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. Experience in quantitative research in biology is essential. Desirable criteria include experience in standard laboratory techniques (including microscopy) and strong numerical skills. Month when Interviews
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Manufacturing process for Cold Spray with Artificial Intelligence, operate the AM machine, characterise the materials with scanning electron microscopy and transmission electron microscopy with tensile testing
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prehistoric explosive eruptions, such as St Vincent, Dominica and Montserrat. Use standard petrological analysis, together with Scanning Electron Microscopy (SEM)and Electron Backscatter Diffraction (EBSD
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expertise and facilities in electrochemistry, materials chemistry, advanced characterisation techniques (including a variety of spectroscopy, microscopy,) modelling and battery and fuel cell construction and
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dysfunction in Alpers’ syndrome. The student will receive training in a wide range of techniques including tissue culture, immunofluorescence and quantitative microscopy, metabolic assays, and data analysis
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techniques, including fluorescence microscopy, microfluidics, and biomolecular encapsulation. You will collaborate with leading scientists at the University of Surrey and international research partners (Prof
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maturity in the above areas. • Strong aptitude and interest in biophysical instrumentation and microscopy, and willingness to acquire related knowledge e.g. photophysics. • Professional
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, histology, confocal microscopy or cell culture, and be confident in selecting and adapting protocols to suit experimental needs. You will be organised, capable of managing your own research and administrative
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electron microscopy (4D-STEM) techniques. The Research Associate will design and execute in-situ experiments under liquid nitrogen and liquid helium conditions, including developing the hardware and
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the design of fundamentally new alloys by computational methods; production through arc melting, powder metallurgy or additive manufacturing; characterisation using advanced electron microscopy and x-ray