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1 olids (aramid fibers, and carbon fibers, and glass fibers).
2 in amorphous state of KPSe(6) bulk glass and glass fiber.
3 ses through the etched tip of a GeO(2)-based glass fiber.
4 les running down the length of a fine silica glass fiber.
5 idization, bringing the Pd@SiO(2) NPs to the glass fiber.
6 AP) kinases in the induction of TNF-alpha by glass fibers.
7 urons by constricting single axons with fine glass fibers.
8 ibers but not by titanium dioxide or MMVF-10 glass fibers.
9 s were close to those reinforced solely with glass fibers.
10 oss performance demonstrated by chalcogenide glass fibers.
11 As reported by the motion of an attached glass fiber, an active hair bundle from the bullfrog's s
12 urface wetting properties of the hydrophilic glass fiber and the hydrophobicity of surrounding surfac
13 th high-performance synthetic fibers such as glass fibers and carbon fibers as well as to provide uni
14 ulated individual hair bundles with flexible glass fibers and measured their responses with a tempora
15 he atomization of metals, the manufacture of glass fibers, and the formation of elongated structures
16 s adsorbed onto 3-microm-diameter, 4-mm-long glass fibers, and the selectin ligand, sialyl Lewis(x),
18 NF-kappaB pathway for TNF-alpha production, glass fibers are able to activate c-Jun through MAP kina
19 tructures were achieved by using cylindrical glass fibers as a membrane substrate and grafting silica
20 rformance, natural fibers can't compete with glass fibers as structural reinforcements in polymer com
21 Excitatory force steps imposed by a flexible glass fiber attached to the bundle caused an initial mov
22 y; HR-released histamine was quantified by a glass fiber-based fluorometric method; passive HR-IgE-st
24 n oligonucleotide as the detection target, a glass fiber-based sensor is fabricated by covalently con
25 n Preliminary results showed that the use of glass-fiber-based guidewires for evaluation of MR imagin
29 eak shape of early eluting nucleotides; (ii) glass fiber disc solid-phase extraction of the reaction
30 hnology, which immobilizes phytochemicals on glass fiber disks, reducing compound degradation, allowi
31 g of a piezoresistive carbon-nanotube-coated glass fiber embedded in a microcapillary are assembled a
35 onate were captured by passing air through a glass fiber filter disk within a disposable paper spray
36 tated, radiolabeled prenylated proteins on a glass fiber filter for analysis by scintillation countin
37 cellulose filter and (2) an acid-impregnated glass fiber filter for NH(4)(+) collection in both labor
47 onsists of using simultaneously two kinds of glass fiber filters to harvest [3H]thymidine-prelabeled
49 e particles are then collected by one of two glass fiber filters which are alternately sampled, washe
50 ne filters were far less substantial than to glass fiber filters, but were still notable given the lo
52 red light from ambient particle deposits on glass fiber filters, we estimated hourly ambient BC conc
54 f wind turbine (WT) blades and polymers with glass fibers (GF) to make skins of the blade components.
56 mposite material consisting of discontinuous glass fibers in a polypropylene matrix is studied at the
58 ped based on the biofunctionalization of the glass fiber inserts either with cytochrome c or horserad
60 onstrates that surface oxidation of metallic glass fibers is a viable strategy to enhance performance
61 agar surface) in the presence and absence of glass fibers known to facilitate the dispersal of PHE-de
62 The resulting mixture was infused into E-glass fiber mats to fabricate multiscale composites usin
63 g adapter along with a water non-dissolvable glass fiber membrane (GF/F) instead of a water dissolvab
65 a novel DNA extraction method, which uses a glass fiber membrane, a disposable assay card that inclu
66 was used as the label and was coated onto a glass fiber membrane, which was used as a conjugate pad.
67 -labeled probe types in a biplexed NAAT in a glass fiber membrane; and (2) analyzing the differential
69 These batteries are commonly assembled with glass fiber membranes, which face significant challenges
70 of carboxylic acid-rich polyelectrolytes in glass-fiber membranes in 96-well plates allows functiona
71 This research describes the use of affinity, glass-fiber membranes in a 96-well-plate format for rapi
73 erials (cellulose/polyethylene terephthalate/glass fiber, nontreated/chemically treated) as well as p
74 technologies use intravascular placement of glass fiber-optic catheters that pose risks of blood ves
75 as developed, incorporating strong synthetic glass fibers over a weak core of natural hemp fibers.
76 ld nanoparticle conjugate was sprayed onto a glass fiber pad that was placed adjacent to a sample cha
77 ofluidic approach for sampling purposes, the glass-fiber pad (sampler) is immersed in a container wit
78 aporation-induced optical artifact in heated glass fiber pads due to changes in the refractive index.
79 des a semiautomated procedure, using 96-well glass fiber plates for the extraction of viral nucleic a
81 n, all studies indicate that using aluminum, glass-fiber reinforced plastic, and high strength steel
82 on methods on the mechanical properties of E-glass fiber-reinforced epoxy resin composites (GFRPs).
84 ng vitrimer resin enabled the preparation of glass fiber-reinforced vitrimer composites using an indu
85 developed lightweight fire-retardant carbon/glass-fiber-reinforced polymer epoxy sandwich that inclu
87 9 % higher discharge capacity than that with glass fiber separator at 20 mA g(-1) and much better cyc
88 paper-based electrochemical platform with a glass-fiber strip in order to integrate easily a samplin
89 The first capture layer consisted of a GF/D glass fiber substrate, preloaded with cancer specific an
92 iance PU foams were reprocessed while adding glass fibers to produce composites with a tunable elasti
93 of a new micro-SORS sensor, which uses bare glass fibers to transfer the laser radiation to the samp
94 ia borane solution, the Pd@SiO(2) NPs on the glass fiber trigger the catalytic conversion of resazuri
96 us study, we demonstrated that the length of glass fibers was a critical determinant of fiber potency
97 s APSe(6) (A = K, Rb), we can obtain optical glass fibers with strong, intrinsic, and temporally stab