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develop roots preferentially upslope to provide anchorage against horizontal soil sliding. Greater understanding of how root system architecture and geometry provide resistance to different combinations
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over different time horizons and/or depending on the level of warming. « Influence of snow cover and its melting dynamics on the triggering mechanisms and prediction of landslides Where to apply Website
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universal and display limited applicability. This project aims to experimentally identify general thermal transport mechanisms emerging at the nanoscale across different materials, from amorphous
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Luleå University of Technology is in strong growth with world-leading competence in several research areas. We shape the future through innovative education and ground-breaking research results, and
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PHD DEVELOPMENT AND EXPERIMENTAL VALIDATION OF UNDERGROUND SAND-BASED THERMAL ENERGY STORAGE SYSTEMS
thermo-hydraulic-(mechanical) models and perform system-level simulations to analyse heat and moisture transport within the of the SMTES system and assess its performance under different boundary
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to account for the presence of contaminations through either solid solution elements, precipitates or second-phase particles. Validation of the macroscopic thermo-mechanical properties. Section Mechanics
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of advanced polymer, ceramic, and composite systems, including high-temperature polymer matrix composites and UHTCs, for extreme thermal and mechanical environments. Formulation of high-solids ceramic
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different for more than a million years following the Chicxulub asteroid impact, the end-Cretaceous mass extinction and Deccan Trap volcanism, is not resolved. This project aims to investigate a land-ocean
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ground-breaking research results, and based on the Arctic region, we create global social benefit. Our scientific and artistic research and education are conducted in close collaboration with international
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predictor of soil carbon storage. Yet, we do not fully understand why soil microbes use soil substrates so inefficiently sometimes and seem to ‘waste’ energy. Our project will probe the mechanisms behind