Kidneys can dump through lots of unwanted stuff through a porous membrane, then pull back the water and whatever the body actually wants through a less porous membrane, leaving the unwanted stuff behind.
32.
Kidneys can dump through lots of unwanted stuff through a porous membrane, then pull back the water and whatever the body actually wants through a less porous membrane, leaving the unwanted stuff behind.
33.
The porous membrane retaining the Nitrosomonas are carefully attached to a Teflon membrane of the oxygen probe so that the microbes are trapped between the two membranes, covered with nylon net and fastened with rubber rings.
34.
Interviews in suburban Miami and Detroit followed a similar pattern, conveying a sense that in the porous membrane of entertainment options open to teen-agers, even stepped-up enforcement of the R policy would have a minimal impact on shielding youngsters from objectionable fare.
35.
The fresh water flows through the cave passages and empties into the Caribbean, Bogaerts said, while denser, warmer saltwater from the sea enters the river system through deeper passages as well as through the limestone itself, which functions as a porous membrane.
36.
In HPLC the sample is forced by a liquid at high pressure ( the mobile phase ) through a column that is packed with a stationary phase composed of irregularly or spherically shaped particles, a porous monolithic layer, or a porous membrane.
37.
During normal inspiration in a human s mechanical strain ( valued at approximately 10 % ), significantly increases the rate of nanoparticle translocation across the porous membrane, when compared to a static version of this device, and to a Transwell culture system.
38.
:Dongeun Huh from Wyss Institute for Biologically Inspired Engineering at Harvard describes their fabrication of a system containing two closely apposed microchannels separated by a thin ( 10�m ) porous flexible PDMS . The device largely comprises three microfluidic channels, and only the middle one holds the porous membrane.
39.
Taking advantage of the negligible contact line pinning at the liquid-liquid interface, the droplet response in EWOLF can be electrically addressed with enhanced degree of switchability and reversibility compared to the conventional EWOD . Moreover, the infiltration of liquid lubricant phase in the porous membrane also efficiently enhances the viscous energy dissipation, suppressing the droplet oscillation and leading to fast response without sacrificing the desired electrowetting reversibility.