Results 161 to 170 of about 31,817 (210)
Xue model exploration for oxytactic microbes in radiative MHD hybrid nanoliquid using machine learning technique. [PDF]
Shaaban SM +6 more
europepmc +1 more source
Retraction Note: An optimal feed-forward artificial neural network model and a new empirical correlation for prediction of the relative viscosity of Al<sub>2</sub>O<sub>3</sub>-engine oil nanofluid. [PDF]
Hemmat Esfe M, Toghraie D.
europepmc +1 more source
Intelligent predictive neural network analysis on two phase bioconvection flow of dusty hybrid nanofluid with Cattaneo Christov flux model and melting phenomena. [PDF]
Raza A +6 more
europepmc +1 more source
The present study examined the performance of different modifications of identical solar stills (SSs) with heating/cooling and nanofluid. The first system is SS with thermoelectric heating (TEH) in the basin.
Sadegh Aberoumand +2 more
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Nanofluidics: Fundamentals and applications
TRANSDUCERS 2009 - 2009 International Solid-State Sensors, Actuators and Microsystems Conference, 2009The paper gives a brief overview of nanofluidic theory, with an emphasis on transport processes in nanochannels. It subsequently reports on recent progress in nanofluidic research in the BIOS/Lab-on-a-Chip group, especially DNA electrophoresis in 20-nm high nanoslits, AC electroosmotic flow in nanochannels, and two-phase flow in nano/microfluidic ...
Eijkel, J. C.T. +4 more
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Nano Letters, 2007
We present a nanofluidic diode that at voltage range -5 to +5 V rectifies ion current with degrees of rectification reaching several hundreds. The diode is based on a single asymmetric nanopore whose surface was patterned so that a sharp boundary between positively and negatively charged regions is created. This boundary defines a zone that is enriched
Ivan, Vlassiouk, Zuzanna S, Siwy
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We present a nanofluidic diode that at voltage range -5 to +5 V rectifies ion current with degrees of rectification reaching several hundreds. The diode is based on a single asymmetric nanopore whose surface was patterned so that a sharp boundary between positively and negatively charged regions is created. This boundary defines a zone that is enriched
Ivan, Vlassiouk, Zuzanna S, Siwy
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Chem. Soc. Rev., 2010
Ionic rectifying effect is a unique ion transport phenomenon observed in certain types of nanofluidic devices and cannot be implemented in microfluidics. Analogous to a diode in solid-state electronics, these diode-like nanofluidic devices can be used to turn the ionic flow on and off depending on the polarity of the applied electric-field.
Li-Jing, Cheng, L Jay, Guo
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Ionic rectifying effect is a unique ion transport phenomenon observed in certain types of nanofluidic devices and cannot be implemented in microfluidics. Analogous to a diode in solid-state electronics, these diode-like nanofluidic devices can be used to turn the ionic flow on and off depending on the polarity of the applied electric-field.
Li-Jing, Cheng, L Jay, Guo
openaire +2 more sources
2009
Nanofluids are a new class of fluids engineered by dispersing nanometer-size structures (particles, fibers, tubes, droplets) in base fluids. The very essence of nanofluids research and development is to enhance fluid macroscale and megascale properties such as thermal conductivity through manipulating microscale physics (structures, properties and ...
Quintard, M, Wang, L
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Nanofluids are a new class of fluids engineered by dispersing nanometer-size structures (particles, fibers, tubes, droplets) in base fluids. The very essence of nanofluids research and development is to enhance fluid macroscale and megascale properties such as thermal conductivity through manipulating microscale physics (structures, properties and ...
Quintard, M, Wang, L
openaire +3 more sources
Chaos in Nanofluidic Convection of CuO Nanofluid
2017This paper deals with the nonlinear stability dynamics of nanofluid convection under magnetic and temperature variation for Copper Oxide (CuO) nanofluid, which is used as coolant in heat transfer applications. The system comprises a cavity in which the fluid layer is subjected to external magnetic field and heat exposure.
Rashmi Bhardwaj, Saureesh Das
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2016
There has been significant growth in the field of nanofluidics, where nanoscale analytical instruments employ micromachined features and are able to manipulate fluid samples with high precision and efficiency and have many advantages over their conventional (larger) analogues.
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There has been significant growth in the field of nanofluidics, where nanoscale analytical instruments employ micromachined features and are able to manipulate fluid samples with high precision and efficiency and have many advantages over their conventional (larger) analogues.
openaire +2 more sources

