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Analysis of 18 of these samples showed that the 533-base-pair sequence differed by no more than three nucleotides.
Immunohistochemical analysis of these samples showed significant production of cartilage matrix molecules.
Concurrent X-Ray diffraction studies in these samples showed an increase (∼34%) in FePO4 phase fraction.
These samples showed significantly decreased activity in CO hydrogenation in SSITKA experiments (1 bar, 483 K).
These samples showed significantly reduced mass loss rates of PS and PMMA.
In addition, RNA-seq and ATAC-seq data from these samples showed that lamin B1-enriched genes were actively transcribed, with their promoters located in accessible chromatin regions (Fig. 1f).
Charpy impact tests on these samples showed an increased fracture energy mainly due to the ductile deformation of the tungsten fibres.
However, these samples showed a complete lack of relaxation, which appeared to be a good sign of a prolonged service life of IPMC.
The predicted fracture behaviors of these samples showed favorable comparison with the measured fracture strength after each fracture-healing cyclic test.
The XRD patterns of these samples showed a single and very broad peak supporting the hypothesis of the non-alloyed Pt and Ru.
The PM chemical composition of these samples showed typically high concentrations of Fe, Total Carbon, Ba, Cu, Mn, Zn and Cr sourced from rail tracks, wheels, catenaries, brake pads and pantographs.
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CEO of Professional Science Editing for Scientists @ prosciediting.com