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; EPSRC Centre for Doctoral Training in Green Industrial Futures | Bath, England | United Kingdom | 3 months ago
(MS) to study reaction and drying kinetics. X-ray Diffraction (XRD) for crystalline phase identification. Scanning Electron Microscopy (SEM-EDX) for microstructural and elemental analysis. Numerical and
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: electrode/device fabrication using inkjet printing including rheolgy characterization, physicochemical characterization of nanomaterial, using techniques such as SEM, TEM, DLS, XPS. Solid experience with
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applied electron microscopy. EMAT has several state of the art electron microscopes including three aberration corrected, high end FEI-Titan instruments, a dual beam FIB, an environmental SEM,... EMAT is
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of these materials.State-of-the-art characterization techniques such as DSC, DMA, DTMA, micro-Computed Tomography (micro-CT), optical microscopy and Scanning Electron Microscopy (SEM) are combined with advanced numerical
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. EMAT has several state of the art electron microscopes including three aberration corrected, high end FEI-Titan instruments, a dual beam FIB, an environmental SEM,... EMAT is also a pioneer in in situ
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relevant materials characterization techniques (i.e. XRD, SEM, FTIR, Raman or similar) Personal characteristics In the evaluation of qualifications of the candidates, emphasis will be placed on education
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biology community. Direct access to high-level EM infrastructure at the Ernst-Ruska Centre including cryo-microscopes. The facility has been extended with state-of-the-art cryo-microscopes and FIB-SEMs
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practical lab or workshop experience, especially if you’ve used tools like SEM, profilometers, or hardness testers to analyse materials. A knack for solving problems and thinking critically, with
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the admission application is approved. Cutting-Edge Training: Gain hands-on experience with multi-material 4D printing, advanced electrode fabrication, and state-of-the-art characterisation (e.g., SEM, TEM, XPS
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PhD Position (m/f/d) - Atomic Layer Deposition (ALD) of transition metals for biomedical application
-terization of the deposited films using advanced techniques such as XRD, XPS, SEM, TEM, and ToF-ERDA to evaluate their properties and suitability for biomedical applications. This project offers a unique