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Field
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and focuses on cellular crosstalk in the regulation of liver function in health and disease. For this we apply single cell- and spatially resolved transcriptomics and bioimaging to study human liver
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based on high-resolution (~5 by 5 kilometer spatial resolution) global climate simulations for current and future climate from the NextGEMS project . These simulations are novel as they (partly) resolve
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. Your job In this PhD position, you will conduct idealised experiments with an atmospheric model (OpenIFS), using concepts from the mathematical field of periodically forced dynamical systems. You will
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to include shipping pressures and impacts in marine environmental management and spatial planning. Research environment Our research aims at supporting sustainable development of the maritime shipping sector
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actors involved in managing public space? How can they adapt to dynamic societal needs and increasing spatial interdependencies? What institutional models promote more efficient, equitable and resilient
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. You enjoy combining experimental laboratory work with theoretical analysis and modelling. While your main focus will be the research project and your own development as a researcher, the position also
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framework exploiting the use of physical and geometrical conservation laws in a variety of spatial discretisation schemes (i.e. Finite Element, Finite Volume, Meshless). The resulting conservation-type
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. Using adipose tissue biopsies from individuals across a spectrum of metabolic disease severity, the project will leverage single-cell and spatial transcriptomics to map cellular heterogeneity and tissue
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, however, these may not always be able to provide the spatial and/or temporal coverage that is required. In such cases, information from ground measurements can be combined with information from other
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of future urban living environments. This broadened futures approach will expand evidence-based spatial modelling through the creation of experiences that connect possible alternative futures to the present