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In addition, the pH was found to be optimum at 6.0 and the activity decreased rapidly at pH levels other than 6.0.
The proteolytic activity was found to be optimum at pH 9.0 and 60 °C while optimum amylolytic activity was recorded at pH 6.0 and 70 °C respectively.
On the other hand, the removal of MB onto TISW was found to be optimum at pH 12.0 due to the low proton cloud densities on the surface of TISW.
Experimental parameters affecting the sensor response such as pH, modifier concentration and electro-deposition scan rate were found to be optimum at 7.0, 2 mg mL−1 and 80 mV s−1, respectively.
This effect was concentration-dependent and resulted to be optimum at 15 μM C1P.
Our results are in agreement with those from Shott et al. [ 16] and Varro et al. [ 19] in which stability of specimens for CD4 testing was determined to be optimum at Day 6 and Day 5, respectively, at room temperature (change difference <10%); however, in these studies blood specimens were not tested after longer periods of storage.
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Apparently in this study, cellulase activity of B. subtilis was optimum at 50 °C.
It indicates that the performance of Pd NPs/GCE is optimum at pH 7.4.
Streptomyces sp. and Bacillus sp. strains were optimum at pH 7.0.
Enzyme activity was optimum at a temperature of 37 °C and a pH of 7.5.
Transverse breaking strength was optimum at 20% sludge, indicating 22.9% increment compared to the conventional tile.
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