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As shown in Figure 3, Group AR specimen showed higher corrosion potential and lower corrosion current density values than the Group Ti specimen which means that the Group AR specimen has higher corrosion resistance than the Group Ti specimen.
As shown in Figure 1, Group AR specimen showed higher OCP values than the Group Ti specimen, which means Group AR specimen has higher corrosion resistance than the Group Ti specimen.
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As shown in Additional file 4, 9 of 51 specimen had higher expression of Sirt3 in tumor compared with paired peritumoral tissues, by using GAPDH as an internal control.
It is revealed here that HA-3 wt% Cu nanocomposite coated on Ti-6Al-4V substrate with more efficient antibacterial properties (HA-3 wt% Cu vs. HA-1 wt% Cu) and better cytocompatibility (HA-3 wt% Cu vs. HA-5 wt% Cu) compared to other specimens, has higher potential to be applied as a promising bone implant with antibacterial capability in the bone tissue engineering.
IS 456 with SF specimen had high, ultimate load-carrying capacity and lower deflection than IS 456 control specimen by 16%%.
All specimens having higher grades (2+ and 3+) by ZN were positive by FDA staining.
Plain cement concrete specimens have higher compressive strengths at any age when compared with blended cement concretes.
Furthermore, by using lattice webs, the specimens had higher initial stiffness.
However, it was noted that these specimens had higher initial porosity levels, and a finer microstructure, than coatings containing the other stabilisers.
As a result, it was found that the amorphous specimens had higher tenacity and higher permeability of hydrogen than its crystallized form.
Finally, by comparing the existing data in the literate, it is found that the smaller cement paste specimens have higher modulus/tensile strength ratio, which indicates that they are able to have more strain at the peak load.
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CEO of Professional Science Editing for Scientists @ prosciediting.com