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focused on accelerating therapy development for leukodystrophies: rare genetic disorders affecting the brain's white matter. The network aims to strengthen the full translational pathway from disease
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How can de novo proteins be designed for enabling continuous biomolecular sensing? That’s your question! Information Biosensing technologies are being developed for the continuous monitoring
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Are you intrigued by the potential of light-driven chemistry to create sustainable, bio-based polymers? Are you passionate about developing innovative recycling technologies that support a more
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Develop advanced models to understand and predict piping and internal erosion in dikes. As a PhD researcher at TU Delft, you will connect fundamental fluid–soil interaction physics with
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project developing next-generation circular steels that can safely operate in hydrogen environments. By combining advanced experiments with multiscale modelling, CIRHY enables reliable, sustainable steels
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Doctoral Network focused on accelerating therapy development for leukodystrophies: rare genetic disorders affecting the brain's white matter. The network aims to strengthen the full translational pathway
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developments to real-world hospitality contexts. Examples include VR-based classes, immersive learning environments, AI applications, data-driven decision-making tools, and other innovative formats that prepare
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Are you passionate about human movement and developing clinical tools for understanding human movement disorders? Job description Challenge: Over a quarter of a million people in the
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on accelerating therapy development for leukodystrophies: rare genetic disorders affecting the brain's white matter. The network aims to strengthen the full translational pathway, from understanding disease
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and support well-founded decision-making within the programme. You design and organise engaging workshops and learning experiences for students, connecting digital and technological developments to real