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Microfluidics

Modeling, Mechanics and Mathematics

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2022
ISBN13: 9780128240229
Rubricering
Elsevier Science e druk, 2022 9780128240229
Onderdeel van serie Micro and Nano Technologies
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Microfluidics: Modeling, Mechanics and Mathematics, Second Edition provides a practical, lab-based approach to nano- and microfluidics, including a wealth of practical techniques, protocols and experiments ready to be put into practice in both research and industrial settings. This practical approach is ideally suited to researchers and R&D staff in industry. Additionally, the interdisciplinary approach to the science of nano- and microfluidics enables readers from a range of different academic disciplines to broaden their understanding. Alongside traditional fluid/transport topics, the book contains a wealth of coverage of materials and manufacturing techniques, chemical modification/surface functionalization, biochemical analysis, and the biosensors involved.

This fully updated new edition also includes new sections on viscous flows and centrifugal microfluidics, expanding the types of platforms covered to include centrifugal, capillary and electro kinetic platforms.

Specificaties

ISBN13:9780128240229
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

Part I: Fundamentals<br>1. Introduction<br>2. Introduction to Maple<br>3. Engineering Mathematics<br>4. Series<br>5. Transforms<br>6. Thermodynamics<br>7. Vector Calculus<br>8. Differential Equations<br><br>Part II: Bulk Fluid Flows<br>9. Fluids<br>10. Conservation of Mass: The Continuity Equation<br>11. Conservation of Momentum: The Navier-Stokes Equation<br>12. Conservation of Energy: The Energy Equation and the Thermodynamic Equation of State<br>13. Continuity and Navier-Stokes Equations in Different Coordinate Systems<br>14. The Circular Flow Tube<br>15. Analytical Solutions to the Navier-Stokes Equation<br>16. Analytical Solutions to Poiseuille Flow Problems in Different Geometries<br>17. Hydraulic Resistance<br>18. Analytical Solutions to Transient Flow Problems<br>19. Taylor-Aris Dispersion<br><br>Part III: Fluid Surface Effects<br>20. Surface Tension<br>21. Capillarity<br>22. Measuring Surface Tension and Free Surface Energy<br>23. Plateau-Rayleigh Instability<br>24. The Shape of Drops<br><br>Part IV: Numerics<br>25. Numerical Methods for Linear Systems of Equations<br>26. Numerical Solutions to Nonlinear Systems: Newton’s Method<br>27. Numerical Methods for Solving Differential Equations<br>28. Numerical Solutions to the Navier-Stokes Equation<br>29. Computational Fluid Dynamics<br>30. Finite Difference Method<br>31. Finite Volume Method<br>32. Finite Element Method<br>33. Numerical Solutions to Transient Flow Problems<br>34. Numerical Solutions to Three-Dimensional Flow Problems

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        Microfluidics