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A spinal disk consists of rings of ligaments around a gel-filled center.
Each disk consists of p-on-n, silicon wedges, with ac-coupled mini-strips on 75 μm radial pitch and projective length in the phi direction that increases with radius.
This disk consists of five overlapping different colored laminated disks that can be rotated around a central point to form a pie chart.
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A disk consisting of periodic shrouded blades is used to simulate the bladed disk of a turbo-rotor.
The bore of the contoured disk consisted of fine grains to maximize strength and fatigue resistance at lower temperatures.
The rim microstructure of the disk consisted of coarse grains for maximum resistance to creep and dwell crack growth at high temperatures up to 704 °C.
This is obtained by using a weighting disk, consisting of five interlocking coloured disks that can be rotated around a central point to form a pie chart.
Circular disks consisted of plasmonic material and biomass micron particles were obtained through pressing AgNPr treated WPs.
The disks consisted of the assembly of WPs and AgNPrs were used for SERS substrates to detect trace thiram in ethanol solution.
The geometrical changes induced in the PE disks consisted of creep, because the calculated internal von Mises stress at the bearing side of all disks and that at the backside of the 3-mm thick disks exceeded their actual yield strengths.
The disk treadmill consisted of a transparent disk (thickness 2 mm, diameter 260 mm) made of poly (methyl methacrylate) secured on an axis with low-friction ball bearings (SKF Explorer Bearing 608).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com