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resilience; identify microbial taxa and interactions associated with contrasting disease outcomes; isolate and experimentally validate selected candidate microbes; design follow-up experiments to understand
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, organoid and omics approaches in an ERC-funded project on the microbiome–immune interaction in infancy. Help uncover how the infant gut microbiome shapes immune development Do you want to investigate how
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of hydrogen embrittlement in circular steels aligns perfectly with the team's broader interest in metal–impurity interactions, interfacial phenomena and its commitment to computation-guided design for a
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will design and validate a cost-effective, synchronised multi-node sensing system for simultaneous time-domain measurements of voltages, currents, electric fields and magnetic fields, supported by
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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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of the key challenges facing the hydrogen economy: understanding how hydrogen interacts with the complex microstructures of circular steels and causes degradation and failure. This position is part of
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Vacancies PhD position in Mapping the Modern Electromagnetic Environment: Identifying Stray Currents in Complex, Interaction-Driven Systems Key takeaways The rapid electrification and digitalisation
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Offer Description Deploy detailed models of coupled ocean / sea ice processes, probe their turbulent interactions, compare with observations, and design parameterizations for global climate models. Job
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workshops and co-design activities with neurodiverse youth, teachers, and other stakeholders. Applying feminist HCI methods, speculative design, and embodied interaction in the context of loneliness in school
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pathogen invasion success and plant resilience; identify microbial taxa and interactions associated with contrasting disease outcomes; isolate and experimentally validate selected candidate microbes; design