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understanding with applied research and close collaboration with industrial partners, we develop solutions that contribute directly to the optimization of industrial-scale electrolyzers. More information about
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meta-analyses can be optimally applied within the field of otolaryngology. In doing so, you will not only contribute to new insights for patients with tinnitus and hearing loss, but also to the further
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may involve topics such as anomaly detection during process execution (e.g., identifying concept drift), simulation of highly variable processes, optimization of variable workflows, and many related
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of Sanquin is home to 250 researchers, including over 60 PhD students and 30 postdocs. Research at Sanquin is organized in four strategic themes: Anemia, Bleeding & Hemostasis, Immunity & Inflammation, and
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PhD Position Simulating the Airspace of the Future: Fleet & Network Optimization for Future Aircraft
current and future aircraft models + Evaluating how these differences affect fleet assignment and network planning + Optimizing airline operations (e.g., fleet composition, scheduling, routing) based on new
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of the hamstrings during push-off can enhance gait after stroke. This position builds on those findings: you will adapt an existing FES shorts system for stroke rehabilitation, test and optimize it with patients
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PhD Position Simulating the Airspace of the Future: Fleet & Network Optimization for Future Aircraft
: Model development: + Characterizing the key performance differences between current and future aircraft models + Evaluating how these differences affect fleet assignment and network planning + Optimizing
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from clinical specimens; Develop, optimize, and apply DIA- and PRM-based proteomics methods; Perform quantitative data analysis, normalization, quality control, and statistical interpretation
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elements should be used to generate the required radiation? how do we generate as many ‘usable’ photons from the plasma as possible? What are the optimal laser and target properties? Project goal The goal
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The postdoc project aims at fabricating graphene edge sensors for single molecule detection and biopolymer sequencing. The device architecture will be scalable and tunable by combining unique