Microfluidics: Modeling, Mechanics and Mathematics: Micro and Nano Technologies
Autor Bastian E. Rappen Limba Engleză Hardback – 6 dec 2016
Dr Rapp fully engages with the multidisciplinary nature of the subject. Alongside traditional fluid/transport topics, there is a wealth of coverage of materials and manufacturing techniques, chemical modification/surface functionalization, biochemical analysis, and the biosensors involved.
As well as providing a clear and concise overview to get started into the multidisciplinary field of microfluidics and practical guidance on techniques, pitfalls and troubleshooting, this book supplies:
- A set of hands-on experiments and protocols that will help setting up lab experiments but which will also allow a quick start into practical work.
- A collection of microfluidic structures, with 3D-CAD and image data that can be used directly (files provided on a companion website).
- A practical guide to the successful design and implementation of nano- and microfluidic processes (e.g. biosensing) and equipment (e.g., biosensors, such as diabetes blood glucose sensors)
- Provides techniques, experiments, and protocols ready to be put to use in the lab, in an academic, or industry setting
- A collection of 3D-CAD and image files is provided on a companion website
Toate formatele și edițiile | Preț | Express |
---|---|---|
Paperback (1) | 1497.28 lei 5-7 săpt. | |
ELSEVIER SCIENCE – 17 oct 2022 | 1497.28 lei 5-7 săpt. | |
Hardback (1) | 766.36 lei 5-7 săpt. | |
ELSEVIER SCIENCE – 6 dec 2016 | 766.36 lei 5-7 săpt. |
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Specificații
ISBN-13: 9781455731411
ISBN-10: 1455731412
Pagini: 830
Dimensiuni: 216 x 276 x 41 mm
Greutate: 2.52 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
ISBN-10: 1455731412
Pagini: 830
Dimensiuni: 216 x 276 x 41 mm
Greutate: 2.52 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
Public țintă
Engineers and scientists involved in designing and making use of nano/microfluidics techniques and equipment. Disciplines include engineering, materials science, biosensing, biochemistry, medical. Relevant to academia / research and industry.Cuprins
Part I Fundamentals 1. Introduction2. Introduction to Maple3. Engineering Mathematics4. Series5. Transforms6. Thermodynamics7. Vector Calculus8. Differential Equations
Part II Bulk Fluid Flows9. Fluids10. Conservation of Mass: The Continuity Equation11. Conservation of Momentum: The Navier-Stokes Equation12. Conservation of Energy: The Energy Equation and the Thermodynamic Equation of State13. Continuity and Navier-Stokes Equations in Different Coordinate Systems14. The Circular Flow Tube15. Analytical Solutions to the Navier-Stokes Equation16. Analytical Solutions to Poiseuille Flow Problems in Different Geometries17. Hydraulic Resistance18. Analytical Solutions to Transient Flow Problems19. Taylor-Aris Dispersion
Part III Fluid Surface Effects20. Surface Tension21. Capillarity22. Measuring Surface Tension and Free Surface Energy23. Plateau-Rayleigh Instability24. The Shape of Drops
Part IV Numerics25. Numerical Methods for Linear Systems of Equations26. Numerical Solutions to Nonlinear Systems: Newton’s Method27. Numerical Methods for Solving Differential Equations28. Numerical Solutions to the Navier-Stokes Equation29. Computational Fluid Dynamics30. Finite Difference Method31. Finite Volume Method32. Finite Element Method33. Numerical Solutions to Transient Flow Problems34. Numerical Solutions to Three-Dimensional Flow Problems
Part II Bulk Fluid Flows9. Fluids10. Conservation of Mass: The Continuity Equation11. Conservation of Momentum: The Navier-Stokes Equation12. Conservation of Energy: The Energy Equation and the Thermodynamic Equation of State13. Continuity and Navier-Stokes Equations in Different Coordinate Systems14. The Circular Flow Tube15. Analytical Solutions to the Navier-Stokes Equation16. Analytical Solutions to Poiseuille Flow Problems in Different Geometries17. Hydraulic Resistance18. Analytical Solutions to Transient Flow Problems19. Taylor-Aris Dispersion
Part III Fluid Surface Effects20. Surface Tension21. Capillarity22. Measuring Surface Tension and Free Surface Energy23. Plateau-Rayleigh Instability24. The Shape of Drops
Part IV Numerics25. Numerical Methods for Linear Systems of Equations26. Numerical Solutions to Nonlinear Systems: Newton’s Method27. Numerical Methods for Solving Differential Equations28. Numerical Solutions to the Navier-Stokes Equation29. Computational Fluid Dynamics30. Finite Difference Method31. Finite Volume Method32. Finite Element Method33. Numerical Solutions to Transient Flow Problems34. Numerical Solutions to Three-Dimensional Flow Problems