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known gene-regulation activities required for healthy embryo development. The project is highly interdisciplinary spanning advanced microscopy, gene regulation, active matter physics, and computational
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Fluorescence in situ hybridization (FISH, CARD-FISH), advanced microscopy, community sequencing, and metagenomics The work will be carried out in the Archaea group, Section for Microbiology, Department
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responses, α-synuclein pathology Immunofluorescence and confocal microscopy, high-content imaging, quantitative image analysis, SDS-PAGE and Western blot Testing of candidate compounds Contribution to single
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-of-the-art techniques to assess the physicochemical properties of nanoparticles, ensuring their stability, drug release kinetics, encapsulation efficiency and electron microscopy imaging. Integrate innovative
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Fluorescence in situ hybridization (FISH, CARD-FISH), advanced microscopy, community sequencing, and metagenomics The work will be carried out in the Archaea group, Section for Microbiology, Department
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, and materials chemistry, with access to advanced infrastructure such as NMR, mass spectrometry, electron microscopy, and chromatographic techniques. Research is conducted in close collaboration with
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coatings. Key responsibilities include: Developing and optimizing advanced surfaces using state-of-the-art thin film technologies Characterizing prepared thin films using scanning electron microscopy and
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carbon nanotubes to assist in measuring biomass. They will work with other graduate students to measure biomass degradation using custom single-molecule imaging techniques and surface probe microscopy
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and immune related pathways. Tissue culture advanced microscopy experience are an advantage. Job Description Primary Duties & Responsibilities: Information on being a postdoc at WashU in St. Louis can
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: Developing and optimizing advanced surfaces using state-of-the-art thin film technologies Characterizing prepared thin films using scanning electron microscopy and surface wetting methods Analyzing and