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chemical instrumentation, including modern spectroscopy instruments, a high-resolution LC-MS, a 400 MHz NMR, GC-MS, HPLC, ICP-OES, DSC, spectrofluorophotometer temperature-controlled cell, confocal
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approach combining cryo-electron microscopy, NMR spectroscopy, and advanced molecular modeling, the research will unravel the molecular architecture and conformational dynamics of pili and their interactions
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synthesis (main task) - Characterization of the synthesized complexes by NMR, UV-visible, IR, XRD, EPR and any appropriate analytical mean (main task) - Study of the reactivity of synthesized complexes
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chromatography (HPLC and HPAEC), UV-Vis spectroscopy, and mass spectrometry. Furthermore, compilation, interpretation and presentation of data collected with FTIR spectroscopy, Py-GC/MS, NMR spectroscopy, size
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and HPAEC), UV-Vis spectroscopy and mass spectrometry. Furthermore, compilation, interpretation and presentation of data collected with FTIR spectroscopy, Py-GC/MS, NMR spectroscopy, size exclusion
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-phase synthesis of bioactive peptides using the Fmoc/tBu method. Spectroscopic and spectrometric techniques (FTIR, MS, NMR). Chromatographic analysis methods, including high-performance liquid
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, such as GC-MS, NMR, and IR. Experience with and knowledge of hazardous materials handling, disposal, and storage in a chemistry laboratory. Experience maintaining a safe laboratory environment in compliance
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, water, hydrogen-based, and oxygen-based reaction products with multinuclear Nuclear Magnetic Resonance (NMR) both in solution and solid state. Abiotic redox processes involving iron and other transition
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the support and maintenance of equipment, support of the NMR facility, and other general tasks for the department. The technician will also be involved in education (training of students and their supervision
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David Parker FRS, Chair Professor in Chemistry (https://chem.hkbu.edu.hk/davidparker ) to conduct high-quality research, and showcase original research accomplishments that have the potential to allow