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tasks: 1) state of the art of the face finite element modeling, 2) a patient-specific Face Modeling derived from MRI, 3) implementation of multiscale behavior of soft tissue and muscle 4) simulation
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studies being conducted. These investigations will form the core of the second year of the PhD. The simulation results obtained from both methodologies will be compared and refined to improve model accuracy
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requirements for training data, memory, and computing power while maintaining a high level of accuracy. Particular attention will be paid to the explainability and embedding of the models to facilitate
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of investigating the relationships between microstructure, processing routes, and thermomechanical performance. The research will combine physics-based modelling and numerical simulations, including thermomechanical
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the unique features of myosin 18 enable it to fulfill its regulatory role, using modeling and simulation approaches. Various computational methods will be employed to investigate the structural and dynamic
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, if possible with a focus on modelling/numerical simulations. • A good level of Python programming is required. • A level of scientific English sufficient to conduct research and build international
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combine laboratory experiments, numerical simulations, artificial intelligence and field observations to address outstanding questions in physical oceanography, atmospheric sciences, physical limnology
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experimental work; • Strong interest in modeling/simulation, particularly multiphysics modeling, and data analysis; • Autonomy, scientific curiosity, and the ability to work in a multidisciplinary environment
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, the work will benefit from the complementary expertise of the PIIM and IRAP groups in theoretical modeling and numerical simulations of centrifugal instabilities, in the context of both laboratory devices
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resistance of ceramic shell moulds used in investment casting. Advanced in situ experiments combined with multi-scale Finite Element Method (FEM) modelling will be employed to identify the key stress and