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to drastically reduce Norway’s offshore emissions. To support the goals of CSSR, this project aims to develop, analyze and implement new nonlinear iterative solvers, with the goal of exploiting models of various
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properties, and how these are controlled by geological processes, will be essential when developing theoretical rock physics models for shales. At macroscale, these models will be important for evaluating seal
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mountain catchments. The goal is to understand long-term changes in runoff regimes and flood hazards by combining climate-driven (glacier-)hydrological modelling with reconstructions of past flood events
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floods—in mountain catchments. The goal is to understand long-term changes in runoff regimes and flood hazards by combining climate-driven (glacier-)hydrological modelling with reconstructions of past
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of agroecological farming in EuRope ), funded by the Research Council of Norway. About the project/work tasks: As a postdoc within a large international and interdisciplinary team you will use spatial modelling
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snow in local and regional climate models is poorly constrained, leading to uncertainties in estimating mass loss through sublimation and snow redistribution. The PhD candidate will develop and execute
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of blowing snow in driving accumulation and sublimation in mountainous conditions. The simulation of blowing snow in local and regional climate models is poorly constrained, leading to uncertainties in
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networks”, meeting and exchanging biomolecules in a cellular society. The reasons for this behaviour remain poorly understood, and outside of some model species, this behaviour itself is poorly characterised
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green transition. About the project/work tasks: The overall goal of this PhD project is to develop methodologies for real-time modeling and inversion of geophysical well logs, with a particular focus on
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. The postdoctoral position involves tasks such as designing, manufacturing and testing the laser fusion targets. The work will include simulation, experimental work, characterization and data analysis. The modelling