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solar (thermal and PV) and geothermal energy with soil-based thermal storage to enable reliable 24/7 operation of adsorption desalination. We also develop low-cost sorption composites from locally
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compositional reasoning. The core research thrusts of this position are: • Structured, neurosymbolic models: The research will investigate model architectures that are not learned from a blank slate. Instead
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team, you will : Perform electrochemical, physical and chemical properties measurements of molten salts to understand the impact of salt composition on property values. Develop and perform laboratory
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of PM chemical composition and pollutant gases. The collected data will be used to develop source apportionment models for quantifying the contribution of various sources to ambient levels of PM, e.g
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setup will allow to design calcium phosphate materials with controlled architecture, composition, and to assess their rate of mineralization in vitro and in vivo. The level of extracellular calcium and
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extensive testing with neuroimaging, biomarker measurements and neuropsychological testing. Our group applies sophisticated statistical analyses to these unique and state-of-the-art datasets to model
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. This project will be financed by an Impulscience grant, which runs until June 2029. The postdoctoral fellow will be using Drosophila as a model organism. They will be managing Drosophila stocks and setting up
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composition and atomistic modeling of materials. The main activities will include: - formulating new descriptors of critical temperature (Tc) incorporating electronic fluctuation effects, evaluated by
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aggressions and to establish quality criteria (thickness, structure, composition). Initial eco-design approaches will also be explored. Project Organization Two engineers/postdoctoral researchers will be
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robust modeling techniques will be used to downselect suitable HEA compositions that are resistant to beam-induced radiation and thermal shock damage. The selection of a suitable HEA for particle