Microfluidics and Nanofluidics Handbook.
The Microfluidics and Nanofluidics Handbook: Two-Volume Set comprehensively captures the cross-disciplinary breadth of micro- and nanofluidics, which encompass the biological sciences, chemistry, physics and engineering applications. To fill the knowledge gap between engineering and the basic scienc...
Clasificación: | Libro Electrónico |
---|---|
Otros Autores: | , |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Abingdon :
CRC Press.
|
Colección: | Microfluidics and Nanofludics Handbook Ser.
|
Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Cover; Volume I; Half Title; Title Page; Copyright Page; Contents; Preface; Editors; Contributors; Part I: Experimental and Numerical Methods; 1. Image-Based Photonic Techniques for Microfluidics; 2. Recent Developments in Microparticle Image Velocimetry; 3. Near-Surface Particle-Tracking Velocimetry; 4. Finite-Volume Method for Numerical Simulation: Fundamentals; 5. Level-Set Method for Microscale Flows; 6. Characterization of Chaotic Stirring and Mixing Using Numerical Tools; 7. Lattice Boltzmann Method and Its Applications in Microfluidics; Part II: Fabrication and Other Applications
- 8. SU-8 Photolithography and Its Impact on Microfluidics9. System Integration in Microfluidics; 10. Fluidic Interconnects for Microfluidics: Chip to Chip and World to Chip; 11. Micro Total Analysis Systems; 12. Microparticle and Nanoparticle Manipulation; 13. Optoelectric Particle Manipulation; 14. Microfluidic Particle Counting Sensors; 15. Magnetic-Particle-Based Microfluidics; 16. The Influence of Microfluidic Channel Wettability on PEM Carbon Paper Fuel Cell; 17. Biologically Inspired Adhesives; 18. Microfluidics for Aerospace Applications; 19. Chemically Reacting Flows at the Microscale
- 20. Methane Solubility Enhancement in Water Confined to Nanoscale PoresIndex; Volume II; Half Title; Title Page; Copyright Page; Contents; Preface; Editors; Contributors; Part I: Physics and Transport Phenomena; 1. An Overview of Continuum Description of Fluid Flow and Transport Processes; 2. Microscale Gas Flow Dynamics and Molecular Models for Gas Flow and Heat Transfer; 3. Calculations of Rarefied Gas Flows in Free-Molecular and Transitional Regimes; 4. Ideal Gas Flows through Microchannels-Revisited; 5. Pressure-Driven Flow in Microchannels
- 6. Applications of Magnetohydrodynamics in Microfluidics7. Diffusio-Osmosis of Electrolyte Solutions in Microscale and Nanoscale; 8. Electrodics in Electrochemical Energy Conversion Systems: Microstructure and Pore-Scale Transport; 9. Van der Waals Interaction; 10. Single-Particle Colloidal Hydrodynamics; 11. Mass Transfer Issues in Micro- and Nanoscale; 12. Gas Transport in Microcapillaries, Nanocapillaries, and Porous Media; 13. Polymer Transport in Nanochannels; 14. Fluid Friction and Heat Transfer in Microchannels; 15. Nonboiling Two-Phase Flow in Microchannels
- 16. Heat Transfer Analysis in Electro-Osmotically Driven Microchannel Flows17. Analysis of Modes during Bubble Growth in Saturated Film Boiling; 18. Physics and Modeling of Turbulent Transport; Part II: Life Sciences and Related Applications; 19. Biotechnology for Bioengineers; 20. Cellular Biomicrofluidics; 21. Cell Lysis Techniques in Lab-on-a-Chip Technology; 22. Microfluidic Cell Culture Devices; 23. Probing Cells with Nanotechnology; 24. Genomics and DNA Microarrays; 25. Micro-PCR Devices for Lab-on-a-Chip Applications; 26. Microscopic Hemorheology and Hemodynamics; Index