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Through detailed investigations of the molecular dynamics in the tertiary mixture, we find novel modes of long-range diffusion in the crystal.
When using gas mixture we find only the lowest meta-stables.
Furthermore, by combining several DTrees in a mixture, we find models specific to groups of co-regulated genes displaying distinct differentiation pathways reflected by the distinct dependence structures.
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However, although we added relatively large amounts of trace elements (e.g., SynCLAP 6, 300 μg/g of each trace element, see Table 3) to the initial starting material mixture, we found that the resulting flux-grown apatites did not contain high concentrations of trace elements (generally well below 10 ppm of each trace element).
When comparing the maximum PER recorded for an odorant during acquisition trials with the PER recorded when the odorant was learnt as part of the complex mixture, we found that, for example, butanal was learnt very well on its own (96.0% PER), but only 21.4% of bees responded to butanal, when it was learnt as part of mixture 2 (Table 4).
From denatured SDS-PAGE analysis of the reaction mixture, we found that BrC6K showed higher PEPC efficiency (73%) than BetY (57%), which has the same leaving group as BrC6K.
However, when liposomes of differing diameters were added to the reaction mixture, we found that Arf6 K3E showed a slight increase in the GTP-loading rate, but this increase was independent of liposome diameter.
When exposing two different Daphnia pulex genotypes (a cadmium-sensitive and a cadmium-tolerant one) to cadmium, the toxic cyanobacteria Microcystis aeruginosa, and their mixture, we found that observations at the transcriptomic level do not always explain observations at a higher level (growth, reproduction).
For polydisperse mixtures, we find that depending on the shear rate, different segregation mechanisms can take place.
For some mixtures we find the maximum net power when the temperature glide of condensation matches the temperature increase of the cooling water, while for other mixtures there are large differences between these two parameters.
In desalination experiments with salt mixtures we find a threefold enhancement for K+ over Na+-adsorption, which shows the potential of NiHCF intercalation electrodes for selective ion separation from mixed ionic solutions.
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