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Defects, produced in the oxygen sublattice, induce important strain fields on a nanometric scale.
DLS and AFM results evidence that particles were obtained in nanometric scale.
This paper presents a novel visual method to measure displacements at nanometric scale along two axes.
A nanometric scale positioning system is especially vulnerable to parameter uncertainties and external disturbances.
Increase in solubility can be correlated with the combination of sizes of both Ag and Bi at the nanometric scale.
During the last decade, cryo-electron tomography (cryo-ET) has become central to exploring cellular structures on a nanometric scale.
Extreme ultraviolet multilayer coatings consist of periodic or aperiodic stack of two or more material layers in the nanometric scale.
These observations are interpreted in terms of the non-continuous nature of the disordered network on the nanometric scale.
The design of thin hard coatings at a nanometric scale is very promising to improve the surface characteristics of coated parts.
Scanning electronic microscopy (SEM, micrometric scale) and X-ray diffraction studies (XRD, nanometric scale) were employed to evaluate the frameworks of silicone resin materials.
These observations are interpreted in the frame of the energy landscape, and by considering the model of the glass heterogeneous cohesion at the nanometric scale.
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