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Amsterdam gas station into a multifunctional mobility and energy hub combining fast-charging, energy storage, shared mobility, logistics, and neighbourhood services. The postdoc will develop optimization
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, this project offers opportunities for methodological research. We are investigating how IPD meta-analyses can be optimally applied within the field of otolaryngology. In doing so, you will not only contribute
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storage, shared mobility, logistics, and neighbourhood services. The postdoc will develop optimization methods for allocating scarce physical space and time slots among these competing functions across
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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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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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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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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
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of robust and reliable cell lines. As a core member of our team, you will contribute to the development, optimization, and characterization of cell lines from marine and aquatic species, working toward
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system for stroke rehabilitation, test and optimize it with patients, retrain the stimulation-control algorithm for stroke-specific gait, and evaluate usability, comfort, and fit during prolonged use. You