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. While this general knowledge is now firmly established, the processes of transport and burial during turbidity current events remain poorly understood. The DEEP-FLUX project aims to establish a new
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PhD position on Modelling of turbidity current fluxes in submarine canyons Faculty: Faculty of Geosciences Department: Department of Earth Sciences Hours per week: 36 to 40 Application deadline
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adds value and where its risks lie, is lacking. In this PhD project you will map current and future GenAI use across the full HTA lifecycle, from horizon scanning to reassessment, and translate
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democratic culture and governance – and to subsequent debates on media reform in political and policy circles. Focusing on the long 1970s, a period marked by contestation of established democratic norms and
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democratic culture and governance – and to subsequent debates on media reform in political and policy circles. Focusing on the long 1970s, a period marked by contestation of established democratic norms and
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the highest safety standards. A major risk to dike stability is Backward Erosion Piping (BEP): groundwater flow underneath a dike entrains sand particles, eroding the base of the dike. Current BEP risk
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urgent question with implications for future adaptation policies around the world. In the post WWII period, rural societies in Asian countries underwent a dramatic transformation. The introduction of new
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systematic evidence on where it adds value and where its risks lie, is lacking. In this PhD project you will map current and future GenAI use across the full HTA lifecycle, from horizon scanning
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firmly established, the processes of transport and burial during turbidity current events remain poorly understood. The DEEP-FLUX project aims to establish a new physical framework for quantifying fluxes
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results in a doctorate within this period; a working week of 36 - 40 hours and a gross monthly salary between € 3.204 and €4.051 in the case of full-time employment (salary scale P under the Collective