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of these shifts. Rising temperatures and increasing freshwater and terrestrial fluxes are transforming the physical, chemical, and biological makeup of these marine environments — with significant implications
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competences on electrochemistry, atomic scale and multi-physics modelling, autonomous materials discovery, materials processing, and structural analyses. We also focus on educating engineering students at all
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a formal qualification, you must hold a PhD degree (or equivalent). Special consideration will be given to candidates with: A background in theoretical photonics or condensed matter physics First-rate
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institutional context, job roles and available resources. You will be employed at DTU Management and be associated with the section for Organisation Science and Technology. You will work physically from CAISA
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. Evaluate and understand how experimental conditions effect both the chemical, physical, and mechanical properties of the prepared films (e.g., using scanning electron and atomic force microscopy, infrared
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process of clays on micro- and macro-scale properties of the cements. As a part of this project, your responsibilities will encompass the following tasks: Processing and characterization of aluminosilicates
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in basic research and centres on mathematical models of the physical and virtual world, as a basis for the analysis, design, and implementation of complex systems. We focus on ensuring that our
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] that process information in temporal rather than spatial modes to reduce their footprint. The project involves a collaboration between DTU Electro (Senior Researcher Mikkel Heuck) and Harvard University (Dr
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information may be obtained from Professor Charlotte Scheutz, Section of Waste, Climate and Monitoring, chas@dtu.dk and Associate Professor Xenia Trier, Section for Environmental Chemistry and Physics, xt