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thermoplastic polymer-nanofiller composites for dry electrode processing Engineer fibrillar composite network structures with tailored morphology Develop processing routes Perform advanced structural and
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and external project partners Ensure timely milestone reporting and structured project documentation Your Profile: Expected: Completed PhD in Materials Science, Polymer Science, Chemical Engineering
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Max Planck Institute for Demographic Research, Rostock | Rostock, Mecklenburg Vorpommern | Germany | 3 days ago
. The position We welcome applications from researchers with a PhD in demography, statistics, sociology, economics, epidemiology, public health, or allied fields. Depending on background and interests
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Max Planck Institute for Demographic Research (MPIDR) | Rostock, Mecklenburg Vorpommern | Germany | about 21 hours ago
Demography . We welcome applications from researchers with a PhD in demography, statistics, sociology, economics, epidemiology, public health, or allied fields. Depending on background and interests
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world with increasing digitalization and medical needs. Our research integrates materials chemistry, biological processes, physical analysis, process engineering and data science. We collaborate with
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, infrastructure, environment, materials, and chemistry and process engineering. We are looking for talented people to join us. Your responsibilities include: Research and development in civil safety, particularly
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creep behavior Publication of the results Your qualifications: Completed academic degree (Diploma/Master) in materials science, materials engineering, or a comparable field Completed PhD In-depth
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across a broad range of experimental approaches. The institute provides a modern scientific environment with close links to clinical research, translational projects, and excellent central technology
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organoid models – ideally with you on board! RESPONSIBILITIES: Contributing to the structural and methodological establishment of the Core Unit for Stem Cell Technology Generation, characterization and
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project is to uncover how collective dynamics and signal-ing feedbacks drive robust pattern formation during early development. We apply advanced stem cell culture approaches, 3D organoid engineering, and