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geological formations poses critical challenges for subsurface applications from geothermal energy to CO₂ and hydrogen storage. While individual clogging mechanisms have been studied extensively, the dynamic
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PhD: Unravelling Clogging Mechanisms in Porous and Fractured Rocks Faculty: Faculty of Geosciences Department: Department of Earth Sciences Hours per week: 36 to 40 Application deadline: 14
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targeting abilities, making them promising drug delivery vehicles. However, as seen with most nanoparticle platforms, endosomal escape is a limiting factor for their therapeutic impact: the key step
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the questions: Does lithological change coincide with the K/Pg boundary and what mechanisms led to the shift in lithologies? How do terrestrial and marine environments recover from the end-Cretaceous mass
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/Pg boundary and what mechanisms led to the shift in lithologies? How do terrestrial and marine environments recover from the end-Cretaceous mass extinction? The research will initially focus
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at the Bijvoet Centre for Biomolecular Research investigates the molecular mechanisms of protein aggregation in vivo, using the nematode C. elegans as a multicellular model organism. In this PhD position, you will
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method enables high-frequency strain, but the mechanism remains unknown. As a PhD, you’ll uncover how dynamic stress drives CO₂ conversion into valuable chemicals with minimal energy and waste. Ready to
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catalysts ‘move’, their activity can increase up to 30×. A new piezoelectric method enables high-frequency strain, but the mechanism remains unknown. As a PhD, you’ll uncover how dynamic stress drives CO
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is a hallmark of ageing and of many human neurodegenerative diseases. The group of Dr Tessa Sinnige at the Bijvoet Centre for Biomolecular Research investigates the molecular mechanisms of protein
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the mechanisms underlying the activation and acquisition of regulatory function in stress-induced T cells in patients with RA. Your tasks: You clone the TCR of available stress antigen-specific regulatory T cells