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antigens presented by MHC molecules. This curiosity-driven project develops cutting-edge AI technology for 3D TCR–pMHC modeling to improve neoantigen identification, TCR specificity prediction, and TCR
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brittle minerals into tough materials, like the nacre in seashells, by combining them with soft organic polymers. In this project, we explore a fundamentally different approach. Using 3D-printed concrete as
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Mobility through high-resolution CFD simulations, 3D urban modelling and real-world measurements. Join TU Delft to improve the safety and sustainability of future urban aviation! Job description The 3D
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Advance Urban Air Mobility through high-resolution CFD simulations, 3D urban modelling and real-world measurements. Join TU Delft to improve the safety and sustainability of future urban aviation
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mechanics and propulsion, for which the AEROSQIN project constitutes a perfect framework. The candidate will advance techniques for large-scale 3D particle tracking by merging measurement theory and practice
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for large-scale 3D particle tracking by merging measurement theory and practice with flow modelling for applications in industrial wind tunnels for the aerospace sector and oversee the application of helium