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Field
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Applications are invited for a Postdoctoral Research Assistant with expertise in high-resolution, analytical scanning transmission electron microscopy applied to next-generation semiconductors
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The goal of the project is to explore new material platforms to realise novel correlated electron ground states and multiwell energy landscapes using scanning probe microscopy techniques beyond
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chromosome segregation, including fascinating aspects of both polyploidy and aneuploidy, using a range microscopy techniques, including live-cell, expansion microscopy and electron microscopy. For an overview
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; • Electron microscopies (Transmission Electron Microscopy – TEM and Scanning Electron Microscopy – SEM) for morphological and structural studies; • X-ray photoelectron spectroscopy (XPS) for surface chemistry
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collaborative programme bringing together a team of leading experts in advanced electron microscopy imaging, first-principles modelling, metal halide semiconductor thin-film and device fabrication, and
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), Neutron Sciences Directorate at Oak Ridge National Laboratory (ORNL). As part of the team, you will carry out in-situ studies of droplet interface bilayers (DIBs) using fluorescence microscopy techniques
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electron ground states and multiwell energy landscapes using scanning probe microscopy techniques beyond the state of the art. Correlated electron ground states in materials are currently being explored
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) the creation of new-based DNA nanostructures as a molecular template to hold proteins to facilitate molecular imaging by single-particle Cryo-Electron Microscopy (Cryo-EM); and (2) the development of DNA-based
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a novel synchrotron setup to combine x-ray scattering with light microscopy. Most of the work will be performed in Grenoble at the ESRF. The newly built setup will then be used to investigate a
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of the most understudied components of neurobiology. We aim to change that using interdisciplinary approaches that combine advanced microscopy (confocal, electron, in vivo multi-photon), viral vectors, protein