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and expertise with experimental techniques (e.g., experience with UHV technology, mass spectrometry, flow dynamics or IR spectroscopy). Applicants must be proficient in spoken and written English. The
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particular focus will be on exploiting the extensive experimental data generated within the HKN project, including measurements from wind-tunnel experiments and full-scale offshore wind turbines. These data
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Are you passionate about experimental aerodynamics and flow visualization? Apply for a PhD position that aims at transforming flow field measurements into aerodynamic forces by pressure and friction
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highly appreciated: background in experimental research in spin qubits, magnetic materials, spintronics. We strongly encourage candidates from all backgrounds and identities to apply. We believe diverse
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measurement outcomes. Excellent Collaboration and communication skills Optional but highly appreciated: background in experimental research in spin qubits, magnetic materials, spintronics. We strongly encourage
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Provide fundamental insights into an air turbulent jet impinging on a liquid surface, using state-of-the-art experimental techniques. That’s your challenge as a PhD candidate at TU Delft. Want
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to predetermined intervals. Ultimately, this approach aims to contribute to lighter, safer, and more sustainable aircraft structures. The PhD positions Experimental characterization and digital twin development A
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investigate CO₂ desublimation under controlled cryogenic conditions. The project is primarily experimental, supported by modelling and data analysis. You will design, build and operate a cryogenic experimental
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. The project will combine experimental and clinical research to advance theory-driven treatment improvements. Your colleagues: You will work within a highly collaborative and interdisciplinary team across
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structures. The PhD positions Experimental characterization and digital twin development A key challenge in developing a reliable digital twin is accurately characterizing the static and fatigue behaviour