32 algorithm-development-"Multiple"-"Simons-Foundation"-"Prof"-"UCL" positions at University of Basel
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recruitments (summer and winter) and work closely with the Biozentrum group leaders to maintain and further develop the high-quality standards of our PhD program. You will independently organize and oversee
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from this research inform the development of new diagnostics, treatments, and vaccines against malaria, tuberculosis, schistosomiasis, Chagas and other neglected tropical diseases. Are you excited by
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experiments. About the Project Our group has pioneered the development of the Nanopore Electro-Osmotic Trap (NEOtrap), a groundbreaking technique that enables label-free trapping and sensing of single proteins
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this limitation, our group has developed DyeCycling/FRET, where the dyes are continuously replaced. Building on our published and unpublished work, the successful candidate will advance nanophotonic and fluorogenic
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dedicated to advancing antibiotic research through close collaboration among biologists, clinicians, and engineers. Its overarching goal is to rejuvenate antibiotic discovery by developing laboratory models
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healthy behavior or rehabilitation. Through your research, you will establish an empirical foundation for the development of effective prevention and intervention strategies to strengthen individual and
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doctoral program within the Graduate School of Medical & Health Sciences (GSMHS), the DBE has grown successfully within a short period of time. Your position Developing a proposal for the structure and
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trapping and analysis using state-of-the-art nanopore experiments. About the Project Our group has pioneered the development of the Nanopore Electro-Osmotic Trap (NEOtrap), a groundbreaking technique that
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-corruption, financial crime, development or governance issues. Key responsibilities Online media and community engagement Maintain and enhance the Basel Institute's presence on key online channels, including
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-bleaching of the fluorescent dyes involved, which ends the experiment prematurely, rendering many biological questions inaccessible. To bypass this limitation, our group has developed DyeCycling/FRET, where