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Field
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. Experience using analytical tools, such as particle size analyzer, X-Ray diffraction, electron microscopy (SEM and TEM), spectroscopy (FTIR and Raman), surface area analysis, and electrochemical (EIS and RDE
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diffraction and related scattering methods, Raman spectroscopy, electron microscopy (SEM and TEM). Carry out electrochemical characterization of the materials in half cells as well as in full sodium ion battery
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that will be employed include flow cytometry, confocal and electron microscopy, in vivo two photon imaging, behavioral studies and transcriptomic techniques. The successful candidate will join the Center
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ability to contribute immediately to a rigorous research program. Knowledge/Skills/Abilities Experience with using Drosophila melanogaster as a model organism; previous use of confocal microscopy; basic
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ability to contribute immediately to a rigorous research program. Knowledge/Skills/Abilities Experience with using Drosophila melanogaster as a model organism; previous use of confocal microscopy; basic
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at MUN features state-of-the-art medical laboratories equipped with high-resolution confocal imaging, a Seahorse analyzer for metabolic profiling, flow sorters and cytometers, an electron microscopy suite
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investigate their photo-physical properties with optical spectroscopy (photoluminescence, raman spectroscopy) and photocurrent microscopy (photocurrent under polarized light) to understand the charge carrier
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Contact persons Research Back Research infrastructure Back Digital Humanities Center LISA+ Quantitative Biology Center (QBiC) Tübingen Structural Microscopy (TSM) Research Data Management (RDM) Core
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skills. Ideally, the candidate will have experience in one or more of the following areas: - fabrication techniques used in materials science, such as electron beam litography, microscopy, etc
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successful candidate will use low-temperature scanning probe microscopy (SPM) to experimentally investigate the nature and properties of correlated electrons in van der Waals (vdW) systems, focusing