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of this joint laboratory is towards the development of innovative nanotechnologies and nanomaterials for various electronic and photonic applications. For more details, please view https://www.ntu.edu.sg/cintra
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dependent educational benefits Life insurance coverage Employee discounts programs For detailed information on benefits and eligibility, please visit: http://uhr.rutgers.edu/benefits/benefits-overview
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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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testing (e.g. impedance spectroscopy, galvanostatic cycling, cyclic voltammetry) Experience with microscopy or materials characterisation methods (SEM, spectroscopy)' Experience with composite manufacturing
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group which is responsible for the development of the Ambient Pressure X-ray Photoelectron Spectroscopy Program at MAX IV. The beamlines provide a wide range of sample environments for in situ and
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sub-stellar objects. Candidates with expertise and interests in ground-based high-resolution exoplanet spectroscopy and/or imaging and spectroscopy of exoplanets, brown dwarfs, and young star clusters
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-Resolved Photoluminescence spectroscopy (TRPL, ns), Transient Absorption Spectroscopy (TAS, ps, fs), photocatalytic reactors, gas-chromatography coupled mass-spectroscopy (GC-MS), MicroGC, (photo
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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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direct experience with state-of-the-art detector technology and advanced data analysis techniques at the forefront of nuclear spectroscopy. Within this framework, Experiment 22.76 was performed at the INFN
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of oxygenates from CO and/or CO2, and mechanistic studies including operando spectroscopy and possibly numerical simulations (microkinetics, DFT). The objective is to discover new eco-efficient catalytic phases