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including: In-situ, operando and ex-situ techniques (X-ray and neutron, computed X-ray tomography, spectroscopy) Electron microscopy (eg FIB/SEM, EDX and sample preparation) With a background in the field
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Science at the School of Health Sciences is seeking to appoint a Postdoctoral Research associate in medical Imaging to support research funded by an NHMRC Synergy Grant on ‘Implementation of x-ray Phase
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-ray computed tomography, scanning electron microscopy, or other microscopy 3D techniques, is desirable. These modeling and microscopy approaches will be combined with experimental data to evaluate
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-optical analysis, thermal analysis, surface analyses such as electron-based imaging techniques, for example SEM/EDX/WDX, X-ray techniques, such as X-ray tomography, and other non-destructive evaluation
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all cases, the amorphous nature of the materials produced will be assessed by XRD, DSC and, if necessary, TEM. The possible presence of residual porosity will be studied by X-ray micro-tomography
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in soil erosion and soil physics, including analyzing soil structure through X-ray Computed Tomography and conducting soil surface modeling using laser scanning. Demonstrated capacity for
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tomography, atomic force microscopy, small angle scattering and x-ray free-electron laser). Moreover, we aim fostering collaborations with experimental groups to investigate specific biological functions
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strategies (Professor Gregor Hillers) gamma ray imaging for nuclear safety, security and safeguards (Professor Peter Dendooven) medical imaging, including X-ray tomography and electrical impedance tomography
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imaging techniques are an advantage as well as knowledge in adhesion technology. Previous experiences in using advanced imaging techniques (nano-X-ray computed tomography, small-angle x-ray scattering
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and chemistry, particularly X-ray spectroscopy applied to materials science. - Solid knowledge of image processing and materials characterization. - Experimental experience in imaging and programming