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system resilience and health disparities; designing scenario-based spatial models to investigate future risks and resilience of the health system and health disparities under polycrisis; evaluating and
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strongly relies on the interaction between wind and dune shape. Recent improvements in airflow modelling and coastal dune modelling are promising. However, getting accurate wind field predictions remains
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scale. Besides PI’s Kraal and Wolthers, the PHOSFLUX team consists of a NIOZ-based PhD student performing experiments and analyses, and a UU-based postdoctoral researcher who focuses on modelling
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Postdoc: Subsurface Freshwater Storage and Groundwater Modelling Faculty: Faculty of Geosciences Department: Department of Physical Geography Hours per week: 36 to 40 Application deadline: 8
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functional responses, and monitoring shifts in POC and biogenic silica. Laboratory studies will target the response of benthic fluxes associated with changes in overlying seawater based on pilot site mCDR
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from clinical specimens; Develop, optimize, and apply DIA- and PRM-based proteomics methods; Perform quantitative data analysis, normalization, quality control, and statistical interpretation
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layer for gene expression control and numerous other processes in the cell. In this context, individual and combinatorial modifications guide spatiotemporal recruitment of regulatory factors to specific
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of benthic fluxes associated with changes in overlying seawater based on pilot site mCDR strategy. Where to apply Website https://www.academictransfer.com/en/jobs/363430/postdoctoral-researcher-on-mari
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nature-based solutions (NBS), as part of the Horizon Europe-funded CARDIMED external link project (Climate Adaptation and Resilience Demonstrated in the Mediterranean region). Your job CARDIMED brings