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For short path lengths, such as those encountered in penetration of thin films, the emergent particles show a kind of energy straggling called Landau type (for the Soviet physicist Lev Landau).
Deposited particles show a micrometric granular structure.
The particles show a homogeneous fluidization in supercritical water fluidized bed.
The small particles show a background luminescence, while the larger particles are able to reveal intensive photoluminescence.
In addition, the particles show a narrow size distribution due to their magnetic attraction exhibiting a partially sintered microstructure.
On the one hand, an increasing number of particles show a pure Au core (see red bars on the left).
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The particles show an attraction to magnetic field, demonstrating the magnetic responsibility.
Some particles show an irregular, elongated shape with sharp edges and sizes up to 13 μm (Fig. 3a).
In fact, the optical images of porous particles show an onion-like structure within the particle, suggesting a radial dependence of the porosity (see Figure1).
It has also been shown that subjects with small dense LDL-C particles show an impaired response to the endothelium-dependent vasodilator acetylcholine [ 7].
Doped TiO2 particles showed a porous and complex nature with a highly rough surface.
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CEO of Professional Science Editing for Scientists @ prosciediting.com