Monte Carlo And Molecular Dynamics Simulations In Polymer Science

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Monte Carlo and Molecular Dynamics Simulations in Polymer Science

Author : Kurt Binder
Publisher : Oxford University Press, USA
Page : 602 pages
File Size : 53,8 Mb
Release : 1995
Category : Language Arts & Disciplines
ISBN : 9780195094381

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Monte Carlo and Molecular Dynamics Simulations in Polymer Science by Kurt Binder Pdf

Talks about various computer simulation techniques used for macromolecular materials. This book describes how to use simulation to explain experimental data and gain insight into structure and dynamic properties of polymeric structures. Explanations are given on how to overcome challenges posed by large size and slow relaxation polymer coils.

Monte Carlo and Molecular Dynamics Simulations in Polymer Science

Author : Kurt Binder
Publisher : Unknown
Page : 587 pages
File Size : 47,9 Mb
Release : 1995
Category : Molecular dynamics
ISBN : 1602560307

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Monte Carlo and Molecular Dynamics Simulations in Polymer Science by Kurt Binder Pdf

Talks about various computer simulation techniques used for macromolecular materials. This book describes how to use simulation to explain experimental data and gain insight into structure and dynamic properties of polymeric structures. Explanations are given on how to overcome challenges posed by large size and slow relaxation polymer coils.

Monte Carlo and Molecular Dynamics Simulations in Polymer Science

Author : Kurt Binder
Publisher : Oxford University Press
Page : 602 pages
File Size : 46,6 Mb
Release : 1995-08-03
Category : Science
ISBN : 9780195357462

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Monte Carlo and Molecular Dynamics Simulations in Polymer Science by Kurt Binder Pdf

Written by leading experts from around the world, Monte Carlo and Molecular Dynamics Simulations in Polymer Science comprehensively reviews the latest simulation techniques for macromolecular materials. Focusing in particular on numerous new techniques, the book offers authoritative introductions to solutions of neutral polymers and polyelectrolytes; dynamics of polymer melts, rubbers and gels, and glassy materials; thermodynamics of polymer mixing and mesophase formation, and polymers confined at interfaces and grafted to walls. Throughout, contributors offer practical advice on how to overcome the unique challenges posed by the large size and slow relaxation of polymer coils. Students and researchers in polymer chemistry, polymer physics, chemical engineering, and materials and computational science will all benefit from the cogent, step-by-step introductions contained in this important new book.

Monte Carlo Applications in Polymer Science

Author : W. Bruns,I. Motoc,K. F. O'Driscoll
Publisher : Springer Science & Business Media
Page : 188 pages
File Size : 50,9 Mb
Release : 2012-12-06
Category : Science
ISBN : 9783642931956

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Monte Carlo Applications in Polymer Science by W. Bruns,I. Motoc,K. F. O'Driscoll Pdf

Simulation Methods for Polymers

Author : Michael Kotelyanskii,Doros N. Theodorou
Publisher : CRC Press
Page : 572 pages
File Size : 45,7 Mb
Release : 2004-03-01
Category : Technology & Engineering
ISBN : 9780824751319

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Simulation Methods for Polymers by Michael Kotelyanskii,Doros N. Theodorou Pdf

Bridging the Time Scales

Author : Peter Nielaba,Michel Mareschal,Giovanni Ciccotti
Publisher : Springer Science & Business Media
Page : 498 pages
File Size : 42,7 Mb
Release : 2007-10-13
Category : Science
ISBN : 9783540458371

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Bridging the Time Scales by Peter Nielaba,Michel Mareschal,Giovanni Ciccotti Pdf

The behaviour of many complex materials extends over time- and lengthscales well beyond those that can normally be described using standard molecular dynamics or Monte Carlo simulation techniques. As progress is coming more through refined simulation methods than from increased computer power, this volume is intended as both an introduction and a review of all relevant modern methods that will shape molecular simulation in the forthcoming decade. Written as a set of tutorial reviews, the book will be of use to specialists and nonspecialists alike.

