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Representative thermograms from differential scanning calorimetry experiments for the mixtures: (1) pure DPPC, or DPPC containing 5 mol% (2), 10 mol% (3), 20 mol% (4), or 30moll% (5) of oleic acid (a), eicosapentaenoic acid (b) and docosahexaenoic acid (c).
Figure 3: Average carbon and electron distributions of the products from glycerol fermentation during (1) pure cultures of C. pasteurianum and (2) co-cultures of G.sulfurreducens and C. pasteurianum.
Experiments were run for mixtures with stoichiometric CH4/O2 ratio, changing the oxygen air enrichment factor, E = O2/(O2 + N2), from 0.21 (air) to 1 (pure oxygen).
The sample prepared under optimized conditions showed a high surface area of 175 m2 g− 1, pure tetragonal crystallite phase and a mesoporous structure after calcination at 600 °C for 5 h.
Then, the quantification capability of UNE-LPPI was checked with: 1) pure chemicals, such as 9,10-phenanthrenequinone and 1,4-naphthoquinone dissolved in solvent; 2) soil powder spiked with different amounts of phenanthrene and pyrene.
Thus, three different types of carbon fibers/epoxy composites were prepared, which NR is introduced in three ways: (1) pure matrix for comparison, (2) adding NR in the matrix, (3) adding NR in the sizing.
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Experiments 1 (pure-list design) and 2 (mixed-list design) indicated that some guidance regarding the strength of the associative relationship between the test cue and target greatly improved strong-cue target production relative to no guidance, and that this effect was attributable to improved generation, as well as recognition.
The four genetic cross types reared in the hatchery (n = 4 pure-hatchery, 1 pure-wild, 3 hybrids with wild-born mothers, 4 hybrids with hatchery-born mothers) had similar migratory behaviour and body size.
The sample prepared under optimized conditions showed a favorable surface area of 251.5 m2 g−1, pure γ-alumina crystallite phase and a methanol conversion of 78.2%.
Additionally, reasonably high flux (8.7 L m−2 h−1 bar−1, (pure water permeability (PWP))) approaching those of commercial NF membranes was obtained due to the relatively loose structure of the composite layer.
The B+ C+ ion ratio during deposition was varied between 0 1 (pure carbon) and 1 0 (pure boron), and the resulting composition of the films matched this ratio, as observed by X-ray photoelectron spectroscopy (XPS).
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