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science, composite engineering, interfacial mechanics, and chemical polymer design to eastablish a new binder type that is suitable for industrially scalable dry electrode processing. The successful
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is suitable for industrially scalable dry electrode processing. The successful candidate will play a central role in engineering fibrillar composite architectures that mimic PTFE performance while
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spectrum from basic and applied research to pre-industrial development and is carried out in cooperation with national and international partners from universities, academies and industry. The institute is
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as part of the application process to: the members of the selection committee, personnel administration, the equal opportunities officers, the inclusion officer and the works council within the scope
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, and microbial resource management. The work comprises the analysis of temporal dynamics of bacterial and archaeal communities, large-scale sampling and quantitative molecular analyses, as
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academic and industrial partners all around the world. A focus of our research are Engineered Living Materials (ELMs), an emergent class of materials at the interface between materials science and synthetic