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OTCF (Osteosynthesis & Trauma Care Foundation) Research Grants 2026 | Switzerland | about 2 months ago
mechanisms, and improve device performance through innovative three-dimensional biofilm models. Where to apply Website http://www.otcfoundation.org Requirements Additional Information Eligibility criteria
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prestressing of cast and 3D-printable SURPASS overlays using Fe-SMA fibres. Meso-scale finite element modelling of volumetric prestressing mechanisms with Fe-SMA fibres, including activation, recovery stress
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Empa within the framework of SURPASS are as follows: Volumetric prestressing of cast and 3D-printable SURPASS overlays using Fe-SMA fibres. Meso-scale finite element modelling of volumetric prestressing
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for finite element methods, or the AI-assisted discovery of new discretization paradigms for classes of PDEs where standard methods struggle, with their properties then verified formally. You will publish and
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of the periodic table. For the Heavy Elements group of the Laboratory of Radiochemistry we are looking for a PhD Student in Radiochemistry Your tasks Develop new radiochemical methods and instrumentation
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knowledge and technology from academic research into the Swiss mechanical, electrical, and metal industries. The Machine Concepts research group at inspire AG is offering a position in the field of AI-based
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contribute to our mission of developing rigorous and systematic methods for the design, realization, management, operation, and retirement of multi-scale complex systems. The fields of Energy Systems research
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and development methods (for conventional drug and newer therapeutic modalities), 3D printing and bioprinting, homogenization techniques, and microfluidics-based formulation strategies. Expertise in
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methods (for conventional drug and newer therapeutic modalities), 3D printing and bioprinting, homogenization techniques, and microfluidics‑based formulation strategies. Expertise in developing and applying
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establishing a new laboratory for laser cooling, trapping, and imaging ultracold rubidium atoms in optical lattices. With newly developed methods, such as high-fidelity collisional atom-atom interactions, we