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Field
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fracture processes at micro and meso scales influence the structural response at an engineering scale, and to use this insight to support the design of damage tolerant composite structures. You will be
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position: Multi-scale Modelling and Experimental Assessment of Volumetrically Prestressed Concrete Your tasks The tasks of the PhD at ETHZ and Empa within the framework of SURPASS are as follows: Volumetric
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. Empa is a research institution of the ETH Domain. Smart and Sustainable Resilient Performance-based Cementitious Composites for Adaptive Strengthening and Repair System (SURPASS) is an EU Horizon
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error estimate, and a full record of how it was computed. Build and scale MLIP/MD/DFT workflows (e.g., atomate2, MACE/CHGNet/UMA-class potentials) to hundreds of compositions on HPC. Validate predictions
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behaviour, and whether a proposed composition is even admissible. The central object is not a digital twin of the application but its formal architectural skeleton: gear contracts (GearSpec), a typed
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moderate extremes in soil temperature and moisture while simultaneously altering carbon allocation belowground. These changes can influence microbial activity, community composition and carbon cycling
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of community composition, active functional pathways, antimicrobial resistance genes, secondary-metabolite potential, and phage–host interactions. Constructs and applies genome-scale metabolic models (KBase
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quantitative imaging, we work towards a multi-scale understanding of how molecular composition and subcellular organisation shape cell function, plasticity and disease. A central biology focus of the lab is
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Requisition Id 16915 Overview: We are seeking a highly motivated postdoctoral researcher with a strong background in composite material development, technology development from lab to large scale
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services across multiple companies and authorities, thus supporting large virtual enterprises necessary for the development and operation of large-scale enterprises, such as critical infrastructures