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Field
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. Louis can be found at https://postdoc.wustl.edu/prospective-postdocs-2/ . Trains under the supervision of a faculty mentor including (but not limited to): Leverage cellular immunology techniques (flow
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Evolution Under Ion Irradiation using transmission electron microscopy. In situ transmission electron microscopy (TEM) is a powerful characterization technique that can be used to provide a comprehensive
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, on a competitive basis, with funds available under the project: We Can Be Heroes “Exploring Micronuclei and Endomembranes: Cellular Architecture in Breast Cancer” whose responsible person is Nuria
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for therapeutic use including but not limited to (epi)genome editing and protein degradation. The successful candidate is expected to develop a dynamic, externally funded research program; lead a vibrant group with
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)genome editing and protein degradation. The successful candidate is expected to develop a dynamic, externally funded research program; lead a vibrant group with a commitment to mentoring, career
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Committee. You can read about the recruitment process at https://employment.ku.dk/faculty/recruitment-process/ .
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and organoid platforms, genome engineering technologies, advanced microscopy, spectral flow cytometry, single-cell and spatial genomics, proteomics and biomarker laboratories, and high-performance
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position within in the SoftMatter group at the University of Münster. The goal is to characterize and understand stimuli-responsive emulsions using atomic force microscopy. The project will build on our
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spcialized in electrocatalysis. The researcher will investigate cathodic embrittlement, a poorly understood phenomenon that can fragment metals (e.g., Pt, Au, Ni) in reducing environments, compromising
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microscopy (STM) and non-contact atomic force microscopy (AFM) at low and variable temperatures surface preparation and molecular deposition in ultra-high vacuum (UHV) conditions on-surface synthesis and