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The cross-point structure and thicknesses of all materials were evaluated from a HRTEM image.
The average number of layers and in-plane crystalline size in the materials were evaluated from Raman spectroscopy.
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The strain-hardening exponent, used in describing the plastic flow properties of materials, is evaluated from the characteristic length in the indentation size effect (ISE).
Extracts created from both materials were evaluated for biological activity using in vitro cell culture assays.
Four swab materials were evaluated for their efficiency in recovery of Bacillus anthracis spores from steel coupons.
A variety of sorbent materials were evaluated for the desulfurization.
Methods: Nine soils from residential sites affected by mining or smelting activity and two National Institute of Standards and Technology standard reference materials were evaluated for As bioavailability, bioaccessibility, and speciation.
Three isolated yeast strains from lignocellulosic materials were evaluated, and one strain (UFFS-CE-3.1.2), identified using large subunit rDNA sequences as Wickerhamomyces sp., showed satisfactory results in terms of ethanol production without acetic acid removal.
The dynamic mechanical properties of new materials were evaluated.
Material properties of titanium scaffolds were evaluated from experimental testing.
The thicknesses of the resistive switching material and of the memory device were evaluated from a HRTEM image.
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