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Fig. 1 a Proposed design of semiconductor gas sensor array, and b fabricated semiconductor gas sensor array.
Figure 2 (a) Sketch of the structure of the array, and (b) sketch (cross-section view) of the unit cell for simulations.
Fig. 1 The operation of crossbar circuits of binary memristors for pattern recognition with a one crossbar array and b two crossbar arrays.
Figure 2 a Raman spectrum of the carbon-coated nanorod array and b TEM image of an individual carbon-coated SnO2 nanorod.
Figure 2 SEM images of (a) an array; and (b) a close-up view of silicon nanostructures formed with a combination of spacer method and deep reactive ion etching.
Figure 1 a Schematic diagram of as-obtained carbon-coated SnO2 nanorod array and b XRD of the as-obtained product on alloy substrate; c SEM image of array.
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The stem-loop RT-PCR based TaqMan Rodent MicroRNA Arrays (Applied Biosystems, Foster City, CA) were used representing 585 mature miRNA present in the Sanger miRBase v12 in a two-card set of arrays (Array A and B).
Comprehensive coverage of Sanger miRBase v10 was enabled across a two-card set of TaqMan® MicroRNA Low Density Arrays (TLDA Array A and B) for a total of 518, and 303 unique assays, specific to rat miRNAs, respectively.
(a) QNP arrays and (b) wet chemically etched SiNW arrays.
Illustrations of (a) bare TiO2 nanotube arrays and (b) TiO2 micro-flowers for a DSC photoelectrode.
a InP NW arrays and b the corresponding effective medium layer with the same thickness.
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