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from advanced centrifuge tests with numerical simulations. We are looking for candidates with a PhD in geotechnical engineering and proven experience in numerical modeling of offshore foundation systems
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durability against chloride ingress and carbonation; Predicting service life of precast SCC elements; Coupling experimental durability data with advanced numerical simulations. The researcher will be based in
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durability data with advanced numerical simulations. The researcher will be based in the Microlab (Section Materials & Environment), Faculty of Civil Engineering and Geosciences, Delft University of Technology
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having and affinity to supporting numerical methods. In particular, we look for a candidate with A PhD in an appropriate discipline, including Aerospace, Mechanical, Civil or Electrical , Materials Science
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composite materials and structures with an interest in advanced experimental approaches for thermomechanical manufacturing processes while having and affinity to supporting numerical methods. In particular
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peptide translocation. Beyond COMSOL finite-element numerical simulations, the focus is on experimental characterization of various analytes in various modified nanopores by ion current measurements
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COMSOL finite-element numerical simulations, the focus is on experimental characterization of various analytes in various modified nanopores by ion current measurements, augmented by AFM, TEM and DIB
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contribute to smart grids that make energy networks more efficient, mathematical models that assist medical doctors, schedules that make hospitals more efficient and numerical schemes to study multiscale fluid
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assessment. You will be provided with access to various engineering and computation toolsets along with the high-performance computer. A good background in numerical methods and computational platforms is
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learning with a background in robust and embedded control, aerospace systems and physical modelling, as well as in artificial intelligence-related concepts, computer vision and numerical optimisation