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Field
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Full time fixed term 2-year position Work within a major industry‑backed, multidisciplinary research partnership developing cutting‑edge metal composite coatings for extreme industrial environments
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Technology. Additional Actions : Composite Materials, Finite Element Modelling (FEM), Impact Engineering, High-Rate Experimental Mechanics, AI Assisted Surrogate Modelling
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Sustainable composite STructures for supporting the decision-making and resilience of the society Of the future”. This project develops transdisciplinary models that integrate traditional finite-element physico
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of the permeability and selectivity of hybrid and composite polymer/MOF membranes for oxygen and carbon dioxide. - Hemocompatible coating of membranes - Modelling & Optimization of gas permeation of hybrid and
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part of the Physical Science and Engineering Division. The Composites Lab started at KAUST in 2009 and is an integrated environment for composite science, combining modeling and experimental expertise in
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Science and Engineering Division. The Composites Lab started at KAUST in 2009 and is an integrated environment for composite science, combining modeling and experimental expertise in a single working
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the particle size of the oxides produced. In addition, depending on the conditions encountered in the combustion chamber (pressure, temperature, gas composition), combustion products can be nanometric and/or
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as possible thereafter. The Role Drawing on over a decade of formulation data, you will develop machine learning models that link chemical composition and processing parameters to the physical and
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started at KAUST in 2009 and is an integrated environment for composite science, combining modeling and experimental expertise in a single working environment. OUR MISSION: Support Energy transition by
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oxides present on the surface of the metal powders. - increase ductility to tungsten by the addition of a face-centered cubic (FCC) AHE phase. This is an exploratory study of a metal composite with a