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– BEST-CROP project ). One component of the project focuses on supplying barley straws with optimised composition and/or microstructure for various applications, including the construction sector
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researcher to join our team and contribute to a project, dedicated to the study of elastic wave transport in microstructured silicon membranes. The researcher will be primarily responsible for the design and
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applications. The project aims to contribute to this global effort by solving essential challenges faced by the oil and gas industry, where the knowledge of correlation between microstructural and mechanical
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, energy, transportation, and construction. The laboratory focuses on describing the relationships between processing, microstructure, and properties, using both experimental and modeling/simulation
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faced by the oil and gas industry, where the knowledge of correlation between microstructural and mechanical properties of polymer composites after aging is very limited. The project will be organized
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| Materials Science and Engineering Designs, develops, and conducts scientific research studies in the areas of ultrasonically assisted manufacturing processes, microstructure characterization, and
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(Generation of unique databases on well-identified frames), validated models in operational conditions (New models based on real in-situ observations and mechanism). Microstructure manipulation for tailoring
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on well-identified frames), validated models in operational conditions (New models based on real in-situ observations and mechanism). Microstructure manipulation for tailoring macroscopic response: Toughing
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obtained no more than 2 years before the deadline for application. hands-on experience in combustion or burn-resistant testing demonstrated experience with conducting microstructural characterization
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, characterization of microstructure and properties (MULTIPHASE)”, agreement no. UMO-2023/51/D/ST11/00440, financed by the National Science Centre. The candidate will be responsible for: - synthesis and