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for many high-tech companies. Job description This role involves the development of cutting-edge chemical sensors based on metal-organic frameworks (MOFs) that leverage kinetic selectivity to differentiate
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of the manufactured welds Analyzing by advanced techniques the metallurgy of the heat effected zone to unravel microstructural secrets in these very special dissimilar material joints Interpreting all the obtained
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pathway. Additionally, finite element theoretical modelling and density functional theory calculations will be used to further increase our understanding of the photo-reduction mechanism. Correlating
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the following elements: Abstract (max 250 words) The abstract of a PhD research plan should serve as a concise summary of the key elements of your proposed research. It should provide an overview
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live in. Your role The PhD project will focus on Energy Sector Coupling, a key component of the energy transition. In collaboration with an industrial partner - a major energy player in Luxembourg - you
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factors that accelerate material deterioration (e.g., hydrogen embrittlement, corrosion). The primary tasks include developing advanced multiphysics frameworks (finite element/phase-field methods
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multidisciplinary team of students and postdocs. Interested? Check out our laboratory and publications on www.raeslab.org and/or https://scholar.google.com/cit... How to apply? Interested candidates should apply
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as well as guidance from a multidisciplinary team of students and postdocs. Interested? Check out our laboratory and publications on www.raeslab.org and/or https://scholar.google.com/cit... How
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multidisciplinary team of students and postdocs. Interested? Check out our laboratory and publications on www.raeslab.org and/or https://scholar.google.com/cit... How to apply?Interested candidates should apply
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of monitoring ultra-high performance concrete (UHPC) elements, specifically focusing on service loading, degradation, and self-healing. Despite its exceptional properties, UHPC faces challenges such as shrinkage