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Mechanical characterization revealed a stepwise decrease in flexural modulus (9.4 8.1 GPa) and concomitant increase in transverse modulus and strength on increasing the compaction temperature from 255 to 259 °C.
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On the other hand, mechanical characterizations revealed that the incorporating of 5 wt% n-HAp into the matrix of PVA/Col nanofibers could significantly improve the rigidity of the resultant biocomposite nanofibrous scaffold.
The dynamic-mechanical characterization revealed that both Pani·DBSA and its non-conducting, deprotonated form exhibits different degrees of interaction with the two phases of the SBS block copolymer.
Mechanical properties characterization revealed that the presence of aluminum nanoparticles ⩽1 vol.% leads to an increase in hardness, 0.2% yield strength and ultimate tensile strength of magnesium.
Further characterization revealed seven different families of ligases.
The rheological characterization revealed the macromolecular behavior of the HPMC.
Further characterization revealed that these rather spherical particles are ZnO nanoparticles.
Characterization revealed that sulfuric acid activated waste Gossypium hirsutum seed (WGSAB) contains surface area 496 m2 g−1.
In vitro characterization revealed that the GR p.R469X mutant is unable to bind hormones and DNA.
Molecular characterization revealed an unexpected feature of the validated CNV regions.
Molecular characterization revealed that wildlife and cattle share the same strains [19].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com