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Field
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stimulating, high-profile research project A fully funded multi-year postdoc position (remuneration according to TV-L salary scale 13) Training in wet-lab & computational work; intensive mentoring within
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technology for the production of plant-based protein ingredients as an alternative for the current energy intensive wet fractionation processes. While dry-fractioned protein concentrates have a lower
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various environmental samples ranging from extinct and ancient animals to consumer food products. These fragments can be detected and analyzed using our specialized wet and dry-lab methods. The objective
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GSMI - Postdoctoral Researcher - Plant Ecology and Soil-Plant Interactions in Vegetated Photovoltaic
. Analysis of vegetation effects on microclimate. Participation in the analysis of soil–plant interactions (composition, moisture, microbiology). Scientific valorization: publications, reports, and
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, temperature). Design and test lab-scale reactors for wet scrubbing of acid gases (SOx, HF) using mine-derived carbonates. Investigate the effects of impurities (P, F, Mg…) on gaz neutralization efficiency
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initiative aimed at developing advanced functional devices with real-world impact in electronics, sensing, and energy systems. Essential Functions Synthesize and process nanomaterials using wet-chemical and/or
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Assistant 3 will independently coordinate and manage the wet lab of the Bioinformatics and Systems Microbiology Core lab and carry out procedures and projects in microbiome research to support the laboratory
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for the next possible date at the Institute of Experimental Cardiology. We are seeking a highly motivated and creative Postdoc for a combined wet and dry lab project (https://tinyurl.com/postdochd) in
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synthesis will involve wet chemistry and other well-established solid-state methods. Required qualifications: The candidate must hold a PhD degree in Materials Science, Materials Chemistry, Inorganic
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correlating findings with analysis of patient material. You will take a lead role in conducting wet lab experimentation, applying state-of-the-art single-cell multiomic approaches, including transcriptomic