechanics of the human body and design devices to improve movement and function. They may work on projects such as designing prosthetics, orthotics, or rehabilitation equipment.
Entrepreneur/Startup Founder: Some graduates may choose to start their own companies or ventures, developing innovative medical technologies or launching startups in the healthcare sector. They may seek funding, collaborate with other professionals, and bring their ideas to market.