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physically and functionally coupled across domains of life. The project will involve working with syntrophic deep-sea consortia, performing strictly anoxic physiological experiments, and developing electrode
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physically and functionally coupled across domains of life. The project will involve working with syntrophic deep-sea consortia, performing strictly anoxic physiological experiments, and developing electrode
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framings influence acceptance and adoption of complex systems how land-use transitions are negotiated across agriculture, energy, environment, and local communities how communication and policy can be better
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– research-based knowledge, and the University of Southern Denmark is an indispensable stakeholder in the transition process. Value, quality, talented people and outstanding environments are pivotal
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of Southern Denmark is an indispensable stakeholder in the transition process. Value, quality, talented people and outstanding environments are pivotal for the University of Southern Denmark’s strategic
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the ability to perform complex data analyses. Has experience with implementing computer-based experiments as well as field experiments. Has professional proficiency in English, both written and spoken
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interdisciplinary center for research and education in quantitative genetics and quantitative genomics (http://www.qgg.au.dk/en). QGG is an international organization with 70 employees and visiting researchers from
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Postdoctoral Positions in PFAS Analytics, Degradation, and Thermophysical Properties - DTU Chemistry
high persistence, long environmental half‑lives, and widespread occurrence as contaminants in natural and biological systems. Their low concentrations, diverse structures, and complex behavior create
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acidic peptides and selected post-translationally modified species. The overarching goal is to develop experimentally driven strategies, grounded in gas-phase ion chemistry, that improve peptide and
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peptides and selected post-translationally modified species. The overarching goal is to develop experimentally driven strategies, grounded in gas-phase ion chemistry, that improve peptide and proteome