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sequencing and bioinformatics, iPSC derived cells, tissue organoids and/or tissue slices, analytical techniques e.g. LC-MS, liquid scintillation, HPLC, MS, NMR. Administrative and Collaborative Skills
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to accelerate the materials discovery, developing novel characterization techniques based on TEM, SEM, NMR, ToF-SIMS applicable to battery materials, etc. These specialized techniques will be applied
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combining biophysics, molecular biology, optical trapping, NMR spectroscopy, microfluidics, and neurophysiology to uncover a fundamentally new mechanism of sensory adaptation in neurons. Biomolecular
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of the SciLifeLab Integrated structural biology platform https://www.scilifelab.se/units/structural-proteomics/ The unit provides access to cutting-edge equipment and expertise, for the analysis
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techniques (e.g. NMR, IR, UV-vis spectroscopy, Mass spectrometry, and X-ray diffraction) necessary for characterizing new molecules and polymers. Experience with photochemistry (e.g. quantum yield analysis
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At least 70% of your assignment will be spent on academic research with the main focus on studying the structure, dynamics, and intermolecular interactions of membrane-active lipopeptides using NMR
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techniques (e.g. NMR, IR, UV-vis spectroscopy, Mass spectrometry, and X-ray diffraction) necessary for characterizing new molecules and polymers. Experience with photochemistry (e.g. quantum yield analysis
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synthesis (SPPS) · Develop and screen non-covalent and covalent peptide libraries · Perform peptide folding and stability analyses (CD spectroscopy, VT-CD) · Conduct structural studies by NMR spectroscopy
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part of the Ultra-Low-Temperature NMR (ULT NMR) Facility project, led by Dr Mingee Chung, contributing to installation and instrumentation of this unique-in-the-UK experimental platform. Nuclear Magnetic
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characterisation of glycoconjugate-based metal complexes, and materials based on these compounds. Your role will require measuring and analysing data from techniques including NMR, Mass Spectroscopy, UV/Vis