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It was found that the microhardness of the treated samples was much higher.
The results indicated that the corrosion current density of the FA/Nb coated samples was much lower than the obtained values for the FA coated SS substrates.
The results clearly demonstrated that the specificity of the Ab produced by different protein samples was much higher than that of the Ab produced by a single sample.
We observed that pooling RNA from compounds of a class substantially increased power to detect significantly regulated genes between classes because variability between pooled samples was much lower.
The corrosion resistance of the coated samples was much higher than that of bare magnesium, especially in the initial period, due to the barrier effect provided by the coating.
In addition, the wear resistance and load capacity of the nitrided layers on the SMAT samples was much higher than that of the un-SMAT samples due to the thicker S phase case and the gradient nitrogen diffusion layer.
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The samples were much more active than a commercial one due to their higher surface areas.
Hardness values for Ti + N hybrid ion implanted and W implanted samples were much higher than those for unimplanted ones.
The specific capacities and rate performances of both NCSs samples were much higher than that of commercial mesocarbon microbeads (MCMBs).
The laser remelted Ni Cr B Si sample exhibited the highest wear resistance, and the laser remelted samples were much better than the as-sprayed samples.
The oxidation kinetics showed that the weight gains of the pre-oxidised samples were much less than in the controlled samples.
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