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Where will you work? You will be appointed at TU Delft and work within a research group with strong expertise in vascular access, large animal models and clinical translation. At the same time, you will
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pipetting, preparation of buffers and solutions, pH adjustment You are interested in combining different types of experiments: preparing MOF materials and thin films, loading peptides into porous materials
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Contribute to the safety of next-generation micro nuclear reactors for maritime and land-based applications. At TU Delft, you will develop advanced multi-physics models that support the design and
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? Important subquestions are: How can the thermal behavior (including the runaway) of batteries be understood and modelled? This includes factors like the load cycles of the batteries, but also possible
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. The research may involve a combination of commercial process simulation tools and in-house model development for individual unit operations and integrated systems. Hybrid modeling approaches combining first
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into detector specifications, design and model suitable device structures, develop a CMOS-compatible fabrication and integration route, and fabricate experimental devices. You will characterise spectral
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an SEM. The project combines theoretical modelling, numerical simulations, hardware development, precision engineering, and experimental validation, providing a unique opportunity to contribute
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narratives through participatory research methods and stakeholder engagement. Apply spatial modelling tools (e.g., GIS) alongside AI-based techniques to generate risk and vulnerability maps. Analyze and
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. Set up a quantitative, experimentally validated model of the ultrasonic flow sensors Design an experimental sensing platform required for this project. Characterize ultrasound propagation loss, quality
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and viscosity of flows. Develop and invent novel measurement strategies and methods. Set up a quantitative, experimentally validated model of the ultrasonic flow sensors Design an experimental sensing