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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | about 10 hours ago
characterization techniques to investigate additively manufactured 3D-structured electrodes for the catalysis of reactions of interest in energy conversion. Your profile Enrollment in a Master’s program at a German
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Job related to staff position within a Research Infrastructure? No Offer Description PhD Researcher Position 3D Printed Synthetic Cells for Chemical Communication Walther Lab @ University of Mainz
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available, here: https://mitmuseum.mit.edu/connection/careers Job Requirements REQUIRED: Undergraduate degree in education or STEAM (Science, Technology, Engineering, Art, and Math) field; a minimum of two
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rely on 3D Mechatronic Integrated Devices (3D-MID) to reduce wiring, weight and bulkiness. More advanced 3D-MID components also contain embedded active devices such as multi-modal sensors and
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-cell imaging and immunolabeling. These images will then be analyzed in 3D using automated methods. - Manipulate the physical constraints to which nuclei are subjected and compare transcriptional dynamics
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to developing methods for iPSC culture, 3D cell models, and stem cell differentiation within the field of complex tissue regeneration. In this PhD project, you will work at the interface of stem cell biology
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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
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, high-level industry collaboration, comprehensive facilities and resources have positioned it as a leading hub for 3D printing research and innovation globally. For more details, please view https
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to developing methods for iPSC culture, 3D cell models, and stem cell differentiation within the field of complex tissue regeneration. In this PhD project, you will work at the interface of stem cell biology
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) analysis of thermal events, subsidence, as well as modelling and production of H₂ in high-temperature contexts (WP2); 3) development of 3D sedimentary basin models integrating these data, and restore