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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
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for the rational design of novel catalytic materials. The Spectro-Microscopy group operates an ultra-high vacuum (UHV) based aberrations corrected and energy filtered Low Energy and Photoemission Electron Microscopy
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approaches including live-cell fluorescence microscopy, cryo-super resolution structured illumination microscopy (SIM), and cryo-electron/X-ray tomography. You will lead research into antimicrobial responses
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materials – including Raman, atomic force microscopy, and scanning electron microscopy, running reactors such as CSTRs to run various processes. and exfoliation of graphite into graphene using solution-based
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using microscopy techniques, including Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM). The candidate will also map the nanomechanical properties of implant surfaces, assessing
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on the kleptoplastidy system, including sample preparation and bioinformatics analyses. - 3D imaging (3D electron microscopy and expansion microscopy) to characterize the kleptoplastidy in different conditions. The
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affinity for interdisciplinary research. Experience in electron microscopy (TEM), local probe microscopies (AFM) and/or electrochemistry would be a plus Additional Information Work Location(s) Number
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megakaryocyte cell communication and coordination. We will employ a range of approaches including advanced microscopy (confocal and intravital), models of thrombus formation (ex vivo and in vivo ), and flow
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multidisciplinary character is reflected in activities covering spin electronics, magnetism, ultrafast optics, electron microscopy and local probes, biomaterials, as well as the synthesis and characterization
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Post-Doctoral Associate in the Center for Translational Medical Devices (CENTMED) - Dr. Panče Naumov
, including Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM). The candidate will also map the nanomechanical properties of implant surfaces, assessing factors such as adhesion, friction