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reinforcement of laminated FRPs using prestressed Z-pins. Your research will contribute to the fundamental understanding and quantitative assessment of whether, and to what extent, SMA Z-pins are an efficient
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of Computational Fluid Dynamics CFD environment and simulations including: - Computation of the microwave field, Coupling of the microwave field with the plasma - Computation of elementary ionization, recombination
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to study and predict. In this four-year SNF-funded project, you will develop data-driven, multiscale simulation methods that combine computer simulations, machine learning, and surrogate models to explore
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properties of the cold-sintered ceramic disks Explore the chemical composition of the cold-sintered ceramic disks Your profile You have a master in chemistry, materials science, mechanical engineering or a
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that autonomously optimizes 3D velocimetry measurements by dynamically adjusting camera positions and optical parameters. Integrating the framework within a digital twin environment for pre-training and simulation
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missions (e.g., CO2M, TANGO, Sentinel-4/5). Your research will contribute directly to monitoring global efforts to reduce greenhouse gas emissions and achieve net-zero targets. Your tasks Simulate emission