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Cross-sectional tensile strength profile for 30 wt GFRP composites. , Long GFRP , P7-30FG-A729H A, P7-30FG-A729G X, P-30FG-0100.

Cross-sectional TIi.Yl image of the NiAl -y-Al203 interface showing facetted voids after oxidation for 0.1 h at 950 C.

Cross-sectional transmission electron micrograph of GaN grown on a columnar SiC substrate. The SiC surface was annealed in hydrogen at 1200 C for 10 min. A thin GaN buffer layer was grown first at 850 C, followed by a thick GaN overlayer at 1030 C. Surface contaminants not removed by hydrogen etching were found to produce small voids in the buffer layer

Cross-sectional transmission electron micrograph of GaN grown on a TiN interlayer. Voids observed in the GaN overgrown layer are likely induced by void-related thermal stress, since no stacking faults or voids are observed in GaN growths on a SiN interlayer

Cross-sectional transmission electron micrograph showing dramatic reduction in dislocation density through recombination at the initial stage of GaN growth

Cross-sectional transmission electron micrograph, viewing along the direction, showing . Lateral growth of GaN imaged here was carried out by HVPE at 1100 C by T. F. Kuech and his group at the University of Wisconsin

Cross-sectional transmission electron microscopy images of two Au DIP silicon oxide hetero-structures. While the An contact prepared at 70 C and a rate of 0.35 A min shows strong interdiffusion. Note that individual lattice planes of the DIP film can be resolved. Figures by courtesy of A. Durr and from Ref. with permission.

Cross-sectional view

Cross-sectional view , 1437, 2005, with permission from IEEE

Cross-sectional view and top-view of various photoreactor types with different arrangement of the lamps. A

Cross-sectional view of

Cross-sectional view of a 1-in., 1-out chisel bevel-tipped probe as described by O Rourke and Livingston ,

Cross-sectional view of a 61-filamentary wire.

Cross-sectional view of a bank showing a soil pattern to minimise erosion and encourage vegetation growth on the outer slope. Adapted from

Cross-sectional view of a bank showing suggested dimensions. Adapted from

Cross-sectional view of a barrier melting section

Cross-sectional view of a bioerosion-regulated hydrocortisone delivery system, a feedback-regulated drug delivery system, showing the drug-dispersed monolithic bioerodible polymer matrix with surface-immobilized ureases. The mechanism of release and time course for the urea-activated release of hydrocortisone are also shown.

Cross-sectional view of a bioresponsive insulin delivery system, a feedback-regulated drug delivery system, showing the glucose oxidase-entrapped hydrogel membrane constructed from amine-containing hydrophilic pol5mier. The mechanism of insulin release, in response to the influx of glucose, is also illustrated.

Cross-sectional view of a bordered pit-pair. A

Cross-sectional view of a bordered pit-pair. A pit aperture B

Cross-sectional view of a buried garbage can. A,D-Tygon tube and diffuser used for aeration B--ground level C--110L plastic garbage container.

Cross-sectional view of a center-fed, disk-shaped mold cavity. Indicated schematically are the frozen-skin layer that can form during filling, as well as the nipple -shaped velocity profile.

Cross-sectional view of a coaxial cylinder electron-capture detector.

Cross-sectional view of a commercial HDS reactor containing four fixed-bed reactors with interstage cooling quenching quenching is necessary to limit the temperature increase for this exothermic reaction. Adapted from UOP LlC.

Cross-sectional view of a commonly used sample loop injector.



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