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funded by the CAPeX Pioneer center (https://capex.dtu.dk/ ). The project involves design, synthesis, characterization, and testing of molecular transition metal coordination compounds, as electrocatalysts
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, HPLC, Flash) • knowledge of basic spectroscopic methods used to identify organic compounds (NMR, FTIR, CD, UV-vis, Fluorescence) • ability to design and perform syntheses of organic compounds
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imaging probes to nanocarriers. Conduct drug release, stability, and degradation studies under physiologically relevant conditions. Purify and characterize nanomaterials using HPLC, SEC, NMR, FTIR, UV–Vis
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skills in analytical chemistry method development (e.g., HPLC-MS/MS, GC-MS/MS). Interested applicants with a range of clinical and laboratory-based skills and doctoral degrees will be considered
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analytics including HPLC and/or LC/GC-MS Protein expression, purification and characterization using biochemical and biophysical assays Variant identification using next generation sequencing (e.g., Nanopore
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Immunology Posting Number R250104 Posting Link https://www.ubjobs.buffalo.edu/postings/57862 Employer Research Foundation Position Type RF Professional Job Type Full-Time Appointment Term Salary Grade E.89
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analytics including HPLC and/or LC/GC-MS Protein expression, purification and characterization using biochemical and biophysical assays Variant identification using next generation sequencing (e.g., Nanopore
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Discoverer, Simca. Experience in proteomic analyzes, identification of proteins and their post-translational or chemical modifications. Good knowledge of analytical methods (HPLC, UV/Vis, LC/MS) and sample
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imaging probes to nanocarriers. Conduct drug release, stability, and degradation studies under physiologically relevant conditions. Purify and characterize nanomaterials using HPLC, SEC, NMR, FTIR, UV–Vis
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 17 days ago
/MS, HPLC, etc. The central role for the candidate is in developing assays to quantify metabolites of drug metabolism generated by gut microbes and the host using tandem LC-MS/MS methodology