Modeling and Simulation in Polymers

Author : Purushottam D. Gujrati,Arkady I. Leonov
Publisher : John Wiley & Sons
Page : 564 pages
File Size : 41,9 Mb
Release : 2010-03-30
Category : Technology & Engineering
ISBN : 3527630260

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Modeling and Simulation in Polymers by Purushottam D. Gujrati,Arkady I. Leonov Pdf

Filling a gap in the literature and all set to become the standard in this field, this monograph begins with a look at computational viscoelastic fluid mechanics and studies of turbulent flows of dilute polymer solutions. It then goes on discuss simulations of nanocomposites, polymerization kinetics, computational approaches for polymers and modeling polyelectrolytes. Further sections deal with tire optimization, irreversible phenomena in polymers, the hydrodynamics of artificial and bacterial flagella as well as modeling and simulation in liquid crystals. The result is invaluable reading for polymer and theoretical chemists, chemists in industry, materials scientists and plastics technologists.

Understanding Molecular Simulation

Author : Daan Frenkel,Berend Smit
Publisher : Elsevier
Page : 664 pages
File Size : 48,9 Mb
Release : 2001-10-19
Category : Science
ISBN : 0080519989

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Understanding Molecular Simulation by Daan Frenkel,Berend Smit Pdf

Understanding Molecular Simulation: From Algorithms to Applications explains the physics behind the "recipes" of molecular simulation for materials science. Computer simulators are continuously confronted with questions concerning the choice of a particular technique for a given application. A wide variety of tools exist, so the choice of technique requires a good understanding of the basic principles. More importantly, such understanding may greatly improve the efficiency of a simulation program. The implementation of simulation methods is illustrated in pseudocodes and their practical use in the case studies used in the text. Since the first edition only five years ago, the simulation world has changed significantly -- current techniques have matured and new ones have appeared. This new edition deals with these new developments; in particular, there are sections on: · Transition path sampling and diffusive barrier crossing to simulaterare events · Dissipative particle dynamic as a course-grained simulation technique · Novel schemes to compute the long-ranged forces · Hamiltonian and non-Hamiltonian dynamics in the context constant-temperature and constant-pressure molecular dynamics simulations · Multiple-time step algorithms as an alternative for constraints · Defects in solids · The pruned-enriched Rosenbluth sampling, recoil-growth, and concerted rotations for complex molecules · Parallel tempering for glassy Hamiltonians Examples are included that highlight current applications and the codes of case studies are available on the World Wide Web. Several new examples have been added since the first edition to illustrate recent applications. Questions are included in this new edition. No prior knowledge of computer simulation is assumed.

Computational Materials Science

Author : Kaoru Ohno,Keivan Esfarjani,Yoshiyuki Kawazoe
Publisher : Springer
Page : 427 pages
File Size : 46,7 Mb
Release : 2018-04-14
Category : Technology & Engineering
ISBN : 9783662565421

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Computational Materials Science by Kaoru Ohno,Keivan Esfarjani,Yoshiyuki Kawazoe Pdf

This textbook introduces modern techniques based on computer simulation to study materials science. It starts from first principles calculations enabling to calculate the physical and chemical properties by solving a many-body Schroedinger equation with Coulomb forces. For the exchange-correlation term, the local density approximation is usually applied. After the introduction of the first principles treatment, tight-binding and classical potential methods are briefly introduced to indicate how one can increase the number of atoms in the system. In the second half of the book, Monte Carlo simulation is discussed in detail. Problems and solutions are provided to facilitate understanding. Readers will gain sufficient knowledge to begin theoretical studies in modern materials research. This second edition includes a lot of recent theoretical techniques in materials research. With the computers power now available, it is possible to use these numerical techniques to study various physical and chemical properties of complex materials from first principles. The new edition also covers empirical methods, such as tight-binding and molecular dynamics.

