Exact(60)
Induction times increased with decreasing supersaturation with respect to nesquehonite.
Figure 4 The algorithm for determining induction times.
Induction times for pyrite formation showed a similar behavior.
It can be seen from the induction times listed in Tab. 2 that at these temperatures the induction times become more important.
Increasing pressure results in smaller induction times and ignition, followed by a detonation wave.
A close correlation is established with pitting susceptibility determined by a statistical analysis of induction times.
This model enables the prediction of induction times, improving working and safety conditions.
Comparable induction times were obtained for the OiC method under low ozone flux conditions.
The numerical data of induction times are given in Table 2.
We derive functions that model the induction times and the energy release rates predicted using the chemical kinetics data set.
The values of induction times (IT) and effective induction times (EIT) as well as the conventional expression of the antioxidant character (vitamin C nmol equivalents) are presented in Table 1.
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