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Field
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include the development of finite elements methods, as well as inverse design strategies based on deep-learning and Neural Networks approaches. The latter will then bring the project to the experimental
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dimensioning and tolerancing, including drawing standard ASME Y14.5. Extensive experience with SolidWorks or equivalent 3D CAD software. Proficiency in Finite Element Analysis using ANSYS, COMSOL, or equivalent
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polymers, Injection moulding, extrusion, extrusion-based 3D printing, direct ink writing, finite element method (FEM). Specific Requirements Scientific knowledge in: Processing and manufacturing of polymers
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programming skills (C++ or Python) and experience with numerical modeling (for instance, Finite Element Analysis or Computational Fluid Dynamics); A strong interest in—and willingness to learn and perform
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of the (computational) mechanics of solids and the finite element method and/or spectral solvers Practical experience in at least one programming language (preferably Python) and experience with the use of Unix/Linux
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sizing. Familiarity with practical finite element analysis using ANSYS Workbench or Comsol, and pipe stress analysis programs such as CAESAR-II, CAEPIPE, AUTOPIPE, WINPIPE, ROHR2. Experience creating and
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measurement and stopping rules controlling type-I error with finite-sample guarantees. Quantum statistical modeling: use of quantum relative entropy, Fisher information, and variational quantum circuits
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“combinatorial magnets,” strategically combining different materials. Working with others in the group, you will be able to then simulate your materials using finite element analysis to determine the performance
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computational mechanics, applied mathematics, physics, computer science, biomedical engineering or a related field Good knowledge of numerical methods and finite-element analysis Solid programming skills in C
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. Advanced proficiency with Computer Aided Design (CAD) software (e.g, Creo, Solidworks) and Finite Element Analysis (FEA) software packages (e.g., ANSYS, COMSOL) for the design and structural/modal analysis