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adaptation, and unsteady force generation in dragonfly-inspired configurations. 2. Computational tool development — Extend the existing 2D FEM/FSI solver to efficient 2D and 3D simulation of compressible
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. This research will explore novel approaches for enabling AI at the edge, focusing on one or all of the following aspects: i) hardware-aware scaling, model compression, and novel approaches for diverse low-power
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of plastic materials through hot and high-strain-rate compression tests, as well as studying the optimization of plastic deformation processes through numerical simulation. The main goal will be to identify
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; (ii) the existence of low-regularity weak solutions for compressible fluid systems with capillarity; (iii) uniqueness for a quantum fluid model in the presence of topological defects. Where to apply