Microfluidics: Modeling, Mechanics and Mathematics: Micro and Nano Technologies
Autor Bastian E. Rappen Limba Engleză Paperback – 17 oct 2022
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.
- Provides 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 that are ready to be put to use in the lab, or in an academic or industry setting
- Presents a collection of 3D-CAD and image files on a companion website
Toate formatele și edițiile | Preț | Express |
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Paperback (1) | 1483.20 lei 5-7 săpt. | |
ELSEVIER SCIENCE – 17 oct 2022 | 1483.20 lei 5-7 săpt. | |
Hardback (1) | 759.18 lei 5-7 săpt. | |
ELSEVIER SCIENCE – 6 dec 2016 | 759.18 lei 5-7 săpt. |
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Specificații
ISBN-13: 9780128240229
ISBN-10: 0128240229
Pagini: 848
Dimensiuni: 216 x 276 mm
Greutate: 1.92 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
ISBN-10: 0128240229
Pagini: 848
Dimensiuni: 216 x 276 mm
Greutate: 1.92 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
Public țintă
Materials scientists and engineersCuprins
Part I: Fundamentals
1. Introduction
2. Introduction to Maple
3. Engineering Mathematics
4. Series
5. Transforms
6. Thermodynamics
7. Vector Calculus
8. Differential Equations
Part II: Bulk Fluid Flows
9. Fluids
10. Conservation of Mass: The Continuity Equation
11. Conservation of Momentum: The Navier-Stokes Equation
12. Conservation of Energy: The Energy Equation and the Thermodynamic Equation of State
13. Continuity and Navier-Stokes Equations in Different Coordinate Systems
14. The Circular Flow Tube
15. Analytical Solutions to the Navier-Stokes Equation
16. Analytical Solutions to Poiseuille Flow Problems in Different Geometries
17. Hydraulic Resistance
18. Analytical Solutions to Transient Flow Problems
19. Taylor-Aris Dispersion
Part III: Fluid Surface Effects
20. Surface Tension
21. Capillarity
22. Measuring Surface Tension and Free Surface Energy
23. Plateau-Rayleigh Instability
24. The Shape of Drops
Part IV: Numerics
25. Numerical Methods for Linear Systems of Equations
26. Numerical Solutions to Nonlinear Systems: Newton’s Method
27. Numerical Methods for Solving Differential Equations
28. Numerical Solutions to the Navier-Stokes Equation
29. Computational Fluid Dynamics
30. Finite Difference Method
31. Finite Volume Method
32. Finite Element Method
33. Numerical Solutions to Transient Flow Problems
34. Numerical Solutions to Three-Dimensional Flow Problems
1. Introduction
2. Introduction to Maple
3. Engineering Mathematics
4. Series
5. Transforms
6. Thermodynamics
7. Vector Calculus
8. Differential Equations
Part II: Bulk Fluid Flows
9. Fluids
10. Conservation of Mass: The Continuity Equation
11. Conservation of Momentum: The Navier-Stokes Equation
12. Conservation of Energy: The Energy Equation and the Thermodynamic Equation of State
13. Continuity and Navier-Stokes Equations in Different Coordinate Systems
14. The Circular Flow Tube
15. Analytical Solutions to the Navier-Stokes Equation
16. Analytical Solutions to Poiseuille Flow Problems in Different Geometries
17. Hydraulic Resistance
18. Analytical Solutions to Transient Flow Problems
19. Taylor-Aris Dispersion
Part III: Fluid Surface Effects
20. Surface Tension
21. Capillarity
22. Measuring Surface Tension and Free Surface Energy
23. Plateau-Rayleigh Instability
24. The Shape of Drops
Part IV: Numerics
25. Numerical Methods for Linear Systems of Equations
26. Numerical Solutions to Nonlinear Systems: Newton’s Method
27. Numerical Methods for Solving Differential Equations
28. Numerical Solutions to the Navier-Stokes Equation
29. Computational Fluid Dynamics
30. Finite Difference Method
31. Finite Volume Method
32. Finite Element Method
33. Numerical Solutions to Transient Flow Problems
34. Numerical Solutions to Three-Dimensional Flow Problems