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structural analysis: (1) Proven experience in using finite element analysis software in aerospace applications. (2) Knowledge of thermal and mechanical design of aerospace systems. (punctuation: 25) Item 03
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element methods. Knowledge of aluminium alloys Experience using non-linear finite element software, e.g., Abaqus. Experience with programming using Python and Fortran. Experience with conducting
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characterization, and/or component validation and verification. Strong background in CAD, finite element analysis, additive manufacturing, integrated computational materials engineering techniques and software
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École nationale des ponts et chaussées | Champs sur Marne, le de France | France | about 2 months ago
will involve the coupling of advanced constitutive models with finite element simulations, and the formulation of full-field, physics-constrained training and calibration strategies. Applications will
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the fatigue life of highway bridges by investigating the role of damping under combined thermal and heavy traffic loading. The project involves: Developing high-fidelity Finite Element (FE) models of highway
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National Institute of Research and Development for Electrochemistry and Condensed Matter | Romania | 10 days ago
of materials. • Numerical simulation (CAE) of fluid dynamic behavior using finite element analysis (FEM) and strength criteria. • CAD design (Catia V5, Ansys). Important skills include openness to learning and
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%). You will work on the extension of the DUNE-FEM package to support computations on GPU hardware with various types of Finite Element methods. This work is embedded in a research project considering
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the professional field (punctuation: 30) Item 02: Specific merits in thermal and structural analysis: (1) Proven experience in using finite element analysis software in aerospace applications. (2) Knowledge
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-fidelity finite element models to investigate surface wave propagation in soft biological tissues, forming the foundation for subsequent statistical and machine learning frameworks that integrate
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interaction peut conduire à un transfert de quantité de mouvement mesurable. En particulier, nous explorerons la possibilité que la turbulence et la nucléation de vortex constituent le mécanisme microscopique