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, physics, applied mathematics, engineering, computer science or related discipline. Strong skills in fluid mechanics and numerical modelling. Experience with large observational data sets of environmental
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environments; (2) identify which patterns of student-AI interactions influence the adoption of deep or surface approaches to learning; (3) create, implement and evaluate guidelines and knowledge base
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such as municipalities operate in an increasingly complex and dynamic environment. Globalisation, rapid technological developments, and societal changes require organisations to perform reliably and to
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. You will join the section Environmental and Climate Design, department of Architectural Engineering and Technology at the Faculty of Architecture and the Built Environment, TU Delft. You will work in
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frameworks and community-based adaptation strategies in collaboration with the project’s civil society partners. You will be based within the section of Environmental Technology and Design (ETD). ETD
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to enable future technologies in electronics, photonics, and energy storage . You will work in a highly collaborative environment within the Plasma & Materials Processing group, embedded in TU/e’s strong
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our understanding of how cloud-microphysical processes in stratocumulus interact with radiation and turbulence. Working style and research environment: You will join the Geoscience & Remote Sensing
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a vibrant and collaborative research environment within the Industrial Microbiology section of the Department of Biotechnology at TU Delft. The section brings together six principal investigators and
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originating from the transition towards a more sustainable society and focuses on four areas: The department’s ESP Laboratory brings together High Voltage testing, DC Grids environment, and large RTDS for real
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imaging applications. The researcher will work in an interdisciplinary MRI research environment and collaborate closely with researchers in MR physics, engineering, and biomedical imaging. The position