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Wells with no color change or strain growth, or with strain growth but no color change, were classified as containing unknown strains without P-solubilizing ability.
This difference in strain growth further increases with increase in age of concrete.
In conclusion, strain, growth medium and conditioning film all affect biofilm formation.
Finally, mutants and R-control strain growth rate were monitored by measuring dry cell weight (DCW) and OD595 values.
The culture stability of the strain growth on submerged fermentation medium was also examined at 45 °C for 48 h.
The differences in strain growth between section above and below N.A were more in beams of larger span than in beams of smaller span.
Objective of this paper is to present the experimental findings of time-dependent strain growth in reinforced and pre-stressed concrete beams.
As shown in Fig. 1c, glycerol was the suitable carbon source for SrtA expression which showed the best strain growth and enzymatic activity (1446.7 U/mg DCW).
In this paper, it is shown that nonlinear modal coupling is another important cause of strain growth in spherical containment vessels.
The inhibition of tannin in strain growth was investigated, and the effect of tannin was negligible when the tannin concentration was lower than 1 g/L in medium.
Methods for preventing the strain growth due to nonlinear modal coupling are discussed, which provide guidelines for the engineering design of spherical containment vessels.
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