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Field
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• immunofluorescence microscopy • multi-omics data analysis Experience with any of these techniques is appreciated, but not required. All applicants with any prior lab experience are encouraged to apply. Job Description
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be familiar with cancer models, protein analysis (such as Western blot and immunoprecipitation), microscopy, cell culture, and molecular biology techniques. This position may also involve
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/or cryo-electron microscopy. - Enzymology and inhibitor characterization. - Structure-guided drug discovery or fragment-based screening. Applicants must demonstrate: - The ability to design, execute
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of inorganic and coordination compounds, including discrete complexes and related systems, using methods such as X-ray diffraction (XRD), thermogravimetric analysis (TGA), scanning electron microscopy (SEM) and
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, including qPCR, DNA/RNA sequencing, flow cytometry, fluorescence microscopy, plasmid design, production and in vitro transcription of mRNA is key. Prior experience with gene editing protocols and read-outs is
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and/or sodium-ion battery technologies Familiarity with reference-electrode cell configurations Experience with electron microscopy, X-ray diffraction, and other advanced materials and battery
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sintering in terms of electrical conductivity, adhesion, mechanical stability, and substrate compatibility. The candidate will perform material and device characterisation using techniques such as microscopy
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single cell transcriptomic data. Computational and bioinformatic skills. Experience in microscopy. Generation and analysis of mouse models. Handling of human samples. Molecular biology skills including
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to develop an understanding of how the physical states of the dye and other components in the food formulation determine the color. The project combines experimental characterization (spectroscopy, microscopy
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of cryo-electron microscopy (cryo-EM), biochemistry, and computational biology, the lab visualizes how RNA molecules fold, assemble with proteins, and perform complex cellular functions. By mapping