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research project This project focuses on developing a novel, single-cell resolved approach to functionally analyze immune cells in cerebrospinal fluid (CSF) for improved understanding, diagnosis, and
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properties; Experimentally characterize the optical, mechanical, electrical and fluid delivery properties of the fabricated fibers, as well as connectorized the fibers as interfaces; Validate the interfaces
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experiments To cooperate with project partners (researchers and industries) to identify key issues that must be solved to improve recycling of materials in the industry To communicate scientific results, orally
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projects’ goals. We expect a strong background in fluid-mineral interaction, i.e. experience with X-ray diffraction of natural materials and geochemical speciation modelling. As a formal qualification, you
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phenomena. You will be involved in designing and carrying out fracture experiments, developing theoretical framework, and analyzing failure mechanisms with the help of numerical models. These activities will
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phenomena. You will be involved in designing and carrying out fracture experiments, developing theoretical framework, and analyzing failure mechanisms with the help of numerical models. These activities will
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. The overall goal of the project is to design a novel high temperature heat pump. You will be conducting Computational Fluid Dynamic (CFD) simulations and cycle analysis, which will be instrumental
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. The overall goal of the project is to design a novel high temperature heat pump. You will be conducting Computational Fluid Dynamic (CFD) simulations and cycle analysis, which will be instrumental
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, Mechanical Engineering, Chemical Engineering, Environmental Engineering, or a related field. We seek candidates with strong expertise in thermo-fluid engineering, thermodynamic modelling, and optimization
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expertise in thermo-fluid engineering, thermodynamic modelling, and optimization. The ideal candidate will demonstrate: Proven experience in thermodynamic modelling, thermo-economic analysis, and multi