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Defect detection loses its significances without classification in situations where pseudo defect percentage is significant and/or variable.
We propose a technique for the analysis of manufacturing yield of nano-crossbar architectures for different values of defect percentage and crossbar-size.
In Fig. 3, we show the intrinsic engineering constants of V-MoS2 membranes versus the defect percentage at 0 K, compared with those of the perfect MoS2 sheet.
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The total morphological defects percentages can be mainly attributed to the higher PCD levels as seen by the determination factor (0.93) and the regression equation (total morphological defects = 11.69 +11.69CD).
The bone defect repair percentage was calculated by comparing the remaining defect volume with the original drill hole defect.
The bone defect repair percentage is a measure of the degree of repair compared to the original defect volume.
However, when relative differences within a single patient are of interest, e.g. when assessing defect areas (percentage of LV with VT below a reference value), population-averaged metabolite corrections can be considered.
Eight studies presented the final amount of new bone formation within the defect in percentage and therefore seemed to be appropriate for comparison (Table 2).
This is found to be higher when compared with experimental values and this difference is explained based on structural defects and percentage of dopant used during synthesis.
The effects of worn defect length, wear percentage, drillstring diameter, and casing thickness on the URS are investigated.
The calibrated images were measured manually for tooth surface area, defect area and percentage of tooth surface affected by the defect (Fig. 2).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com