Topological Interactions in Ring Polymers
Softcover reprint of the original 1st ed. 2016
Book Details
Format
Paperback / Softback
Book Series
Springer Theses
ISBN-10
3319822500
ISBN-13
9783319822501
Edition
Softcover reprint of the original 1st ed. 2016
Publisher
Springer International Publishing AG
Imprint
Springer International Publishing AG
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jun 7th, 2018
Print length
124 Pages
Product Classification:
Applied mathematicsFluid mechanicsPhysics: Fluid mechanicsCondensed matter physics (liquid state & solid state physics)Condensed matter physics (liquid state and solid state physics)Mathematical / Computational / Theoretical physicsMathematical physicsBiophysicsPlastics & polymers technologyPlastics and polymersTextile & fibre technologyTextiles and fibresMechanical engineeringEngineering: Mechanics of fluidsMechanics of fluids
Ksh 16,200.00
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Ring polymers are one of the last big mysteries in polymer physics, and this thesis tackles the problem of describing their behaviour when interacting in dense solutions and with complex environments and reports key findings that help shed light on these complex issues.
Ring polymers are one of the last big mysteries in polymer physics, and this thesis tackles the problem of describing their behaviour when interacting in dense solutions and with complex environments and reports key findings that help shed light on these complex issues. The systems investigated are not restricted to artificial polymer systems, but also cover biologically inspired ensembles, contributing to the broad applicability and interest of the conclusions reached. One of the most remarkable findings is the unambiguous evidence that rings inter-penetrate when in dense solutions; here this behaviour is shown to lead to the emergence of a glassy state solely driven by the topology of the constituents. This novel glassy state is unconventional in its nature and, thanks to its universal properties inherited from polymer physics, will attract the attention of a wide range of physicists in the years to come.
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