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factors, and travel speed, while also studying resonance behaviour and determining the optimal excitation frequencies for maximizing signal-to-noise ratios. Write a doctoral dissertation, publish results in
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platform required for this project. Characterize ultrasound propagation loss, quality factors, and travel speed, while also studying resonance behaviour and determining the optimal excitation frequencies
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the RIVM, gaining experience in respiratory toxicology and in designing optimal in vitro experiments. You will also have opportunities to build an (inter)national network, participate in national and
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concepts for spot size converters (SSCs) on our Indium Phosphide (InP) Photonic integration platform Developing and optimizing a manufacturing process for the SSC in the Nanolab cleanroom at TU/e
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. You are independent, self-motivated and eager to learn. You are keen to work with partners to link real-world challenges to fundamental research questions. Desirables: Experience with optimization
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Computational Fluid Dynamics (CFD) has become indispensable for aerospace design, many important problems—including high-fidelity flow simulations, uncertainty quantification, and multidisciplinary optimization
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research questions. Desirables: Experience with optimization methods and scheduling problems as well as optimization packages such as Pyomo. You enjoy programming and have experience with Python, machine
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your experimental skills to provide understanding of complex multi-phase phenomena and optimize industrial processes. With your pioneering mindset and hands-on experimental experience, you will be able
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backward erosion (piping). Your job The Netherlands relies on a network of about 2,000 km of river dikes to contain flooding in its floodplains. These dikes undergo continuous assessment, maintenance, and
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. The research interests and expertise include advanced modelling and design optimization methods for machines development. We use both experimental testing approaches and computational modelling and closely