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Field
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Producing and characterizing acidic membranes for fuel cells and electrolyzers operating up to 90 degrees Celsius Publishing and presenting research results at project meetings, in relevant scientific
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aim to leverage high-throughput phenotyping to create knowledge about plant function at the physiological level and use forward genetics approaches to unravel the genetic architecture of root traits
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electrolyte and electrodes and their influence on the overall performance and safety of sodium-based batteries and their chemistry You cooperate with partners from theory to optimize charge transport
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climate states. Key responsibilities To carry out and complete your own research towards a doctoral degree. Design, run, and analyse equilibrium simulations with a coupled Earth-system model of intermediate
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finding balance between work and family life (including finding childcare facilities, advice on caring for relatives) through a family service Workplace health promotion and support for participation in TU
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Description With its work, the Leibniz Institute of Vegetable and Ornamental Crops (IGZ) contributes to a better understanding of plant systems and thus to the development of sustainable and
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, miniaturised devices for biomedical research, and to other specialised applications. However, our current understanding of the key factors that affect their performance is limited by the fact that most
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microscopy Experience in cell sorting via FACS and experimental lung research would be advantageous Extraordinary level of autonomy, initiative, analytical thinking and ability to work in a team Excellent
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) chemistry, physics, bio- and chemical engineering will work closely together to research and develop the basis for the targeted use of sustainable polysaccharides in hydrogel applications. You will work in a
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Computational modeling Data processing and analysis Presenting the results of their work at national and international conferences Preparing research manuscripts for publication Requirement An M.A. or equivalent