Chemistry in Motion – Reaction–Diffusion Systems for Micro– and Nanotechnology
Autor BA Grzybowskien Limba Engleză Hardback – 16 apr 2009
Topics covered include:
- An overview and outlook of both biological and man-made reaction-diffusion systems.
- The fundamentals and mathematics of diffusion and chemical reactions.
- Reaction -diffusion equations and the methods of solving them.
- Spatial control of reaction-diffusion at small scales.
- Micro- and nanofabrication by reaction-diffusion.
- Chemical clocks and periodic precipitation structures.
- Reaction-diffusion in soft materials and at solid interfaces.
- Microstructuring of solids using reaction-diffusion.
- Reaction-diffusion for chemical amplification and sensing.
- Reaction-diffusion in three dimensions and at the nanoscale, including nanosynthesis.
This book is aimed at all those who are interested in chemical processes at small scales, especially physical chemists, chemical engineers, and material scientists. The book can also be used for one-semester, graduate elective courses in chemical engineering, materials science or chemistry.
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Specificații
ISBN-13: 9780470030431
ISBN-10: 0470030437
Pagini: 302
Dimensiuni: 165 x 235 x 22 mm
Greutate: 0.7 kg
Ediția:New.
Editura: Wiley
Locul publicării:Chichester, United Kingdom
ISBN-10: 0470030437
Pagini: 302
Dimensiuni: 165 x 235 x 22 mm
Greutate: 0.7 kg
Ediția:New.
Editura: Wiley
Locul publicării:Chichester, United Kingdom
Public țintă
Graduate students, postgraduate researchers; research & development departments in high–tech material industry, specialists from chemistry and physics/nonlinear science, and all scientists working at the intersection between chemistry, physics, materials science and life sciences/biology.Notă biografică
Descriere
Change and motion define and constantly reshape the world around us, on scales from the molecular to the global. In particular, the subtle interplay between chemical reactions and molecular transport gives rise to an astounding richness of natural phenomena, and often manifests itself in the emergence of intricate spatial or temporal patterns.