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Conductivity is associated with reactivity: samples, such as ceramics or colloidal samples, with cubic zirconia single phase present the lower resistance contribution.
The work focuses on the structural and mechanical characterization of Co-Cr-Mo cellular samples with cubic pore structure made by Electron Beam Melting (EBM).
A systematic study on the photoluminescence of Yb3+/Er3+-doped SrF2 samples with cubic shape, microspheres, spherical and nanosheets shapes showed that the optical properties of these products were strongly dependent on their morphologies and size.
Rosenberg et al. [28] observed that for metallic samples with cubic structures, the uniform deformation energy model is suitable.
This is in agreement with the results of Rosenberg et al. that for metallic samples with cubic structures, the uniform deformation energy model is suitable [19].
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The results reveal that the samples crystallize with cubic structure and grow along the [1 1 1] direction.
The tests here are limited to instruments optimized for samples with a cubic structure which differs from the optimization for triclinic structure samples.
The results suggest that samples with the cubic unit cell geometries, with struts oriented at an angle of 45° to the loading direction, exhibited higher stiffness than samples with the reentrant unit cell geometry at equivalent relative densities.
This paper describes the beta silver molybdate (β-Ag2MoO4 β-Ag2MoO4with samplestype cubic structures synthesized with various morphologies, including round tips cubic-like, elongated coral-like and truncated cube, by the microwave-astructureslvo-/hydrothermal method.
Regularly shaped samples, generally cubic samples with edge length ranging from 3 to 5 cm or a surface/volume ratio ranging from 2 to 1.2 cm-1 must be considered and for each analysis at least 3 samples are needed.
It is shown that all energetically admissible textures with maximum anisotropy have an effective elastic behavior with cubic sample symmetry.
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