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structures, followed by thorough characterization of their chemical, structural, and mechanical properties. You will work on understanding and optimizing foam properties such as porosity, elasticity, and
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PhD fellowship at the Copenhagen Center for Glycocalyx Research at the Department of Cellular and Mo
structure to function and uncover fundamental mechanisms of cellular signaling and communication. Our research seeks to define disease-relevant protein and glycan assemblies and develop precision tools
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experiments, and parametric investigations. The modelling component will be based, as much as possible, on semi-analytical thermo-mechanical formulations. This is to facilitate calculation accuracy, numerical
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the redistribution of the phases present, reaction mechanisms will be investigated and the information gained will be used for optimization of the battery. The position is part of the INCEPTION Doctoral Network
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PhD Scholarships in Piezophotoacoustic Technology for Minimally Invasive Endoscopy - DTU Health Tech
characterize optical fibers with acoustic sensing properties for the recording of acoustic signals backscattered by tissues. Tailor the optical, mechanical, piezoelectric and electrical properties
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characterize optical fibers with acoustic sensing properties for the recording of acoustic signals backscattered by tissues. Tailor the optical, mechanical, piezoelectric and electrical properties
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to mechanical forces. We work with leading international groups on modeling and also conduct simulations at DTU. Our overarching goal is to understand and predict the mechanical behavior of metals during plastic