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The mean cavity size and depth increased with increasing strain.
It was found that the maximum recovery of the cells were at 9-μm cavity size.
The filling ratio increased with the increases of dimensionless cavity size, polymer thickness, and temperature.
It was also noted that the cavity size affected the amplification factor and resulting wave speeds.
These include cavity size, metal ion topography, and donor group orientation.
Thermally rearranged (TR) polymers are microporous with high fractional free volume and narrow cavity size distribution.
The wetted area was obtained by calculating the cavity size and axis.
A modulation of the cavity size seems strongly affect the reactivity of these systems.
A reasonable agreement has been found between computed and experimental results on cavity size hysteresis.
The model also provides information on the effect of initial cavity size and location.
We note that the mode volumes decrease much more sharply than Q factors do with decreasing physical cavity size.
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CEO of Professional Science Editing for Scientists @ prosciediting.com