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It turns out that the mathematics of quantum mechanics has topological properties that, when combined with symmetry, explain how these phases form.
The first is on identifying how quantum spin liquids and related phases form in frustrated magnetic insulators and proposing "smoking gun" experiments for their existence.
Solid solution phases form and only form when the requirements of the atomic size difference, mixing enthalpy and mixing entropy are all met.
The TEM and XRD data show that finally two nanocrystalline phases form after long-term annealing as a result of the decomposition process in the early stages.
It is shown by means of XPS, FTIR and NO adsorption that CoMoS phases form selectively when the Mo content exceeds monolayer loading.
The Ni2Si, Ni3Si and TiSi phases exist after simple siliconization while Ni2Si, Ni3Si, TiSi, TiSi2 and TiB phases form after siliconization with TiB2 in the packing mixture.
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The phases formed nano-lamellae modulated structure inside equiaxed grains.
The microstructure and phases formed in the coatings were studied.
The study revealed different phases formed into the depth.
Beyond 4 h phase separation initiated and pure Ag and Ni phases formed in the film.
The materials are analyzed with regards to gradient depth, phases formed, phase composition and carbide grain size.
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CEO of Professional Science Editing for Scientists @ prosciediting.com