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theory. Demonstrated experience with finite element methods, including model development, implementation, and validation. Proficiency in scientific programming, with experience in one or more languages
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modelling and oomph-lib for continuum mechanics simulations, enabling the integration of discrete and finite element methods. Coupled with machine learning techniques, this approach will address the complex
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the rejection of the application. Programming skills in Python, MATLAB (including Simulink), C/C++, or similar languages are required. Understanding of 3D modelling methods (finite volume and/or finite element
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in the numerical modeling of crack initiation, crack propagation and fracture in CCAs prospective for hydrogen applications, which will be performed by finite element method (software Ansys) and
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Engineering, or a related field Strong background in solid mechanics, lightweight structures, or composite materials Strong written and verbal communication skills in English Experience in finite element
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interfaces Implement models in finite element frameworks and validate them experimentally Develop your own scientific ideas and communicate results through publications and presentations Contribute to teaching
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to the viscoelastic behavior of polymeric foams under large deformations dynamic loadings. The objective is to simulate, using the finite element method, the response of these porous microstructures under complex
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mechanics, finite element method, isogeometric analysis, geometric modeling, machine learning, data-driven modeling, digital twins A combination of education and relevant experience from which comparable
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Research Assistant (m/f/d) with a Ph.D. in Civil Engineering, Engineering Physics, Physics, Mathemat
analysis of parameterized finite‑element models. By integrating data‑driven and FEM‑based approaches, a hybrid model is developed that accurately represents physical relationships while providing real‑time
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. Emphasis is placed on model validation against both high-fidelity finite element simulations and experimental tests of structural subassemblies. key words Blast loading; Computational modeling; Finite