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Field
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experience with one or more techniques for studying protein-ligand interactions (e.g., X-ray crystallography, Surface Plasmon Resonance (SPR), or Fluorescence Anisotropy). Communication & Research Output: A
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following areas: -Biophysical instrumentation development: optical and mechanical design, simulation, development and control -Optical imaging; Single-molecule fluorescence and FRET; Lasers; Pump-probe
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: TEM/STEM-EDS, SEM, AFM, XRD, FTIR/Raman spectroscopy, UV–Vis/fluorescence spectroscopy, or ICP-MS/OES analysis. Experience with protein engineering or characterisation is favourable but not required
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optical microscopic techniques (e.g. confocal fluorescent microscopy, polarized light microscopy) and biochemical analytical methodologies (e.g. micro-FTIR, micro-XRD, micro-MRI, micro-CT and so on) Bio
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considered an advantage if the candidate has: Experience with optical projection tomography (LSFM), lightsheet fluorescence microscopy (LSFM) or other advanced 3D optical imaging systems; Experience with
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design optimisation, and performance evaluation. Perform advanced materials characterisation and microstructural analysis, including but not limited to: i. X-ray Fluorescence (XRF) ii. X-ray Diffraction
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histochemical staining of tissues, evaluation of tissue response/interactions using fluorescent microscopy (confocal) imaging. Expertise in western blotting, quantitative RT-PCR is a plus. Strong ability to
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– protein interactions or enzyme optimization. Main responsibilities The candidate will use and develop methods within one, or multiple, of the following categories: Optical engineering, fluorescence
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including state-of-the-art NeoArm JEOL, multiple powder and single crystal X-ray diffractometers, NMR, EPR, and time-resolved fluorescence amongst others. Job Summary: The Harvey Lab at Indiana University
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outgrowth in dorsal root ganglion neurons. A new direction of the lab is to utilize fluorescence techniques to study the biophysical properties of Ca2+ channels at the single molecule level. We utilize