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applications for a PhD position in electronic-structure theory. The project focuses on the development of new theoretical frameworks for describing electronic dynamics in atoms, molecules, and materials, with
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tissue growth models, and experience with mechanical characterization of biological materials is a plus. The ability to work collaboratively in interdisciplinary teams and bridge research groups. Excellent
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of materials related to e.g. climate change, modelling and design of railway systems, multi-scale modelling of pavement materials and structures, reuse of materials, structures and parts of structures
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. Coupling material flow models with prospective life cycle assessment (LCA), market analysis, and technology deployment scenarios to evaluate future steel production pathways and circular economy strategies
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and sustainable reuse. Research themes include dynamics of structures, mechanics of materials related to e.g. climate change, modelling and design of railway systems, multi-scale modelling of pavement
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, performance and modeling of nanomaterials often for conversion, storage and more efficient use of energy. The institute provides fundamental knowledge for development of new technologies that are required
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a circular and low-carbon economy. The PhD is expected to cover: Developing dynamic material flow analysis (dMFA) models to quantify steel stocks, flows, scrap generation, and scrap quality across
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dynamics of structures, mechanics of materials related to e.g. climate change, modelling and design of railway systems, multi-scale modelling of pavement materials and structures, reuse of materials
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submarine canyons connect the continents to the deep ocean. These canyons are the conduits for transport of land-derived materials to the ocean floor in avalanche-like events called turbidity currents
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demands in transportation, the energy transition and sustainable reuse. Research themes include dynamics of structures, mechanics of materials related to e.g. climate change, modelling and design of railway