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Field
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impedance sensing (ECIS) and transepithelial electrical resistance (TEER) measurements to assess the integrity and functionality of the epithelial barrier within microfluidic devices; Developing, implementing
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chemistry, microfluidic reactions, reaction scale-up, calorimetry, microwave reactions; AI/ML; design of experiments, in-line analytics. Ability to communicate effectively and on a timely basis with the
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pluripotent stem cells 3. Microscopy – immunofluorescence, confocal, wide-field, live cell 4. Microfluidics – bioengineering, device preparation, input/output bioanalysis 5. Genome editing – guide RNA
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drug particles, made using multiphase microfluidic methods. This work will be conducted in close collaboration with a pharmaceutical company sponsor. He/she will be reporting to Prof. Patrick S. Doyle
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crystalline or amorphous drug particles, made using microfluidic methods. This work will be conducted in close collaboration with a consortium of pharmaceutical companies (GSK, Merck and Pfizer). He/she will be
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Sciences | Microbiology Administration This position researches theoretical and experimental methods for development and use of microfluidic and nanofluidic approaches towards understanding which viruses in
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of proteins in health and disease. Your Role As a postdoc on this project, will contribute to the design, fabrication, and application of microfluidic and nanofluidic devices for single-cell, single-molecule
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• Design, prototype, and test microfluidic devices, electrochemical sensors, and portable diagnostic systems. • Support fabrication processes including micro/nanofabrication, surface
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of molecular biology and engineering methods to understand how metabolic spatial structure affects cancer progression, using specialized microfluidic chambers. The postdoc will analyze and present data
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 9 days ago
skilled at mammalian cell culture; microfluidic device fabrication and implementation; designing experimental protocols; identifying the necessary resources; acquiring, processing, and interpreting data