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team that works with 60 partners from 13 countries, including Europe’s leading semiconductor manufacturers and research institutes, to develop new materials, equipment and processes and prove them out
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. The successful candidate will work in an interdisciplinary research environment and will have the opportunity to develop expertise in a broad range of experimental and analytical approaches. National doctoral
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energy-harvesting devices. The successful candidate will focus on ionic thermoelectric materials and electrochemistry, developing and investigating advanced electrolyte and redox-active material systems
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of 20 per cent of full-time. Your work will include: Development and characterization of soft MIEC materials. Development and characterization of functional separator materials. Investigation
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partners from 13 countries, including Europe’s leading semiconductor manufacturers and research institutes, to develop new materials, equipment and processes and prove them out on real industrial use cases
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and minerals, weather and climate, the evolution of life, natural disasters, wind power and energy, environmental and water engineering, and sustainable development. Our research combines natural
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challenges of the energy transition. As a doctoral student at Luleå University of Technology, you will receive excellent supervision, access to advanced research facilities, and opportunities to develop
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, both as a researcher and as a person. The research subject of Building materials consists of 15 people. The subject focuses on the development of sustainable materials and production technologies
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Wassélius. The research environment is interdisciplinary and based on close collaboration between neurology and radiology, with a particular focus on the development and evaluation of diagnostic methods and
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forward to receiving your application! Your work assignments The project focuses on the development and optimization of electrocatalysts and electrolyzer systems for sustainable energy conversion