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, decoupling energy density from active-material solubility while preserving the modularity and safety of aqueous flow batteries. The performance of such batteries hinges on the solid booster formulation
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protocols. In close collaboration with the lab of George Coukos (https://agora-cancer.ch/laboratory/coukos-lab/ ), we will derive protocols enabling rapid expansion of cancer-specific, autologous TILs
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architectural features, material properties, and characteristic length scales influence quantities such as contact area, pressure distributions, interface stiffness, and load transmission. Building
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the development of innovative strategies adapted to each actor. It involves interdisciplinary works and draws on LCA, urban metabolism and material science. Alongside research and industry collaborations, we
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material designs and synthesis routes via 3D printing with applications in medical soft robotic applications. 2) Characterization setup for probing mechanical behaviour of active and passive materials
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polymer networks; (ii) (bio)material processing; (iii) organ perfusion and regeneration; (iv) tools to study mechanobiology and cell–matrix interactions; and (v) engineered drug delivery systems. The lab is
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Teaching the module M06 Advanced Deep Learning. Developing and delivering module content suitable for online teaching. Providing online resources and learning material for our teaching platform. Supporting
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Teaching the module M05 Computer Vision & Perception. Developing and delivering module content suitable for online teaching. Providing online resources and learning material for our teaching platform
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, material science, or a related discipline. You have a background in mechanics, applied physics, computational mechanics, scientific computing, or a related field. A foundation in areas such as solid
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/ ) includes the development of: (i) rational design of dynamic polymer networks; (ii) (bio)material processing; (iii) organ perfusion and regeneration; (iv) tools to study mechanobiology and cell–matrix