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APT study showed that the enrichment was heterogeneous on the loop plane.
APT study reveals the presence of nanometer-sized Al-rich and Si-rich regions and support the EXAFS results.
Our APT study reveals that Mn partitions to the NiAl nanoparticles, and dramatically increases the particle number density by more than an order of magnitude, leading to a threefold enhancement in strengthening.
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Detailed APT studies showed Cr shells around oxide particles of all sizes in the Fe Cr Ti Y2O3 alloy, that a range of cluster compositions are present and that the particle chemistry varies with cluster size.
Several APT studies of Ni-based alloys indicate that the partitioning of tungsten atoms to the γ′(L12) phase is reversed in favor of the γ phase due to tantalum atom additions.
In the present work, we employ transmission electron microscopy (TEM) and atom probe tomography (APT) to study the formation of Laves phase particles.
A major challenge of using APT to study this group of materials is the presence of tails after Fe peaks in the mass spectra, which overestimates the composition for alloying elements such as Nb and Cu in the steels.
In all subjects with non-IgE-mediated CMA the APT to study formula resulted negative.
To achieve this we replace graph cycles by topological circles, and replace the cycle space of a graph by a new homology group for continua which is a quotient of the first singular homology group H 1. This homology seems to be particularly apt for studying spaces with infinitely generated H 1, e.g. infinite graphs or fractals.
TNBS-induced inflammation has been widely studied for its resemblance to CD and is considered an apt model to study the acute local inflammatory response as well as the subsequent established and delayed-type hypersensitivity reactions [ 26].
The foam generated with 4% (w/v) mixed solution of Span 60 and sodium dodecyl sulfate (SDS) showed an excellent stability and quality, which made it particularly apt for this study.
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