56 architecture-and-cities-planning Postdoctoral positions at Technical University of Denmark in Denmark
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proteomics workflows Perform imaging and omics data analysis and data integration and validate key results using functional assays in cell culture and in patient-derived samples Plan and collaborate
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processing contaminants in food, including 3-monochloropropanediol, and GE for glycidyl fatty acid esters - Operate, maintain, and troubleshoot advanced analytical instruments - Plan and support laboratory and
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opportunity to be part of large-scale experiments tackling pressing societal challenges. You'll be involved in every stage of the research process—from experimental design to data analysis and publication—while
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, particularly scaling relationships and their implications for catalyst design. Spectroscopy and Instrumentation: Hands-on experience in the design, construction, and operation of in-situ spectroscopic setups
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applicant will be responsible for the design and development of designing and developing efficient Embedded AI frameworks for resource-constrained edge applications. In particular, the appointed candidate
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. Crouzier brings extensive experience in mucin research and technology translation, having successfully founded two biotech startups focused on mucin technologies and planning further entrepreneurial
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to develop and utilize knowledge, methods, technologies and sustainable solutions within: Chemical and biochemical process engineering and production, Design of chemical and biochemical products and processes
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knowledge for the benefit of society and the sustainable development. We undertake research, education, innovation, and scientific advice of the highest quality within building design and processes, building
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are looking for two new postdocs. You will join a new research program on the role of universities and entrepreneurial ecosystems in building deep tech startups and scaleups. You will work towards building a
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-small silicon nanocavities [Babar2023, Rosiek2023] with extreme light-matter interactions. We aim to combine fundamental theory, device design, and our unrivalled capabilities in high-resolution silicon