Exact(19)
Microwave sintering (MWS) of commercially available 15-nm-size nanocrystalline TiN powder was studied.
Adsorption of ethanol on ZnO powder was studied by infrared spectroscopy and density functional theory investigations.
The structure and morphology of the as-prepared powder was studied by scanning electron microscopy and X-ray diffraction.
The microstructural state of the powder was studied by transmission electron microscopy (TEM) using a Tecnai F20 microscope.
Molten salt-assisted self-propagating high-temperature synthesis of nanocrystalline W powder was studied experimentally.
The pyrolysis of tire powder was studied experimentally using a specially designed pyrolyzer with high heating rates.
Similar(41)
Optical properties of the nanostructured powder were studied by UV Vis spectroscopy.
In the present study, a hydrophilic (ZnO-hydro) and a lipophilic coated (ZnO-lipo) ZnO powder were studied.
Thermal stability and crystallinity of PEAPA powder were studied by TGA and WAXD.
Characteristics of the used dense medium (magnetite powder) were studied, and washability of the feeding coal sample was analyzed.
The water-cementitious materials ratio (w/cm) for RPC mixes with the recycled powder are studied and selected.
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