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complementary microscopy techniques, and developing nanoprobe-based sensing methods. A central goal is to understand nanoparticle behaviour and interactions in complex environments and to establish new approaches
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culture with molecular and cell biological approaches, including genetic and pharmacological perturbations, immunoblotting, protein interaction studies, subcellular fractionation, fluorescence microscopy
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, Raman spectroscopy, X-ray diffraction, thermal analysis, etc.), electrode fabrication, cell assembly and electrochemical testing. A full suite of electron microscopy (SEM and TEM) and surface analysis
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biology and extreme stress tolerance. The successful candidate will have access to advanced microscopy infrastructure at Uppsala BioCenter and will work in a collaborative environment spanning plant cell
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to advanced microscopy infrastructure at Uppsala BioCenter and will work in a collaborative environment spanning plant cell biology, genetics, genomics and developmental biology. Your profile We are looking
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environment including several research groups with extensive experience in virology, biochemistry, structural biology, cellbiology and imaging. Both the Umeå Core facility for Electron Microscopy (http
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electron microscopy. Documented experience in photophysical characterization, including UV–Vis absorption spectroscopy, steady-state and time-resolved photoluminescence spectroscopy, PL quantum yield
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to work effectively in an interdisciplinary and international research environment The following qualifications are considered an advantage Experience with synchrotron, neutron, electron microscopy, medical
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microglial biology, using cutting-edge methodologies including: two-photon microscopy, miniatured microscope, optogenetics, behavioral phenotyping and transcriptomics. Work duties Lead independent research
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. Together with other research groups, we offer state-of-the-art core facilities providing cell sorting techniques, microscopy, sequencing, mouse facilities, and provide access to clinical samples