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Field
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processes and help collectives envision and develop the organisational and digital tools required for broader participation. You will be part of a cohort of 11 PhD candidates from multiple Dutch universities
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experimental mechanics profile of excellence, to work on a challenging micro-mechanical testing project, in an exciting multidisciplinary team. Context The yield of many manufacturing processes of micro- and
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-induced particle remobilisation remains poorly understood. These processes vary fundamentally across rock types – from porous sedimentary to fractured crystalline systems, with volcanic and altered
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. Kirilyuk. Two PhD positions are available: Ultrafast dynamics of phonon‐driven magnetic switching ‐ You will develop new ways to optically control the magnetic state of materials with the lowest possible
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at the intersection of neural engineering, computational neuroscience, biomedical signal processing, and embedded systems design. The project aims to develop a novel electrical nerve-stimulation
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experiments to minimize interfacial thermal resistances in the system, controlling nanofiller network formation in upcycled waxes to enhance overall heat transfer characteristics. The project combines chemical
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chemistry, rheology, and curing dynamics control mechanical performance and print quality. Your role: Formulate novel ink systems with tailored polymer architectures and additives. Investigate how rheology
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application of scientific knowledge. Experience with quantitative research methods and data analysis is required. Experience with using LLMs is a plus. Excellent written and spoken command of English (C2
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solid mechanics, sensing and signal processing, and robotics? If so, you might be an excellent candidate. Information The demand for autonomous robots capable of physically interacting with the world in
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of metal electrodeposition is largely lacking. Knowledge gaps remain on the exact mechanisms of conversion from solid oxides to metallic iron, as well as the exact physics and operation parameters