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. The compounds and their properties and behaviour will be studied using a variety of techniques such as NMR, MS, CV, and electrolysis. Where to apply Website http://www.ub.edu/caiac/solBeca?idConvocatoria=50448
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. Experience in designing and carrying out chemical syntheses, also in anaerobic conditions. Experience in the use of analytical methods for characterization of organic and coordination compounds, including NMR
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, XAS, XPS, dissolution-NMR, IR spectroscopy and TGA and other related spectroscopy techniques. About UM6P: Located at the heart of the future Green City of Benguerir, Mohammed VI Polytechnic University
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changes of porous material catalysts before, during, and after the reaction using a panoply of characterization techniques such as XRD, N2 adsorption, FESEM, TEM, XAS, XPS, dissolution-NMR, IR spectroscopy
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the reaction using a panoply of characterization techniques such as XRD, N2 adsorption, FESEM, TEM, XAS, XPS, dissolution-NMR, IR spectroscopy and TGA and other related spectroscopy techniques such as UV and
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chemistry, focusing on areas such as in inorganic chemistry, materials synthesis, or catalysis. Synthesize and characterize inorganic compounds or materials using techniques such as X-ray diffraction, NMR
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on designing and synthesizing novel phosphorus-containing compounds. Proficiency in various analytical techniques such as NMR spectroscopy, mass spectrometry, IR spectroscopy, and HPLC, which are commonly used
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techniques (UV-Vis, FTIR, Raman, NMR, XRD, spectrophotometry, etc), and microscopy techniques (SEM, TEM, AFM, etc) necessary for structural and physical-chemical characterization of polymer and polymer-based
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configurations. The ability to characterize products using GC-MS, FTIR, Raman, NMR, TGA-DSC, and LC-MS. Experience with X-ray absorption and scattering techniques. Experience in catalyst design and synthesis. Job
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including liquid chromatography (e.g. HPLC) and NMR spectroscopy. The candidate will become part of our team and will also have opportunities to collaborate on related projects in bacterial polysaccharides