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The creep behaviour was characterised using compressive high-temperature experiments.
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The full-field strain distribution during quasi-static tests was characterised using digital image correlation (DIC), and the fatigue damage behaviour was monitored using an infra-red camera.
Phase average behaviour and temporal dynamics were characterised using phase locked high speed CH chemiluminescence and high speed stereo particle imaging.
The morphologies, structures and thermal behaviours of the prepared composite scaffolds were characterised using field-emission scanning electron microscopy (FESEM), Fourier transform infrared spectroscopy (FTIR), and thermogravimetric analysis (TGA).
The fatigue behaviour of the nickel based superalloy RR1000 is characterised using double edge notch specimens incorporating shot peening.
The wetting behaviour of Ag, Cu and Cu-Ti alloys on TiC and TiN with a range of stoichiometry has been characterised using the sessile drop method.
Study populations were characterised using descriptive statistics.
AEs were characterised using NCI CTCAE version 3.0.
The sedimentation behaviour was characterised under centrifugal forces using a LUMiSizer® separation analyser.
The shrinkage behaviour is characterised by two regimes.
Thermoregulatory behaviour is characterised by regular movement between heating and cooling environments.
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