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The control setup uses a hybrid continuous-batch operation of the crystallizer, in which the solid phase is operated in a batch mode, whereas the liquid phase is operated in a continuous mode maintaining a constant volume in the reactor.
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When this happens, you will have to jump into an emergency response mode, maintaining an open airway.
Up to CF 4 the non-UTMP mode maintained a slightly better flux and process time than the UTMP mode, but reached the minimally acceptable flux (below 0.005 kg m−2 s−1) at CF 6. Depending upon the ΔPTM maintained, the UTMP mode approached the minimal flux at CF 7 or 10 depending upon the combination of ΔPTM and CFV used.
The HEADING mode maintained a constant magnetic course selected by the pilot.
In order to mitigate evaporation of the base fluid during sonication, a cooling system was employed during the continuous mode sonication, maintaining a sample temperature at about 20°C.
Alexa Fluor 488 hydrazide (200 μM) was added to the intracellular recording solution, and recordings were maintained for ∼20 min in current-clamp mode while maintaining a negative holding potential (<−60 mV).
Recordings from NPY interneurons at the border of SLM and SR were performed in current-clamp mode, maintaining the membrane potential between –65 and –70 mV (injection of 0 100 pA).
After inoculation, the culture was left in batch mode maintaining 50% oxygen saturation until OD600 reached around 80% of steady-state OD600 and then switched to chemostat mode either at a dilution rate of 0.15 h−1 or 0.01 h−1 corresponding to doubling times of 4.6 h and 69 h respectively.
A standardized method was used for a standardized lung volume method after 1 h of mechanical ventilation: (1) sufficient suctioning for mouth, nasal, and airway secretions; (2) 10 cm H2O (0.98 kPa) plateau airway pressure (Pplat) by increasing tidal volume (V T ) under VCV mode and 10 cm H2O inspiratory pressure under PCV mode, maintaining ventilation and oxygenation for 20 s.
The association of these two stages allows reaching a gain from 22.4 dB to 31 dB, with a power consumption ranging from 171 mW (low-gain mode) to 196.2 mW (high-gain mode), while maintaining an output power greater than 15 dBm at 2.4 GHz.
The finite element model also shows that the use of a high shear attenuation polymer filler damps out the unwanted, low frequency modes whilst maintaining a reasonable impedance magnitude.
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