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: Theory of Machines and Mechanisms (GITI and GIQ), Machine Design (GITI), History of Machines and Manufacturing (GITI and GIQ), Tribology (MIMec), INGENIA-Machine Project (MII). Research profile: 3313
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group’s research advances polymer network design to achieve high mechanical performance for the evolving demands of modern technologies. For more details, please view https://www.ntu.edu.sg/mse/research
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structural design. LanguagesENGLISHLevelExcellent LanguagesSPANISHLevelGood Research FieldOther Additional Information Benefits Gain hands-on experience with cutting-edge computational mechanics, AI-driven
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orientation of its research concerns aerodynamics, solid mechanics and energy conversion in flows including plasma and lasers. Participation in the design and optimization of integrated energy systems
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of space systems within the AIV domain. Development of thermo-mechanical analyses for the design of electronic systems within the AIV domain. Preparation and definition of component tests for space
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École nationale des ponts et chaussées | Champs sur Marne, le de France | France | about 17 hours ago
computational mechanics and scientific machine learning. The successful candidate will work on the design of hybrid, physics-informed modeling and identification frameworks for complex dissipative material
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Mechanics. Biological Fluid Mechanics. Professional Experience: Design and development of experimental flow circuits. Running experimental campaigns. Applications of biological fluid mechanics. Experience in
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École nationale des ponts et chaussées | Champs sur Marne, le de France | France | about 17 hours ago
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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Infrastructure? No Offer Description Hardware prototyping for testing of space systems within the AIV domain. Development of thermo-mechanical analyses for the design of electronic systems within the AIV domain
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, D.; Candusso, D.; Meyer, Y. Design of Experiments on the Effects of Linear and Hyperelastic Constitutive Models and Geometric Parameters on Polymer Electrolyte Fuel Cell Mechanical and Electrical