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User involvement then obviously continues through the engineering phase, in the form of usability testing.
The thin TiO2 films are mainly composed of anatase phase in the form of nano-crystallites.
The alloys consist of face-centered cubic solid solution and C15 Laves phase in the form of lamellae.
Consequently, as temperatures decrease, the pyroxene adjusts its composition in the solid state by exsolving a separate phase in the form of lamellae within the host pyroxene grain.
For gas solid riser reactors, the multi-scale structure involving a dilute phase in the form of dispersed particles and a dense phase in the form of clusters is a significant feature.
Bone like tissues are biocomposites comprising an organic matrix (mostly collagen) and a reinforcement phase in the form of mineral crystals (poorly stoichiometric apatite).
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The formation dynamics of the condensed phase of aluminum oxide (c-phase) in the form of aerosol particles is modeled with allowance for the homogeneous nucleation of Al2O3 molecules, and the processes of condensation, evaporation and coagulation.
The crystalline structure of CoCrFeNiTi0.5 alloy was composed of one principal face-centered cubic (FCC) solid-solution matrix and a few intermetallic phases in the form of interdentrite.
A Multifunctional Smart Material System (MSMS) consists of two or more different smart material phases in the form of a hybrid system, in which every phase performs a different but necessary function.
Newly identified Li2MnSnO4/C nanocomposite, found to exist as a hybrid consisting of electrochemically active and inactive phases in the form of Li2SnO3, Mn2SnO4 and Li2O has been prepared by oxalyl dihydrazide assisted combustion method.
The structure and stability of the resulting tetragonal phases, in the form of transformable, yttria-lean t-ZrO2 (YLZ) and non-transformable, yttria-rich t″-ZrO2 and/or t′-ZrO2 (YRZ), were studied by X-ray diffraction (XRD) and focused ion beam scanning electron microscopy (FIB-SEM).
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