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: Confocal microscopy of point defects and trapped charges Thermochronometry and rock surface dating You will be part of the dynamic and interdisciplinary LUMIN team, which includes engineers, scientists
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: bacteriology, fluorescence microscopy, electron microscopy, antibiotic assays, biochemical purifications, biochemical assays such as binding assays and protein gel electrophoresis, as well as analytical methods
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to study this question. Candidates should have a good publication record and Ph.D. in neuroscience. Experience with neuroanatomy, advanced microscopy, mouse behavior and electrophysiology are desired. Other
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manuscript within the lifetime of the appointment. Advanced microscopy, cutting-edge biophysical techniques and genetically engineered mouse models will be used. The labs are well-established and located in
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. Investigate vascular dysfunction and neuroinflammation in three-dimensional cellular models, Utilize cutting-edge techniques including confocal microscopy, physiological and shear flow, and artificial
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focused on advanced tissue imaging for diagnostic and intraoperative applications. The successful candidate will work on federally funded projects aimed at developing and applying novel microscopy platforms
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assemblies (microscopies, spectroscopies, DLS, etc.) - Static light scattering resolved in angle and wavelength on an available set-up - Comparison of experimental results with numerical simulations
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avec les partenaires, le suivi de la caractérisation des particules synthétisées, par différentes méthodes dont la diffraction des Rayons X, la spectroscopie IR, la microscopie électronique par exemple
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strongly interdisciplinary. Specifically, our star technique is scanning electrochemical cell microscopy (SECCM) , a powerful electrochemical imaging technique for interrogating electrochemical processes
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confocal microscopy and in vitro cell culture is desirable. About the School/Department/Institute/Project Located at the Charterhouse Square Campus, the Centre for Microvascular Research is an