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As to the inner structure of Bi2WO6/cement, a porous structure was observed and Bi2WO6 particles were located evenly in the pores.
Samples reduced at 673 and 773 K produced filaments exhibiting "whisker-like" mode of growth (metal particles were located at the tip of the filaments), while those reduced at 973 and 1100 K produced "extrusion-like" filaments (Pd particles were located at the bottom, attached to ceria crystallites).
Morphological studies using transmission electron microscopy and optical microscopy indicated that the graphene oxide particles were located mainly in the minor PCL phase, where the interphase between PLA and PCL acted as a compatibilizer.
The vertical and horizontal turbulence intensity reached the maximum when the particles were located 20 mm from the bed surface near the bottom of leeward slope; and the minimum at 60 mm from the bed surface.
Electron tomography revealed for the precipitated catalyst a plate-like silica structure with copper particles partially entrapped, whereas for the impregnated catalyst the copper particles were located in the pores between the primary particles of a silica gel.
Some fine particles were located around small MNBs but did not cover the entire bubble surface.
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The particles are located at relatively fixed locations with time, without showing Brownian motion, suggesting they might be attached on the silicon nitride window without being able to freely move in the liquid.
The electric field is horizontal, except in the lower right panel, which is a view of the final state parallel to the electric field, showing that the particles are located on the drop's surface.
On the contrary, the aggregates with the largest number of primary particles are located much further into the fuel stream.
Thus, the nickel particles are located on the surface of the mesostrucutre, within the mesoporous and outer surface.
In comparison, the majority of individual AlB2 particles is located near the Al/flux interface inside the aluminum matrix in a circular shape.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com