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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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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 aggregation in
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the understanding and modelling of these processes to support robust and adaptive climate policy strategies. Your job Climate change is driven in part by complex feedback mechanisms within both natural and human