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modelling. MISSION You will actively contribute to the development and evaluation of new hybrid computational method to predict biological tissue deformation with subject-specific material properties
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projects; knowledge of the English language. III. Work Plan: …………………………………………………………………………………………………………………. PT1 — Development and adjustment of specialized language models (LLMs) in the field of regional
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the future of offshore wind structures by developing integrated models of turbine dynamics under wind, waves, and future climate conditions at TU Delft. Job description Offshore wind energy is expanding
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: Computational biophysics, drug delivery, protein design Keywords:Computer simulations, coarse-grained model, molecular dynamics, membrane fusion, fusion protein, protein design Funding of the PhD candidate: ERC
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: 10.1038/s41467-023-39181-2 Research area: Computational biophysics, drug delivery, protein design Keywords:Computer simulations, coarse-grained model, molecular dynamics, membrane fusion, fusion protein
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curricula. Demonstrated knowledge of best practices supporting equity in higher education. Skills in judgment and decision-making. Knowledge of current research and theoretical models that influence
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Centrifuge Physical Modelling of Floating Offshore Wind Moorings in Layered Soils Offshore Wind CDT PhD Research Project Competition Funded UK Students Dr Elisabeth Bowman, Prof Charles Augarde
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, and hybrid models integrating computer-vision–derived features. Build and test pipelines for pose detection, object tracking, optical-flow analysis, and gaze–scene alignment, in collaboration with
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out and oversee research projects in multimodal, generative, and embodied AI. The role will focus on designing, developing, analyzing, and evaluating large AI models to push the current boundaries. Key
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ultrasonic array inspection, a widely used form of NDT, and so the results can be applied across a wide range of industrial applications. Current approaches are based on the detection of a critical defect with