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Cell morphology changes were quantified as ratio of long axis to short axis for each cell.
The morphology changes were observed by OM, FE-SEM, XRD, EDS and image analyses.
The observed morphology changes were characterized using transmission electron microscopy (TEM) and small-angle X-ray scattering (SAXS).
In this study, low energy (< 100 eV) helium plasma irradiations to various noble metals were conducted, and consequent surface morphology changes were analyzed.
Two materials were creep tested (SRR99 and CMSX-4) in two temperature ranges (stable γ′-morphology and rafting), and the morphology changes were quantified.
Cell morphology changes were examined by FESEM.
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Although size-related cell morphology changes are characteristic of cancer pathology and used diagnostically, the precise nature of these changes and their underlying molecular mechanisms are poorly understood.
The morphology changes are studied as a function of particle volume fraction and thermal diffusivity.
The chemistry, reaction mechanisms and morphology changes are studied and its effect on mechanical properties is observed.
Degradation product patterns and morphology changes are demonstrated to be means by which to differentiate between physical/chemical (abiotic) and biological (biotic) ageing of degradable polymers.
The effect of C2H2/H2 gas ratio was assessed and the threshold point at which the graphenated MWCNTs morphology changes was identified.
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