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In comparison with the large differences among the optimum T values identified for different plant species, differences in the optimum T values for different traits of the same species were only small (Table 4).
This finding might be explained by the fact that differences in the optimum T values identified for different traits of the same plant species can only be due to differences in the extent of population structure and relatedness for the traits under consideration generated by natural or artificial selection.
There are optimum ranges of the diameter of the inner ball, tightness and gap for BBD, and the effects of these parameters on the damping performances of BBD in gravity and zero gravity environments are similar in evolving trends, and the values are without big differences in the optimum ranges.
Could one say that all ecosystems have no stability because of the inherent differences in the optimum environment for each species in the ecosystem?
There are minor differences in the optimum attachment substrate for larval cells versus embryonic cells, but overall, the culture conditions, cell viability and cell yields of our larval cell isolation method are very similar to those of embryonic cell isolation as described by Strange and colleagues [5], [6].
The purified enzyme from our strain did not show differences in the optimum pH and pH stability; consequently, the lipase could be considered a resistant alkaline lipase.
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The difference in the optimum refrigerant charge between the two operating modes was solved by installing a liquid receiver.
The results indicated a statistically significant difference in the optimum asphalt binder content from the two mix design methods.
The difference in the optimum grain size and nitrogen content for obtaining the highest B8 in both annealing methods was explained by assuming that Tcr determines the B8 in both annealing methods.
The optimal conditions obtained from the model, taking into account simultaneously the five responses, were quite similar for OTP and OML, with 70% amplitude and 15 min for both biomasses and a slight difference in the optimum concentration of ethanol.
The difference in the optimum location when the objective function is the pull-down time (and second law efficiency) and COP is due to the fact that the first law analysis does not fully capture the thermodynamic losses due to changes in heat exchangers' areas, which stresses the importance of a system second law assessment for realistic results.
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CEO of Professional Science Editing for Scientists @ prosciediting.com