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Advances in Transport Phenomena 2011 [electronic resource] / edited by Liqiu Wang.

By: Wang, Liqiu [editor.].
Contributor(s): SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Advances in Transport Phenomena: 3Publisher: Cham : Springer International Publishing : Imprint: Springer, 2014Description: IX, 169 p. 76 illus., 25 illus. in color. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783319017938.Subject(s): Engineering | Thermodynamics | Hydraulic engineering | Engineering | Engineering Thermodynamics, Heat and Mass Transfer | Engineering Fluid Dynamics | ThermodynamicsDDC classification: 621.4021 Online resources: Click here to access online
Contents:
Microfluidic fabrication of vesicles -- Dielectrophoresis Field-Flow Fractionation for Continuous-Flow Separation of Particles and Cells in Microfluidic Devices -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Dielectrophoresis Field-Flow Fractionation for Continuous-Flow Separation of Particles and Cells in Microfluidic Devices -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Dielectrophoresis Field-Flow Fractionation for Continuous-Flow Separation of Particles and Cells in Microfluidic Devices -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Thermodynamic Analysis and Optimization Design of Heat Exchanger.
In: Springer eBooksSummary: This new volume of the annual review “Advances in Transport Phenomena” series contains three in-depth review articles on the microfluidic fabrication of vesicles, the dielectrophoresis field-flow fractionation for continuous-flow separation of particles and cells in microfluidic devices, and the thermodynamic analysis and optimization of heat exchangers, respectively.
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Microfluidic fabrication of vesicles -- Dielectrophoresis Field-Flow Fractionation for Continuous-Flow Separation of Particles and Cells in Microfluidic Devices -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Dielectrophoresis Field-Flow Fractionation for Continuous-Flow Separation of Particles and Cells in Microfluidic Devices -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Dielectrophoresis Field-Flow Fractionation for Continuous-Flow Separation of Particles and Cells in Microfluidic Devices -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Thermodynamic Analysis and Optimization Design of Heat Exchanger -- Thermodynamic Analysis and Optimization Design of Heat Exchanger.

This new volume of the annual review “Advances in Transport Phenomena” series contains three in-depth review articles on the microfluidic fabrication of vesicles, the dielectrophoresis field-flow fractionation for continuous-flow separation of particles and cells in microfluidic devices, and the thermodynamic analysis and optimization of heat exchangers, respectively.

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