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candidate will investigate ion transport through atomically thin membranes made of 2D polymers and graphene derivatives in close collaboration with experimental partner groups MPI Halle and Leiden University
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Multicellular organisms rely on differential gene expression to create cellular diversity. Precise gene regulation is crucial, as failures can lead to reduced fitness, developmental defects, and disease
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that demand interdisciplinary solutions? Then the Program for Collaborative Doctoral Projects is the perfect opportunity for you. Many of today’s most pressing problems can only be tackled through
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to work independently or in a team Preference will be given to candidates with evident experience in the listed fields What we offer Training in cryo-electron microscopy and interfacing techniques
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-5035 (2006)). However, when improperly regulated, R-loops can lead to replication-transcription conflicts, DNA damage, and genome instability, contributing to diseases such as cancer and
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Artificial Intelligence – ScaDS.AI. We seek to fill the above position as soon as possible (e.g., Oktober 1, 2025). This interdisciplinary project investigates how physical systems can serve as computational
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well as modern genetic engineering methods and microscopy. Requirements: a very good MSc or equivalent degree in Biology, Biochemistry/Biophysics is required for employment experience in cell or molecular biology
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of the molecular species of the radionuclide in cellular compartments/cells using spectroscopic techniques (e.g., UV-Vis, Raman, X-ray absorption spectroscopy) and microscopic methods (e.g., electron microscopy
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. In this project, we study the formation of the perovskite thin films using our own spin-coater. The candidate will use time-resolved X-ray scattering in grazing incidence (GISAXS/GIWAXS), Atomic Force
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Description Water can move in two interconnected realms: the fast, visible rivers at the surface and the slower, pressure-driven flow within substrates. Today, engineers can model each realm