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The interseting results of such an investigation for 3 differently treated existing concrete substrates are selected and presented.
Nanolaminates prepared on quartz substrates are selected as the test samples to remove the spatial resistivity distribution, and Fig. 9 displays the testing results.
Although the coupling of Nrd1 Nab3-dependent termiNrd1 Nab3-dependentterminationn in S. cerevisiae is quite with undeRNAoodestabilizationlear how substrates are selected for degradatinn in other organiS.s.
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Thirty-four substrates were selected for testing out of 194 halogenated compounds.
In present work, different substrates were selected to study the wear and adhesion behavior of DLC coatings.
The single-crystal MgO substrates were selected for the epitaxial growth of the superlattices because of their low frequency-dependent dielectric constant (approximately 9.7) and low loss tangent values (approximately 3.3 × 10−7).
In order to study the relationship of the surface property of the substrates and the dispersion of the catalyst NPs, three substrates were selected for comparison: (a) bare substrate (contact angle is 32°); (b) the substrate modified for 1 min at room temperature (contact angle is 71°); (c) the substrate modified for 30 min at 150 °C (contact angle is 110°).
Three peptidylglycine substrates were selected for study.
Thus, these substrates were selected for further optimization steps.
These substrates were selected for being readily available chemicals for use in the laboratory.
The best substrates were selected to determine kinetic parameters of hydrolysis by LTA4H.
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