Masters Degree Programme in Public Mental Health
The Master's Degree Programme in Public Mental Health at the Unive...
Turku
INTAKE: August
The Master's Degree Programme in Materials Engineering: Health Technology Materials at the University of Turku is a specialized program designed for students interested in the intersection of materials science and health technology. The program focuses on the development and application of materials used in healthcare, with an emphasis on biomedical devices, implants, and medical equipment. Students gain in-depth knowledge of the material properties, processing techniques, and performance evaluation of materials specifically designed for health technology applications. Graduates of this program are prepared to contribute to the growing field of health technology by developing innovative materials that enhance patient care and medical treatments.
Curriculum: The curriculum of the Master's Degree Programme in Materials Engineering: Health Technology Materials is carefully structured to provide a comprehensive understanding of materials science with a focus on health technology applications. The program typically spans two years, during which students take both core and elective courses. Core courses cover topics such as materials characterization, biomaterials, materials processing, and the interaction between materials and biological systems. Students also gain practical experience through laboratory work and project-based learning, where they apply theoretical knowledge to solve real-world challenges in health technology. Elective courses offer opportunities to specialize in areas like tissue engineering, medical device design, and nanomaterials. The program concludes with a master's thesis, where students engage in research or an industry-based project, contributing to advancements in health technology materials.
Research Focus: The research focus of the Master's Degree Programme in Materials Engineering: Health Technology Materials centers on the development of novel materials for use in medical applications. Research areas include the design and evaluation of biomaterials for implants, prosthetics, drug delivery systems, and tissue engineering scaffolds. The program also explores the integration of advanced materials technologies, such as nanomaterials and biocompatible polymers, into the field of health technology. Students are encouraged to participate in ongoing research projects, where they work closely with faculty members and industry partners to solve complex challenges related to the safety, effectiveness, and sustainability of health-related materials.
Industry Engagement: The University of Turku has strong connections with the healthcare and materials industries, providing students of the Master's Degree Programme in Materials Engineering: Health Technology Materials with ample opportunities for industry engagement. Through internships, collaborative research projects, and partnerships with leading health technology companies, students gain valuable hands-on experience and insights into the practical applications of health technology materials. The program's close ties to the Finnish health technology sector ensure that students stay up-to-date with industry trends, challenges, and innovations. These industry collaborations not only enrich the learning experience but also open doors for career opportunities upon graduation.
Global Perspective: The Master's Degree Programme in Materials Engineering: Health Technology Materials offers students a global perspective by incorporating international best practices in materials engineering and health technology. The University of Turku attracts students from around the world, creating a multicultural learning environment that fosters the exchange of ideas and global perspectives. The program also provides opportunities for students to participate in international research collaborations, attend global conferences, and engage with experts in the field of health technology materials. Graduates are equipped with the skills to work in a globalized industry, where health technology materials are increasingly developed and utilized across different regions.
Turku
€ 12000
Postgraduate Entry Requirements
Application Fee: €100
Academic Qualifications: Applicants for postgraduate programs typically require a minimum academic achievement of 60% or above in their bachelor's degree.
English Language Proficiency:
The University of Turku offers various scholarships for international students, aimed at supporting students with the cost of their tuition fees and ensuring they have the opportunity to pursue their studies in Finland without financial concerns. These scholarships are designed to attract talented students from across the globe, particularly for Master’s degree programs, as the university has a strong international student body.
University of Turku Scholarship Scheme: The University of Turku offers a merit-based scholarship scheme for international students applying to Master’s degree programs. These scholarships cover part or all of the tuition fees for students from non-EU/EEA countries. The scholarships are competitive and are awarded based on the academic excellence and merits of the applicants. Students who are accepted to a degree program at the university are automatically considered for this scholarship.
External Scholarships: The university provides information and guidance on various external scholarships that are available to international students, including scholarships offered by Finnish government agencies and private foundations.
Erasmus+ Grants: Students who are part of the Erasmus+ exchange program may be eligible for grants to support their studies in Finland.
Country-Specific Scholarships: Some countries have specific scholarship agreements with Finland, and students from these countries may apply for additional financial support.
Graduates of the Master's Degree Programme in Materials Engineering: Health Technology Materials at the University of Turku have numerous career opportunities in various industries, particularly in the field of health technology and materials science. The program equips students with the skills and expertise needed to work in the development, testing, and application of materials in healthcare devices, implants, and diagnostic tools.
Biomedical Materials Engineer: Graduates can work as biomedical materials engineers, developing and testing new materials used in medical devices, implants, and prosthetics. They ensure these materials meet the required performance, safety, and biocompatibility standards for use in the human body.
Medical Device Developer: With their expertise in materials engineering, graduates can work in the design and development of medical devices, such as artificial joints, pacemakers, and diagnostic equipment. They collaborate with healthcare professionals to create innovative solutions that enhance patient care.
Materials Scientist: Graduates can become materials scientists, conducting research to discover and develop new materials for use in healthcare applications. They work in both academic and industrial research settings, contributing to advancements in the fields of biocompatible materials and tissue engineering.
Quality Control and Testing Specialist: With a focus on ensuring the safety and functionality of health technology materials, graduates can pursue careers in quality control and testing. They are responsible for conducting rigorous testing on materials to ensure they comply with industry standards and regulatory requirements.
Regulatory Affairs Specialist: Graduates may also work in regulatory affairs, where they ensure that health technology materials and medical devices meet the necessary regulatory standards for safety, efficacy, and quality. They work closely with governmental bodies to navigate the approval process for new healthcare products.
Healthcare Innovation Consultant: With their interdisciplinary knowledge, graduates can work as consultants, advising companies on how to integrate advanced materials into new healthcare technologies. They help firms identify opportunities for innovation in the medical and health technology sectors.
Product Development Engineer: Graduates can pursue roles in product development, collaborating with teams to develop new healthcare products that incorporate advanced materials. They work on improving the functionality, efficiency, and sustainability of medical technologies.
Research and Development (R&D) Specialist: Graduates can work in R&D teams within healthcare or materials science companies, leading efforts to innovate and refine materials used in health technology applications. They stay at the forefront of technological advancements and ensure that their products remain competitive in the market.
Sustainability Expert in Healthcare: As the healthcare industry increasingly focuses on sustainability, graduates can work as sustainability experts, developing eco-friendly materials and ensuring that medical technologies are sustainable throughout their lifecycle—from production to disposal.
Entrepreneur/Start-up Founder: Graduates with an entrepreneurial mindset can use their knowledge to launch their own ventures, focusing on health technology innovation. This may involve developing new materials for medical devices, starting a consultancy, or even establishing a company that produces healthcare products with cutting-edge materials.