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Specific glasses used in an infiltration process to prepare ceramic composites were analyzed considering eight different compositions reported in literature.
Among the promising media for applications of photonics are specific glasses, such as non-oxide glassy-like materials with a high content of chalcogens (S, Se, Te), which are also widely known as the chalcogenide glasses (ChGs) [4, 5].
Even distinctive aspects of specific glasses can be described using few additional functions (e.g., wine glasses use their shape to keep the aroma and direct it to the nose, and to isolate the liquid from the body's heat).
For microdissection by Leica LMD 7000 (Leica Microsystems, MI, Italy), 5-µm-thick sections were performed on specific glasses with thermoplastic membrane activated by a low-energy infrared laser pulse and stained with hematoxylin and eosin.
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This would require a specific glass viscosity.
The specific glass targets have been prepared by glass pouring process.
Specific glass compositions have been developed to provide the conduction and electron emission layer at the surface of the pores.
The specific glass cockpit display used in this study was subjectively appealing but yielded poorer flight performance in participants with no previous flight experience than a traditional display.
The objective of this work was to verify the effectiveness of a systematic approach in designing specific glass compositions with target properties in order to prepare glass infiltrated ceramic composites with high translucency.
In any case, the molten Au would be supercooled as nonstable clusters/lamellae and metastable Ih/Dh at specific glass transition temperatures (Tg), whereas stable fcc structure with drastic volume and enthalpy changes at melting point (Tm) in the present dynamic cooling process.
The methods are then applied to the prediction of transverse cracking in a specific glass-reinforced plastic (GRP) system for the case of the uniaxial loading of a [0/90]s GRP laminate, and for the equi-biaxial loading of a [ ± 45]s laminate.
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