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Max Planck Institute for Intelligent Systems, Stuttgart, Stuttgart | Stuttgart, Baden W rttemberg | Germany | 3 months ago
by Dr. Florian Hartmann, is looking for a Postdoc Position (m/f/d) in Bioinspired Protein Materials and Sustainable 3D Printing starting from October 1st , 2026. We are interested in sustainable
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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 2 days ago
of electrocatalysis, employing electrochemical and materials science characterization techniques to investigate additively manufactured 3D-structured electrodes for the catalysis of reactions of interest in energy
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interactions exist with the Karlsruhe Institute of Technology via the DFG-funded Excellence Cluster “3D Matter Made to Order” (3DMM2O). Heidelberg University invites applications for the following full-time
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automated extraction of morphological features (e.g., porosity, tortuosity, connectivity) and fluid flow characteristics from 2D and 3D images resulting from magnetic resonance, X‑ray and electron images
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single-cell multi-omics (scRNA-seq, scATAC-seq, Multiome) data generated in 3D forebrain dorsal organoids, we aim to map regulatory networks sensitive to NR2F1 expression levels. Our group studies
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of single-cell multi-omics data (scRNA-seq, scATAC-seq, Multiome) to reconstruct gene regulatory networks in 3D forebrain dorsal organoids to determine pathophysiological consequences of aberrant NR2F1 dosage
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Research Engineer or Postdoctoral Researcher (m/f/d) in the field of Engineering Physics or Material
qualification) for research and development into specialty optical fibres Your tasks 3D-printing, extrusion, and chemical purification of structured glass preforms made from fused silica Drawing
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development into specialty optical fibres. Your tasks 3D-printing, extrusion, and chemical purification of structured glass preforms made from fused silica Drawing of microstructured optical fibres, in
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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
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positions are flexible in terms of research direction within 3D vision and graphics with a heavy focus on cutting-edge deep learning-based techniques. We are particularly interested in static and dynamic 3D