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compression and shear) are exerted on cells and these in turn are relayed as biochemical signaling events through various molecular machines. These include, adhesions, which promote anchorage-dependent survival
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. Collecting, analysing and identifying emerging contaminants (macro and microplastics) in different matrices (water, sediments, organisms). Maintaining aquariums for marine organisms and conducting experiments
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, and production systems. Project Description This PhD position is part of the research project “Compressed Hydrogen in Marine Propulsion Systems: Temperature Evolution and Structural Integrity of Onboard
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PhD fellowship at the Copenhagen Center for Glycocalyx Research at the Department of Cellular and Mo
bioinformatics tools, validated gene editing protocols, glycoengineered cell libraries, 3D organ and tissue models, and design matrices for the recombinant production of protein-therapeutics. CGR also hosts
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supporting documents that the candidate considers relevant to the assessment of his/her merit (if applicable). 18.4. Documents can be integrated into folders with a compressed format (zip, rar, 7z), but it is
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manufactured at Uppsala University) will be the focus of this PhD project. The objectives of this work are to optimize an experimental setup for simultaneous tension/compression testing and localized corrosion
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must not exceed 25 MB altogether. These can be compressed in .zip format. 8. Evaluation criteria: The admitted applications will be evaluated by assessing the candidates' academic or professional
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of biodegra
are to optimize an experimental setup for simultaneous tension/compression testing and localized corrosion measurements, including monitoring of local pH and dissolved hydrogen and oxygen concentrations
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DMA and compression tests) and variations in glass transition temperature (via DSC and DMA) during repeated hydrogen cycling. As fatigue and mechanical failure in composites are mainly attributed
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systems, primarily electrical vapor-compression units, places significant strain on electricity grids, particularly regarding peak demand. By 2040, indoor space cooling is expected to become the second