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systems. This experimental project will involve aspects of polymer synthesis, structural characterization by scattering techniques, and characterization of the dynamics by rheometry and dielectric
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for a research project on microscale mechanical characterization of fiber reinforced polymer composites using in-situ microscopic techniques. Much more fundamental insights and measurements at the micro
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on microscale mechanical characterization of fiber reinforced polymer composites using in-situ microscopic techniques. Much more fundamental insights and measurements at the micro-scale are necessary
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engineering, biomedical sciences, chemistry, applied physics, engineering or materials science. A solid background in biomedicine, polymer chemistry, or strong experimental skills are desirable. The candidate
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for n-type and p-type doping respectively. Second, doping using low energy phosphorus implantation will be studied, controlling the implantation depth by means of sacrificial polymer films. As a third
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aeronautical industry. These materials include advanced high strength steels, lightweight alloys, polymer composites, nanocomposites, etc. which might be prone to impact or, more generally, high speed
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biomedicine, polymer chemistry, or strong experimental skills are desirable. The candidate should have a clear interest in experimental and interdisciplinary work. The candidate should also be willing to travel