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We tested the following ventilator modes: volume (VCV) and pressure controlled ventilation (PCV, EVITA-4 and Servo ventilator 900 C only), the electromechanical lung simulator LS 1500 (Drägerwerk AG, Germany) consisting of a motor driven bellow.
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(2) MV modes: volume-controlled ventilation (VCV); pressure-controlled ventilation (PCV); bilevel mode; pressure support ventilation (PSV); other.
(c) The mode volume.
The integration runs over the entire mode volume V.
Consequently, the mode volume of nanocavity mode becomes large, as shown in Figure 2c.
We reveal that the mode volume is approximatively proportional to the slab thickness.
We find that the mode volume is approximatively proportional to the slab thickness.
The resonant wavelength and mode volume remained nearly constant across all temperatures.
This excellent agreement validates our method of Equation 8 for calculating the mode volume.
It is found that the mode volume monotonously expands with the increasing slab thickness.
The tool provides three view modes to visualize 3D velocity distributions: scatter mode, volume mode, and isosurface mode, which are presented in the next section.
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