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structures based on triple helical collagen structures, that may serve as collagenase inhibitor that can also be used in mechanistic studies Acquisition of common methods of molecular biology (e.g. cloning
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leading team, access world-class research facilities, publish in top journals, and develop expertise in soil and climate change science, fieldwork, laboratory methods, and environmental modelling.
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are working together on mostly experimental topics in small subgroups. Teamwork is a key factor to our group’s success. Together we assembled a unique skill set and knowledge base in quantum information
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spheroids grown in perfusable bioreactors, as well as in vivo studies using a murine colorectal carcinoma model. By enabling the examination of the TME within a single scan session, this new method aims
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PhD student (m/f/d) in the field of chemistry, chemical engineering, materials science or comparable
polyoxometalates Using suitable characterization methods to characterize the synthesized materials Using machine learning tools to tune the synthesis parameters in a feedback loop and enhance the properties
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immune cells, platelets and plasmatic factors in the context of cardiovascular and infectious diseases. You will use a broad range of in vitro and in vivo methods to dissect the interplay between
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materials design with advanced structural, spectroscopic, and electrochemical characterization methods to unravel how ions, charges, and molecular interactions govern doping efficiency and stability. By
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efficiency, developing knowledge, methods, and transferable software for the simulation and comprehensive sustainability assessment of socio-economic systems. Its purpose is to foster sustainable eco
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mitigate hallucinations in video-based LVLMs for autonomous driving. Objectives Design, develop, and evaluate novel method(s) to detect and localize hallucinations in LVLM outputs for autonomous driving
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The Computational Protein Engineering (CPE) group at The Novo Nordisk Foundation Centre for Biosustainability (DTU Biosustain) is developing novel methods to engineer proteins more effectively using