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details, please visit our website at https://slst.shanghaitech.edu.cn/main.htm Shanghai Institute for Advanced Immunochemical Studies (SIAIS) Shanghai Institute for Advanced Immunochemical Studies (SIAIS
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IM2NP (Institut Matériaux Microélectronique Nanosciences de Provence) UMR CNRS 7334 Aix Marseille Université | Marseille, Provence Alpes Cote d Azur | France | 7 days ago
caractérisation ex situ de la structure de grains (EBSD - Electron BackScatter Diffraction) au laboratoire MSMP (Laboratoire Mécanique, Surface, Matériaux et Procédés, Aix-en-Provence) et des techniques pour
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-crystal X-ray diffraction), and mass spectrometry. Thermal behaviour will be assessed using differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA), complemented by mass spectrometric
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& acylation),Polymerization, TLC, distillation, LLE, Titrations, UV-Vis, GCMS, LCMS, HPLC,MALDI-TOF, X-ray diffraction, FTIR, Chimera software for molecular docking. Essential Duties and Responsibilities
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data from the European XFEL facility at DESY. Project website: https://www.mpinat.mpg.de/628848/SM-Ultrafast-XRay-Diffraction Your profile Eligible candidates have strong skills in computational
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is High-Throughput Automation, leveraging rapid manufacturing via Directed Energy Deposition (DED) coupled with a rapid characterisation pipeline that includes X-ray diffraction, thermal analysis
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to learn state-of-the-art lab methodology, comprising pulsed laser deposition (PLD), atomic force microscopy (AFM), advanced X-ray diffraction (XRD), and electrochemistry. Additionally, synchrotron
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multiple length scales, combining tools such as electron microscopy, atom probe tomography, X-ray diffraction, and micro-mechanical testing. About the research project Bone is a remarkable material that
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physical and chemical processes by enabling the structuring of materials at the nanoscale, well beyond the classical diffraction limit. These novel functionalities can either enhance inherent surface
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temperature. This will be achieved using a variety of solid-state, high-pressure and solvothermal synthesis techniques, and the resultant products will be characterized through X-ray and neutron diffraction as