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Functional composites based on MULTIcomponent Portland cements modified with carbon-based nanomaterials: composition design, characterization of microstructure and properties (MULTIPHASE) number 2023/51/D/ST11
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SUSMAT-RC - Postdoc Position in Computer-Aided Design and Discovery of Sustainable Polymer Materials
activities in processing of sustainable materials, (bio)polymer composites and their applications. Participate in the supervision of undergraduate, master’s, and doctoral students. Criteria of the candidate
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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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and setup: Within the project, we follow a multidisciplinary collaborative approach for which we are have recruited 3 PhD students focusing on material science, advanced in vivo imaging and computation
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research clusters including Energy Transition, Surface Technology and Metallurgy, Polymers and Composites, and Sustainable Materials. With some 100 researchers and PhD students and several national and
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will work closely with a PhD student investigating how peat composition and quality, microbial strategies and electron acceptor availability interact to determine decomposition rates. You will also work
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of PhD-level scientists, graduate, and undergraduate students working at the intersection of water treatment, materials science, and civil engineering. Applicants should have experience in synthesizing
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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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build the sustainable companies and societies of the future. In line with the green transition and the striving for a sustainable supply of critical raw materials, our research in mineral processing
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that generate accurate anatomical volumetric images and quantitative biomarkers, for the characterization of tissue composition or microstructure and blood flow quantification. We recently unlocked 2D ultrasound