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manufacturing. As steel is highly recyclable its usage helps in creating a more sustainable world. For simulations of industrial processes concerning such complex materials one must typically rely on continuum
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manufacturing. As steel is highly recyclable its usage helps in creating a more sustainable world. For simulations of industrial processes concerning such complex materials one must typically rely on continuum
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gyre (SPG) and Arctic and Antarctic sea ice cover, involving processes on smaller scales, which are often not well represented in modelling efforts focusing on the large scale tipping elements
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with researchers from climate physics, hydrology, sustainability science and complex systems dynamics and apply a range of different models. Starting from the recent AMOC tipping simulations performed
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on circular reuse of water within industrial and drinking water settings, and minimizing energy and water footprints in separation processes. Although membrane separations are mature and energy-efficient
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, the Engineering and Technology Institute Groningen (ENTEG) is a multidisciplinary hub for engineering science and technology research, driving the development of innovative, sustainable and smart processes and
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involves developing and combining innovative tools that effectively simulate language evolution de novo and in silico in order to shed light on the pressures that drive and shape language evolution in
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MSc in physics, applied mathematics, environmental sciences, computational science or a related field; excellent skills in scientific programming and numerical/statistical analysis of simulated and
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landscapes under climate stress. Your research will focus on setting up an integrated hydrological model for a selected agriculture-dominated study area to simulate key hydrological processes and water
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sand. However, the way these short-term interactions determine the long-term evolution of coastal dunes remains unclear. In this four-year PhD project, you will enhance process understanding of coastal