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Field
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Conversion focuses on materials and device innovation for sustainable energy conversion and storage technologies. The research project focuses on the development of solid electrode composites, so-called
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sourced composite manufacturing for applications in aerospace, automotive, and marine/shipbuilding industries, as well as trending areas of international composite research in material science, mechanical
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simple experiments to test and validate the developed architectures. Combine modelling and experimental results to understand how architecture influences the mechanical performance of the composites. You
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research axis, aimed at gaining a better understanding of the molecular mechanisms involved in the regulation of the NF-κB signaling pathway induced by inflammatory cytokines, with an applied cancer research
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-property relationships governing electrical conductivity, dielectric breakdown strength, thermal transport, and mechanical performance. Characterize composite materials using advanced analytical techniques
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Performs research on metallurgical phenomena related to welding and additive manufacturing (AM) in advanced alloys and to failure mechanisms in welds and AM components of advanced alloys; applies
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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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spectrometry to study gaseous mixtures and apply such techniques in separation of hydrogen isotopes from contaminants. The postdoctoral researcher will also investigate the mechanical and thermophysical behavior
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shaping approaches (e.g., pellets, monoliths, composite beads/fibers, thin films), both with and without binders, while preserving or enhancing material performance. Perform advanced physicochemical
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carbons, fibers, graphite, nano-carbons, etc. 2. Carbons and graphite for energy storage 3. Polymer-derived fibers and composites & carbon/carbon composites 4. Unique high-temperature characterization