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in mammalian cell culture. Have experience in cell imaging/microscopy (wide-field or confocal fluorescence microscopy) and/or molecular biology techniques (electrophoresis, Western blotting, IHC
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rearrangements and ligand-induced conformational changes. You will integrate this platform with X-ray Crystallography and Cryo-Electron Microscopy (Cryo-EM) to determine high-resolution, atomic-level structures
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research. You will strengthen the data science and machine learning activities of IAS-9 by developing core AI methods with applications to electron microscopy and materials discovery. You will work in a team
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experiments in the field of diffusion, observing the movement of single atoms while applying electrical bias for metallic materials used for future particle accelerators, electron microscopy, medical devices
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functionalization. Chemical characterization by different means (FTIR, UV-Vis, electron microscopies, TGA, NMR, EPR and elemental analysis, among others). Morphological characteriztion electron microscopy, (SEM, TEM
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via operando liquid-phase transmission electron microscopy (LP-TEM). Your tasks: Self-motivated and independent planning, execution, and analysis of research in the scope of operando electrocatalysis
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contact and thus minimize friction and damage to the surfaces for improved energy efficiency [5,6]. To characterize these different polymer brushes, atomic force microscopy (AFM) is used, which in its
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. We are looking for highly motivated candidates with a strong interest in systems neuroscience and microscopy. The lab focuses on determining the mechanisms of neural circuits and the contribution
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microscope. The Mission: The successful candidate will play a central role in advancing multimodal microscopy, including techniques such as multiphoton and optoacoustic microscopy, to investigate novel
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single filaments and single droplets to composite networks using techniques such as optical tweezers, fluorescence microscopy and atomic force microscopy. The concrete activities during the project will