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science with focus on elastomers or a comparable field of study Salary group 13 TVöD Temporary contract until 30.09.2025 Full-time/suitable as part-time employment The Bundesanstalt für Materialforschung
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The Max Planck Institute of Biochemistry (MPIB) in Martinsried is one of the world's leading research institutions in the fields of biochemistry, cell and structural biology and biomedical research
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the smallest particles of the universe to the building blocks of life. In this way, DESY contributes to solving the major questions and urgent challenges facing science, society and industry. With its
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Research Assistant (m/f/d) in civil engineering, materials science, geosciences, process engineering
To strengthen our team in the division "Technology of Construction Materials" in Berlin-Steglitz, starting as soon as possible, we are looking for a Research Assistant (m/f/d) in civil engineering
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und ‑prüfung (BAM) is a materials research organization in Germany. Our mission is to ensure safety in technology and chemistry. We perform research and testing in materials science, materials
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research data infrastructure: Cooperate closely with the Federal Ministry of Health and other federal authorities within its remit, in particular the Health Data lab at the Federal Institute for Drugs and
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scientific community in the fields relevant to biointelligent systems. Examples include the research areas of synthetic biology, data analysis methods for bioprocesses, molecular communication in cellular and
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function of matter, from the smallest particles of the universe to the building blocks of life. In this way, DESY contributes to solving the major questions and urgent challenges facing science, society and
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Max Planck Institute for Solid State Research | Stuttgart, Baden W rttemberg | Germany | 3 months ago
materials, nanoscale research, and energy science. We offer a vibrant research environment and top conditions for world-class research at the highest level. The Department for Nanochemistry (head: Prof
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, ATAC-Seq, ChiP-Seq for histone mark and DNA methylation. The resulting data will be then combined to uncover factors which can modulate plasticity. Gain and loss of function experiments will be performed