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(Ebook) Multiscale Modeling of Particle Interactions: Applications in Biology and Nanotechnology by Michael King, David Gee ISBN 0470242353

  • SKU: EBN-2334816
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Authors:Michael King, David Gee
Pages:398 pages.
Editon:1
Publisher:Wiley
Language:english
File Size:11.17 MB
Format:pdf
ISBNS:0470242353
Categories: Ebooks

Product desciption

(Ebook) Multiscale Modeling of Particle Interactions: Applications in Biology and Nanotechnology by Michael King, David Gee ISBN 0470242353

Discover how the latest computational tools are building our understanding of particle interactions and leading to new applicationsWith this book as their guide, readers will gain a new appreciation of the critical role that particle interactions play in advancing research and developing new applications in the biological sciences, chemical engineering, toxicology, medicine, and manufacturing technology The book explores particles ranging in size from cations to whole cells to tissues and processed materials. A focus on recreating complex, real-world dynamical systems helps readers gain a deeper understanding of cell and tissue mechanics, theoretical aspects of multiscale modeling, and the latest applications in biology and nanotechnology.Following an introductory chapter, Multiscale Modeling of Particle Interactions is divided into two parts:Part I, Applications in Nanotechnology, covers:Multiscale modeling of nanoscale aggregation phenomena: applications in semiconductor materials processingMultiscale modeling of rare events in self-assembled systemsContinuum description of atomic sheetsCoulombic dragging and mechanical propelling of molecules in nanofluidic systemsMolecular dynamics modeling of nanodroplets and nanoparticlesModeling the interactions between compliant microcapsules and patterned surfacesPart II, Applications in Biology, covers:Coarse-grained and multiscale simulations of lipid bilayersStochastic approach to biochemical kineticsIn silico modeling of angiogenesis at multiple scalesLarge-scale simulation of blood flow in microvesselsMolecular to multicellular deformation during adhesion of immune cells under flowEach article was contributed by one or more leading experts and pioneers in the field. All readers, from chemists and biologists to engineers and students, will gain new insights into how the latest tools in computational science can improve our understanding of particle interactions and support the development of novel applications across the broad spectrum of disciplines in biology and nanotechnology.
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