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Dry powders of azithromycin with a variety of carrier types and carrier:drug ratios were prepared by spray-drying and characterized afterwards for different physical properties, including particle size and distribution, morphology, flowability, powder density and hygroscopic nature.
All are characterized afterwards by the presence of a red (negative) pulse witnessing the occurrence of a strong velocity reduction.
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The films were first characterized immediately after their preparation and afterwards were allowed to oxidize in air at room temperature for a given time to study their aging.
Commercial mullite as well as reaction sintered mullite-zirconia bars, obtained by the authors, were exposed to Mg-containing molten aluminum alloy at 800°C for 500 1000 h and afterwards characterized by XRD, RLOM, TEM and SEM-EDS.
Afterwards, the nanosuspension was characterized and stored in refrigerator (4 °C).
The final targeting vector was characterized by restriction site analyses and afterwards partially sequenced.
Afterwards, surface and cross-section morphology feature and elemental composition were characterized by SEM and EDS, and surface phase composition was characterized by XRD.
Afterwards, spatial distribution of LST in radial and circumferential directions was characterized based on profile and concentric zonal analysis, in which contributions of LULC types to LST were studied.
Afterwards, bead-free ENMs with diameter of 100 500 nm were prepared and characterized in terms of porosity, pore size and mechanical properties.
Afterwards, the instable behaviors of axially non-uniformly moving viscoelastic piezoelectric nanoplate characterized as a sine variation about the constant average speed are addressed using the method of multiple scales.
Curve type 1 can be described as slowly increasing enhancement over time, curve type 2 is characterized by enhancement reaching a plateau phase, and curve type 3 shows fast enhancement with washout effect afterwards.
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