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Stoichiometric (kinetically controlled) solutions occur when the incoming gas flux is sufficiently low (high).
However, some of them have certain degree of preference for more controlled solutions.
The implemented system has been characterised against controlled solutions of fluorophores and tested in vitro with biological samples.
The kinetically controlled solutions consist of a preheat zone at the upstream side of the front and a thin reaction zone at the downstream side.
For each wave structure there exist stoichiometric, and kinetically controlled solutions in which the smolder velocity is determined, respectively, by the rate of oxygen supply to the reaction site and by the rate of consumption in the reaction, i.e., by the kinetic rate.
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Patient was excluded if the responses to control solutions were not adequate.
After 5 days, the particle suspensions were returned to control solution to allow re-equilibration for 3 days, with the control solution also replaced daily.
Return to control solution did not shorten periods even after four hours.
Following the return to control solution, the mIPSC time-decay constants rapidly returned to pre-isoflurane values (Figure 4D).
After returning to control solution for >8 min the fast overshoot recovered.
Usually, commercial control solutions for superheat control still use PID controllers as a standard.
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