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imaging inside human long bones (https://doi.org/10.1007/978-3-030-91979-5_10). For optimal imaging inside bone, one must consider the challenging 3D wave physics imposed by bone tissue: wave refraction
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a candidate with: A PhD degree in Hydraulic Engineering, Marine Engineering, Earth system Science or related discipline. Experience with physical (wave) modelling is required. Being available at short
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atmosphere-ocean-wave mesoscale modelling. Job description Offshore wind energy is expanding rapidly with larger turbines, higher power densities, reduced spacing between wind farms, and deployment in deeper
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for offshore renewable energy applications. The group specializes in computational modeling of fluid-structure interactions, wave-structure interaction and mooring systems for offshore renewable energies. You
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postdoctoral researcher to accelerate our strategic partnership with ING and drive innovation at the intersection of banking and Large Language Models (LLMs). The role focuses on designing, validating, and
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, flavour and neutrino physics, effective field theories, precision tests of the Standard Model, cosmology and gravitational waves. If you feel the profile fits you, and you are interested in the job, we look
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system using dedicated tools such as STEM, ensuring that the lab-scale tests and models reinforce each other. We are looking for a candidate with a strong background in vibration and wave dynamics
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of floodplain channels and lakes). By combining field monitoring and numerical modelling approaches, we will assess how reactivated paleochannels, constructed floodplain systems, or other solutions can create
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techniques with the constraints of silicon processes. In parallel, you will develop on-chip antenna structures, performing full-wave EM simulations and translating these designs into manufacturable layouts