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processes and help collectives envision and develop the organisational and digital tools required for broader participation. You will be part of a cohort of 11 PhD candidates from multiple Dutch universities
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-develop practical approaches through workshops and working sessions. You will embed yourself in ongoing change processes and help collectives envision and develop the organisational and digital tools
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interplay between physical particle deposition, chemical precipitation, and deformation-induced particle remobilisation remains poorly understood. These processes vary fundamentally across rock types – from
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, and deformation-induced particle remobilisation remains poorly understood. These processes vary fundamentally across rock types – from porous sedimentary to fractured crystalline systems, with volcanic
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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
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and professional development. For more information, please visit Working at Utrecht University . Selection process As Utrecht University, we want to be a home for everyone. We value staff with diverse
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knowledge is established, the processes of transport and burial during turbidity current events remain poorly understood. Previous experimental research into turbidity currents has been fundamental in
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sea ice variability; processing satellite datasets to monitor sea ice and surface melt; investigating how turbulent and radiative heat fluxes from open water and polynyas drive snowfall and melt events
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them vulnerable to far-field human interference. While this general knowledge is established, the processes of transport and burial during turbidity current events remain poorly understood. Previous
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the Board for Conferral of Doctoral Degrees before the candidate can be accepted in the PhD programme. Furthermore, you should have: Experience in processing geological samples A theoretical background in