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Field
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. To overcome these limitations, the TUNIC project will utilize a “phenotype-first” approach. This involves: Creating a 3D “tumor-on-a-chip” (ToC) model: This model will incorporate primary human cells, including
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science, with ambition to apply their own ideas, perspectives, and their personal skillset to the discovery and development of new 3D nanoscale magnetic metamaterials. We’d like you to be part of the team
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further development and optimization of the Twin-Pipe Pumping (TPP) technology, a protected, extrusion-based 3D printing technology developed at Ghent University which allows for an increased printing speed
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society, computational social science, and psychology. We invite applications for a full-time postdoctoral researcher to join the interdisciplinary SNSF-funded research project "Digital Originals in 3D
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to join the interdisciplinary SNSF-funded research project "Digital Originals in 3D" (D2M). This innovative project is a collaboration between the University of Basel, the Bern University of the Arts, and
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characterization of 3D-printed SiC-based ceramic metamaterials. We will develop SiC-based thermoplastic feedstocks, a hybrid manufacturing process combining FDM 3D printing and milling, design metamaterials with
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simulation software modelling the dynamic behavior of dislocations (DDD) in 3 dimensions, coupled with a spectral solver based on FFT. The procedures must analyze the simulated 3D microstructures to compare