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The HT-TiO2 samples exhibited high photocatalytic activity for the degradation of i-BuOH diluted in water.
The NMCs samples exhibited high electrochemical performance in aqueous electrolyte due to the synergistic effect between porous Ni(OH 2 nanosheets and MoS2 nanoplates.
As a result, the synthesized PU/SIS samples exhibited high resilience and were capable of enhancing cell viability with no evidence of cytotoxicity.
However, the CBS and CBL samples exhibited high water absorption and thickness swelling, but the addition of guayule bagasse reduced both properties to similar levels as the wood fiber.
Separate class-models for fresh and frozen-then-thawed samples exhibited high sensitivities (0.94 to 1.0) but lower specificities (0.33 0.80 for fresh samples and 0.41 0.87 for frozen-then-thawed samples).
Samples exhibited high scavenging activity of ABTS cation radical (TEAC ranging from 2.488 to 9.416 mMeq. Trolox) and DPPH free radical with IC50 values ranging from 0.915 to 0.062 mg mL−1.
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As described in Fig. 1A, among the total fresh samples, 10 HCC samples exhibited higher GNA13 expression compared to that in the corresponding normal tissues.
The aged samples exhibited higher stress response as compared to the unaged samples.
Both un-doped and Ag-doped TiO2-coated samples exhibited higher corrosion resistances than uncoated samples.
All SOF samples exhibited higher concentration of resins followed by saturates, while aromatic and asphaltene fractions were small.
The results of the micro-tensile tests indicate that the grain boundary engineered samples exhibited higher ductility than the conventionally processed samples.
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