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Computational Analysis of Collective Cell Behavior – ideally with you on board! How do cells coordinate their behavior to migrate, self-organize, and remodel tissues? To answer this, we combine advanced
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PhD student (m/f/d) in the field of chemistry, chemical engineering, materials science or comparable
skills We offer: Professional and interdisciplinary support through the BAM Graduate Academy, including skill-building and networking formats offered by the Menschen-Potentiale Qualification Programme
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is a vibrant international doctoral program with about 75 doctoral students from more than 25 different countries. Our mission is to support students to develop into creative, critical, responsible and
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regional and international partner institutions. Deadline for applications is 02 November 2025. Virtual panel interviews take place at the end of January 2026. The programme starts in October 2026. The IMPRS
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. We expect strong communication and teamwork skills. Our offer Your PhD will be embedded in the new graduate school program „PhD in Medical Research – Cardiovascular Science“, which is part of
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Via Multiple Noncovalent Interactions” in the second funding phase at the Martin Luther University Halle-Wittenberg will start with a highly interdisciplinary and ambitious research program in November
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The International Max Planck Research School for Ultrafast Imaging and Structural Dynamics in Hamburg, Germany, offers a structured PhD program focusing on ultra-fast phenomena, X-ray physics and
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The International Max Planck Research School for Chemistry and Physics of Quantum Materials is a joint PhD program between the Max Planck Institute for Chemical Physics of Solids in Dresden
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build a computational model of SIHUMIx to predict new interactions and how the community reacts to disturbances—predictions that will later be tested in bioreactor experiments This work will give us a
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systems that mimic such conditions. The successful applicant will thus join an exciting research program in a dynamic working group to investigate the molecular mechanisms on how small DNA tumor viruses