[{"title":{"valueFi":"Kuvaus","valueEn":"Description","valueSv":""},"content":{"valueEn":"Health and wellbeing stand out as some of the most impactful factors in our lives. The health technology sector is positioned as one of the fastest-growing future industries, leveraging engineering to address the challenges within the healthcare sector. The specialization track in Health Technology Materials centers on the compatibility of materials with the human body (implants, dental materials, sensors), encompassing the fabrication and properties of these materials. Upon completion of the Health Technology Materials degree, you will possess the skills necessary to innovate new material solutions for the diagnostics, treatment, and prevention of diseases, thereby enhancing the overall quality of life. The curriculum integrates the latest research-informed trends in experimental materials engineering with industry case studies and provides applied skills training through project work.\r\n\r\nSustainable development is a key strategic theme at the University of Turku. Our materials engineering programme is designed to address the needs of innovative technologies that promote sustainable development, with materials for renewable energy production and storage and novel bio-based materials. In addition, we will consider the life-cycle of materials with a focus on circular economy trends and up-cycling of materials as feedstock for new products. Novel materials solutions underpin the development of industrial processes and products. This programme seeks to educate future industry leaders who would preserve Earth’s natural resources and shape a more sustainable future society.","valueFi":"Health and wellbeing stand out as some of the most impactful factors in our lives. The health technology sector is positioned as one of the fastest-growing future industries, leveraging engineering to address the challenges within the healthcare sector. The specialization track in Health Technology Materials centers on the compatibility of materials with the human body (implants, dental materials, sensors), encompassing the fabrication and properties of these materials. Upon completion of the Health Technology Materials degree, you will possess the skills necessary to innovate new material solutions for the diagnostics, treatment, and prevention of diseases, thereby enhancing the overall quality of life. The curriculum integrates the latest research-informed trends in experimental materials engineering with industry case studies and provides applied skills training through project work.\r\n\r\nSustainable development is a key strategic theme at the University of Turku. Our materials engineering programme is designed to address the needs of innovative technologies that promote sustainable development, with materials for renewable energy production and storage and novel bio-based materials. In addition, we will consider the life-cycle of materials with a focus on circular economy trends and up-cycling of materials as feedstock for new products. Novel materials solutions underpin the development of industrial processes and products. This programme seeks to educate future industry leaders who would preserve Earth’s natural resources and shape a more sustainable future society.","valueSv":""}},{"title":{"valueFi":"Lisätiedot","valueEn":"Further information","valueSv":""},"content":{"valueEn":"The Master’s Degree in Materials Engineering is a two-year programme amounting to 120 ECTS. Each specialisation track is comprised of:\r\n- MSc thesis 30 ECTS\r\n- Capstone-project 10 ECTS\r\n- Common advanced studies in materials engineering 20 ECTS\r\n- Advanced studies in accordance with specialisation track 20 ECTS\r\n- Minor subject or thematic module 20–25 ECTS\r\n- Other studies 15–20 ECTS","valueFi":"The Master’s Degree in Materials Engineering is a two-year programme amounting to 120 ECTS. Each specialisation track is comprised of:\r\n- MSc thesis 30 ECTS\r\n- Capstone-project 10 ECTS\r\n- Common advanced studies in materials engineering 20 ECTS\r\n- Advanced studies in accordance with specialisation track 20 ECTS\r\n- Minor subject or thematic module 20–25 ECTS\r\n- Other studies 15–20 ECTS","valueSv":""}},{"title":{"valueFi":"Osaamistavoitteet","valueEn":"Objective","valueSv":""},"content":{"valueEn":"After completing a MSc degree in Materials Engineering with a Health Technology Materials specialisation track, the student will master:\r\n- How materials are chosen for biomedical applications\r\n- What prerequirements biological systems set for materials\r\n- How the material choices affect the performance of the implant, material or device\r\n- Biomedical sensing technologies and biosignal processing","valueFi":"After completing a MSc degree in Materials Engineering with a Health Technology Materials specialisation track, the student will master:\r\n- How materials are chosen for biomedical applications\r\n- What prerequirements biological systems set for materials\r\n- How the material choices affect the performance of the implant, material or device\r\n- Biomedical sensing technologies and biosignal processing","valueSv":""}}]