This e-book introduces the reader to biomolecules and describes the experimental and theoretical aspects of their micro- and nano-scale motion in water. Particular emphasis is given to their transport in engineered micro-environments where they are driven by externally imposed electric fields.
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Publish Date
2013
Publisher
Bookboon.com
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Book Details
Table of Contents
Obsah
Introduction
Motivation: biomolecules in scientific context
Length scale of transport
Biomolecule transport example: engineered microdevices
Structure of this e-book
Biomolecules and their electrical properties
Biomolecules in cells
Biomolecules: structure and function
Biomolecules: electrical properties
Concluding remarks
Moving biomolecules using electric fi elds
Electrophoresis
Dielectrophoresis (DEP)
Micro-environments for biomolecule transport
Concluding remarks
Basic micro- and nano-transport
Inertial, friction and sedimentation forces on single biomolecules
Electromagnetic forces acting on single biomolecules
Thermal fl uctuations
Combining forces for predicting single bioparticle trajectory
Langevin equation for a single bioparticle (biomolecule)
Langevin equation stochastic integration and the modifi ed diffusion equation (MDE)
Concluding remarks
Observing, quantifying and simulating electrically driven biomolecule microtransport
Micro-device and experimental arrangement
Observations and quantitative measurements
Simulations of electrically driven biomolecule micro-transport
Brief discussion of experiments and theory
Concluding remarks
References
General – selected books
Research articles and other reading
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{{cite book|author=David Bakewell |date=2013 |title=Micro- and Nano-Transport of Biomolecules |publisher=Bookboon.com |isbn=978-87-7681-513-4 |ol=25764465M}}

