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The field-emission scanning electron microscopy (FE-SEM) images of the samples indicate that the TiO2 array surface morphology and orientation are highly dependent on the synthesis conditions.
The experimental as well as simulated texture of ECAE-processed samples indicate that the deformation mechanism leading to ultrafine grain size is slip-dominated.
Cell culture tests on flat PCL samples indicate that the applied plasma treatment increases cell numbers and improves cell attachment, independent of the used discharge gas.
SEM images of these samples indicate that the Pt particles are on the order of ∼1 μm for the chemically prepared composite.
The favorably predicted crack paths with digital samples indicate that the developed micromechanical analysis techniques have the ability to predict the internal frost damage.
These spectroscopic studies of fully reduced samples indicate that the formation of Pt3M intermetallic NPs leads to altered electronic structure of the Pt atoms and that the 5d states are shifted to higher energy in Pt/MXenes compared to Pt/SiO2.
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The results of the detection of clinical samples indicated that the assay coincided with microscopic examination.
The pH of ensiled samples indicated that the ensiling process was adequate.
The positive Seebeck coefficient for all samples indicates that the dominant carriers are holes.
Results: A comparison of baseline maternal and infant samples indicated that the infant sequences are monophyletic and contain a fraction of the diversity observed in the mother.
Recoveries within 94.4 108.3% from tea and gynostemma pentaphyllum samples indicated that the matrix effect could be negligible in sample analysis.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com