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, an ambitious ERC-funded research program that aims to develop and evaluate personalized donor health protection strategies for blood and plasma donors. As demand for plasma-derived medicinal products continues
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a state-of-the-art 4” processing line for III-V semiconductors, including an ASML DUV scanner, AIXTRON MOCVD G10 epitaxy reactor, electron beam lithography, diverse plasma etching tools, wafer-level
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liquid biomarkers for leukodystrophies by integrating multi-omics data from patient plasma and iPSC-derived human disease models. You will investigate disease-related molecular signatures using
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Vacancies PhD position on indirect combustion noise; Fluid Mechanics; CFD; Aeroacoustics Key takeaways Simulation-based development of indirect combustion-noise theory To remedy ineluctable
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plasma and iPSC-derived human disease models. You will investigate disease-related molecular signatures using metabolomics, lipidomics, proteomics and genomics, and combine these data using statistical and
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and/or surgery is available; the majority of patients are treated by administration of plasma supplemented with platelet and red blood cell concentrates. Also, current treatment options for patients
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on state-of-the-art mass spectrometry-based proteomics of plasma, platelets, and endothelial cells combined with advanced cellular models. We offer a diverse and multidisciplinary research environment
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of plasma supplemented with platelet and red blood cell concentrates. Also, current treatment options for patients with rare bleeding disorders are limited. In the context of the UNIBLEED program, we aim
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of the art in optical transceivers Understanding modeling of the optical modulators and simulation platform for simulation optical transceivers Develop high-bandwidth TX driver architectures for advanced
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measurable. This can be approached through empirical analysis of large-scale simulations, through new (semi-analytical) models that predict the impact of introducing these vehicle types, or a combination of