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PSA mobility was characterized using thermal analysis and rheology study.
Using thermal analysis and wide angle X-ray scattering (WAXS), we evaluated the confinement that exists in as-spun amorphous, and heat-treated semicrystalline, fibers.
The thermal properties and fine structures of the isotropic and oriented samples were investigated using thermal analysis and X-ray diffraction methods.
Copolyesters composed of poly ethylene 2,6-naphthalate) and poly ethylene 9,10-dihydrophenanthrate) (PEN/PEHP copolymers) with different copolymer compositions were synthesized and their thermal properties and fine structures were investigated using thermal analysis and X-ray diffraction methods.
In order to better understand the microstructure that forms during laser welding of an 18 carat gold and an austenitic stainless steel, solidification of the Au Fe binary analog has been studied using thermal analysis and interrupted Bridgman experiments.
Using thermal analysis and X-ray diffraction, we found no differences in crystallite size, unit cell dimensions or decomposition properties indicating, however, that the nature of the mineral itself, a carbonated apatite, was not altered.
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Two types of characterization techniques were used: thermal analysis; and NO and H2 desorption at programmed temperature.
The samples studied have been characterized using thermal analysis, X-ray diffraction and scanning electron microscopy.
The influence of molecular weight, composition (mid-block mole fraction), and interaction parameter on the crystallinity and on the formation of an ordered nanoscale phase-separated structure was investigated using thermal analysis, X-ray scattering, and electron microscopy.
The pozzolanic activity of silica fume and RHA and the combined effect of RHA and SF were investigated using thermal analysis, Frattini's test, Calorimetric tests and XRD analysis.
These polymers were characterized using thermal analysis, size-exclusion chromatography, NMR and viscosimetry techniques.
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