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Field
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with a research component, or those with strong research skills, including qualitative research, and knowledge of the social environment of healthcare. In either case, the PhD will benefit from the high
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-suited. By the end of the PhD, the candidate will have gained strong skills in experimental mechanics, test management, materials characterization, and numerical modeling, particularly finite element
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processing, and chemical manufacturing, contaminants like PFAS, hydrocarbons, and metal ions accumulate in the felt structure, making traditional regeneration or disposal techniques both technically and
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wall elements of aerostructures are essentially made from high-strength foils in Titanium or Nickel alloys for reducing weight and improving engine fuel consumption. Limited studies exist on hot forming
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for meeting strength and noise certification requirements in the aerospace industry. Certain thin wall elements of aerostructures are essentially made from high-strength foils in Titanium or Nickel alloys
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of mechanical and robotic systems •Ability to use finite element modelling and to simulate complex mechatronics •Ability to implement control and kinematics with hardware-in-the–loop •Background with relevant
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combination of experimental testing and computational modelling (Finite Element Analysis) to create solutions that accelerate the safe deployment of hydrogen aviation technologies. This position is part of
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integrating biological (transcriptome, proteome, physiology) and geochemical (trace element and isotopic ratios) data collected by the rest of the project team. Finally, we will explore the application
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the properties of post-consumer recyclates. The project will apply cutting-edge data science techniques, including principal component analysis and machine learning, to handle multivariate datasets and enhance
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and training activities that will contribute to developing professional networks. Understanding the growth of surface oxide films on/in multi-component metallic substrates in electrolyte media is of