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Field
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with 3D cell culture, organoids or tissue engineering will be considered a strong advantage. Experience with image analysis software (ImageJ/Fiji) and scientific computing tools (Python, R or equivalent
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Wafer-to-wafer bonding is a key enabling technology for future 3D chip
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Vacancies PostDoc position on Wafer Bonding Physics for 3D Chip Integration Key takeaways Wafer-to-wafer bonding is a key enabling technology for future 3D chip integration, where chips are stacked
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transfer at the liquid-solid interface. To connect materials to devices, you will prototype booster-bed reactors from mL to L scale by 3D printing and support the transfer of promising formulations toward
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culture, including 3D culture, co-culture, organoid culture, or matrix-embedded cell systems. Experience with fluorescence microscopy and quantitative image analysis. Proficiency in standard molecular
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-solid interface. To connect materials to devices, you will prototype booster-bed reactors from mL to L scale by 3D printing and support the transfer of promising formulations toward scalable, solvent-free
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. Solid knowledge in cell and structural biology, as well as expertise in sample preparation and 3D electron microscopy image analysis, are required. Holder of a PhD in biology or biophysics, you have
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. These studies focus in particular on health-related biomaterials, including functionalized wound dressings, targeted drug delivery systems, cancer-targeting nanoparticles, and 3D-printable biomimetic hydrogels
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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 9 days ago
science and other instrumental analysis techniques to investigate the links between electrode surface topology and electrocatalytic activity, selectivity and stability. The focus is on reactions
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, the proteolytic mechanisms involved in dental pulp inflammation, particularly in various 2D/3D models. The postdoctoral researcher will produce bioactive protein fragments and characterise their roles in dental