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also explore the use of these bio-based polymers in the development of durable composite materials. Are you our next PhD candidate in sustainable polymer chemistry? Your research challenge In this PhD
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, current tear-collection methods can alter tear composition and prevent reliable measurements, limiting the clinical adoption of tear-based diagnostics. In this PhD project, you will develop innovative
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, and how strain rate influences material behaviour. The resulting experimental data will be used to validate numerical models and contribute to certification by analysis of future composite structures
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infer the composition of subsurface oceans, by recognising and characterising icy grains that are originate directly from the ocean, which is an important step until lander missions, for instance such as
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universities and industries, stable and efficient electrocatalysts based on abundant materials for urea synthesis. This innovative synthesis route is a strong candidate for circular N use and decentralized
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to investigate how cartilage microtissue growth dynamics, matrix composition, and (anisotropic) matrix architecture are influenced by the mechanical and geometric properties of their environment
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thermodynamic, structural, and transport properties are essential for the modelling and design of water electrolysers. These properties strongly depend on T, p, and composition. For model development and
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across relevant temperature, composition, and redox conditions, and translating these insights into predictive models for industrial application. You will design and conduct high-temperature equilibration
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feedstocks, carbon becomes a critical raw material for everyday materials (e.g., plastics, asphalt, composites, batteries). While renewable carbon can come from biogenic waste, low-grade biowaste is often wet
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Job description As the Netherlands phases out fossil feedstocks, carbon becomes a critical raw material for everyday materials (e.g., plastics, asphalt, composites, batteries). While renewable