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and X-ray small-angle scattering experiments on complex liquid systems, including the use of isotopic labelling in neutron experiments. The successful candidate will also have an advanced understanding
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of conservation and restoration of photography, time-based media, or modern materials (plastics, synthetic films, etc.); b) Experience in infrared spectroscopy, X-ray fluorescence, and optical microscopy, applied
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optical engineering: Imaging and image analysis, optical engineering, detector development, microscopy, X-ray optics • Structural Biology and Mechanical Engineering: Automation, high-precision mechanics
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Center for Astrophysics | Harvard & Smithsonian | Cambridge, Massachusetts | United States | about 3 hours ago
participate in ground- and space-based observing programs including but not limited to the Chandra X-ray Observatory, the Event Horizon Telescope, the TEMPO satellite instrument for pollution monitoring
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to formulate and prepare building blocks for stable LNPs through organic synthesis and click chemistry. Use broad advanced instrumentation for X-ray/neutron scattering studies, surface studies (QCM-D, AFM
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and/or optical tweezers. Experience in structural biology (X-ray crystallography, CryoEM) Skillsets in CRISPR/Cas9 construct design, validation, and implementation. Experience in cell biology, including
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, confocal imaging, live animal IVIS and CT-PET machines, X-ray radiation, XCELLigence, Seahorse, ultracentrifuge, Proteomics (Mass spectra), HPLC, etc Conducts background research, independently design
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for structural biology. This project sits at the intersection of X-ray scattering and deep learning, aimed at integrating experimental data to predict protein ensemble structures. As an Empire AI-funded fellow
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including a state-of-the-art NeoArm JEOL, multiple powder and single crystal X-ray diffractometers, NMR, EPR, and time-resolved fluorescence amongst others. The Harvey Lab at Indiana University focuses
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catalyst design and materials characterization by standard techniques (NMR, IR, Mass spectrometry, X-ray diffraction, TEM, and DFT calculations desirable). The Zaleski Lab is a dynamic multidisciplinary