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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 23 days ago
, including Western blot, quantitative PCR, and confocal microscopy. Preferred Qualifications, Competencies, and Experience The preferred candidate has experience in one or more of the following areas
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electron microscopy or x-ray tomography Analyze experimental data to investigate mechanisms of irradiation- and mechanically- induced damage Present and report research results and publish scientific results
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to the regulation of complex behaviours. This will involve a range of techniques including high resolution confocal microscopy to determine receptor localisation, behavioural analysis of C. elegans and computational
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applicant will be able to present information on research progress and outcomes, communicate complex information, orally, in writing and electronically and prepare proposals and applications to external
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postdoctoral researcher, you will use various techniques to investigate fiber-reinforced structures in nature (i.e., fungi), including additive manufacturing, computer simulations, materials testing, and
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tweezers, super-resolution microscopy and cryo-electron microscopy. Start date: 1st September 2025 Duration: 1 year (in the first instance, with
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comprise different characterization techniques (e.g. solid-state NMR, low-temperature physisorption of nitrogen, dynamic light scattering, and electron microscopy techniques) to characterize the obtained
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-resolution microscopy established in the host lab and spearhead an interdisciplinary, collaborative project. Expected start date and duration of employment This is a one–year position from 1 October 2025
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liquid phases have been predicted. It can be realized using atoms with two valence electrons, such as ytterbium or strontium. To investigate such SU(N) physics, our group has developed a quantum-gas
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polyketide and nonribosomal peptide biosynthesis. The selected individual will use biochemical and biophysical techniques, including single-particle cryogenic electron microscopy (cryo-EM), to understand