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dedicated PhD candidate on advanced material modelling in the textile domain. In this project you will dive deep into a cutting-edge research area, exploring the complexities of advanced textile material
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description We are looking for a motivated PhD student for the UGent funded project WOODCHAR. The aim of this project is to study woodland dynamics in NW Europe during the last 2500 years through the analysis
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application. In this PhD, the focus is to rationally develop and process highly crystalline, X-ray sensitive lead-free perovskite material layers through micromanaging their electronic structure by composition
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Sciences, Pharmaceutical Sciences or equivalent Occupancy rate 100% Vacancy type Research staff Job description The current PhD position is available for a highly motivated candidate to work on an EU-funded
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on an amorphous starting surface . During this PhD research, you will embark on a journey to reveal how the geometry, chemical composition and critical (physical) dimensions of the design affect where TMD crystals
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postdoctoral scholarships to Chinese researchers. We welcome all Chinese students who visit our University in order to do a PhD, a jointly-supervised PhD (including double PhD degree), Post-doctoral research, as
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Infrastructure? No Offer Description As Metrology Engineer, you will perform daily ToF-SIMS analyses and will develop new approaches to address metrology challenges What you will do The composition analysis team
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: PhD in Life Sciences ABOUT GHENT UNIVERSITY Ghent University is a world of its own. Employing more than 8,000 people, it is actively involved in education and research, management and administration, as
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concerns the analysis and understanding of the present composition of the Universe and its various constituting objects. Nucleosynthesis models aim to explain the origin of the different nuclei observed in
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stability, and hinder their large-scale device application. In this PhD, the focus is to rationally develop and process highly crystalline, X-ray sensitive lead-free perovskite materials through micromanaging