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Application/Interview Strong background in semiconductor device design and/or simulation, including photolithographic mask layout Essential Application/Interview Experience of 3D finite element modelling (FEM
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-based micro-finite element (microFE) models of the mouse alveolar bone can be used to evaluate accurately the bone stiffness, bone strength and local deformation, as compared against state-of-the-art
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of developing novel computational frameworks that seamlessly integrate machine learning techniques with established methods in computational mechanics, such as the Phase-field Finite Element Methods. Potential
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degree in Engineering and have an interest in and/or a good understanding of numerical modelling and testing of structures. Prior knowledge of finite element methods and programming (e.g. C++, Python
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by using commercial software such as Ansys, Abaqus, SolidWorks, etc. Experience in computational fluid dynamics (CFD) modelling or finite element (FE) modelling; Fundamental knowledge in fluid
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microstructure to achieve desired mechanical properties and stress states. The use of finite element based software (e.g. ABAQUS, DEFORM, QForm or similar) for process simulation (e.g. forging, heat treatments
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such as finite element analysis, computational fluid dynamics or tribology. Applicants with an interest in thin film lubrication, wear modelling, fluid-structure interaction and/or the applications on human
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finite element analysis Structures and construction material lab testing You will have gained this experience and expertise through engagement in practice, or through your substantial proven teaching and
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at least one or more of the fields of medical image processing, computer graphics, continuum mechanics, the finite element method, machine learning, AI and Data Science. Additional skills in games engines
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. Analyse, categorise and document collected seismological, geological, tectonic and built environment data and model and map the data in GIS environment. Develop high-fidelity Finite Element (FE) models of