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Ecole Nationale des Ponts et Chaussées (ENPC) | Champs sur Marne, le de France | France | about 2 months ago
/show/id_offre/135518 Requirements Specific Requirements Needed skills and knowledge: Numerical modelling (experience in Finite Element Methods and/or AI-based modelling) Collaborative work in a large and
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acting on operators, such as computational methods for fractional powers of differential operators. A particular emphasis will be on the development, implementation and error analysis of finite element
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accepted all year round Details The advent of easily accessible high performance computers or computer clusters and numerical techniques such as finite element methods (FEM) facilitates the highly accurate
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numerical simulation methods (e.g., finite element methods, FE simulations). General Conditions: The professorship is a temporary qualification position. In accordance with Article 51 (Higher Education Act of
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assigned. (2%) Required Education and Experience Master’s Degree in relevant field of engineering 3 years of related professional experience to include non-linear finite element modeling and simulation
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Engineering or a closely related discipline. You will have demonstrable experience in one or more of the following areas: Finite Element Analysis, Computational Fluid Dynamics, Discrete Element Method, Multi
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mechanics, finite element modeling, and scientific machine learning. The RSE will contribute to the design, implementation, and maintenance of open-source software libraries that integrate phenomenological
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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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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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ministerial journal list, 4) experience in numerical modeling of single-step sintering processes of thermoelectric modules using the finite element method, 5) experience in 3D design and experimental