Computer Simulation of Polymers

Author : Elizabeth A. Colbourn
Publisher : Longman
Page : 343 pages
File Size : 41,9 Mb
Release : 1994-01-01
Category : Science
ISBN : 0582083745

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Computer Simulation of Polymers by Elizabeth A. Colbourn Pdf

The Polymer Science and Technology Series systematically covers a wide range of key areas in polymer technology. Each volume in the series focuses on an individual area of importance in the polymer industry and is edited by acknowledged experts in the field.

The Monte Carlo Method in Condensed Matter Physics

Author : Kurt Binder
Publisher : Springer Science & Business Media
Page : 406 pages
File Size : 47,7 Mb
Release : 2012-12-06
Category : Science
ISBN : 9783662028551

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The Monte Carlo Method in Condensed Matter Physics by Kurt Binder Pdf

The Monte Carlo method is now widely used and commonly accepted as an important and useful tool in solid state physics and related fields. It is broadly recognized that the technique of "computer simulation" is complementary to both analytical theory and experiment, and can significantly contribute to ad vancing the understanding of various scientific problems. Widespread applications of the Monte Carlo method to various fields of the statistical mechanics of condensed matter physics have already been reviewed in two previously published books, namely Monte Carlo Methods in Statistical Physics (Topics Curro Phys. , Vol. 7, 1st edn. 1979, 2ndedn. 1986) and Applications of the Monte Carlo Method in Statistical Physics (Topics Curro Phys. , Vol. 36, 1st edn. 1984, 2nd edn. 1987). Meanwhile the field has continued its rapid growth and expansion, and applications to new fields have appeared that were not treated at all in the above two books (e. g. studies of irreversible growth phenomena, cellular automata, interfaces, and quantum problems on lattices). Also, new methodic aspects have emerged, such as aspects of efficient use of vector com puters or parallel computers, more efficient analysis of simulated systems con figurations, and methods to reduce critical slowing down at i>hase transitions. Taken together with the extensive activity in certain traditional areas of research (simulation of classical and quantum fluids, of macromolecular materials, of spin glasses and quadrupolar glasses, etc.

Computer Simulation of Polymers

Author : Elizabeth A. Colbourn
Publisher : Longman Publishing Group
Page : 360 pages
File Size : 40,5 Mb
Release : 1994
Category : Science
ISBN : UOM:39015032627674

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Computer Simulation of Polymers by Elizabeth A. Colbourn Pdf

For chemists, physicists, and students of computer simulation, provides a detailed examination of the complex problems of time and size scaling in molecular modeling and simulation. It includes not only atomistic modeling but also coarse-grained models, which allow longer time scales and therefore larger systems to be studied. Monte Carlo methods are also discussed, and have proven to be particularly powerful tools for examining a range of polymer problems. Assumes a background knowledge of synthetic polymer properties and simulation. Annotation copyright by Book News, Inc., Portland, OR

Polymer Science: A Comprehensive Reference

Author : Anonim
Publisher : Newnes
Page : 7752 pages
File Size : 42,8 Mb
Release : 2012-12-05
Category : Technology & Engineering
ISBN : 9780080878621

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Polymer Science: A Comprehensive Reference by Anonim Pdf

The progress in polymer science is revealed in the chapters of Polymer Science: A Comprehensive Reference, Ten Volume Set. In Volume 1, this is reflected in the improved understanding of the properties of polymers in solution, in bulk and in confined situations such as in thin films. Volume 2 addresses new characterization techniques, such as high resolution optical microscopy, scanning probe microscopy and other procedures for surface and interface characterization. Volume 3 presents the great progress achieved in precise synthetic polymerization techniques for vinyl monomers to control macromolecular architecture: the development of metallocene and post-metallocene catalysis for olefin polymerization, new ionic polymerization procedures, and atom transfer radical polymerization, nitroxide mediated polymerization, and reversible addition-fragmentation chain transfer systems as the most often used controlled/living radical polymerization methods. Volume 4 is devoted to kinetics, mechanisms and applications of ring opening polymerization of heterocyclic monomers and cycloolefins (ROMP), as well as to various less common polymerization techniques. Polycondensation and non-chain polymerizations, including dendrimer synthesis and various "click" procedures, are covered in Volume 5. Volume 6 focuses on several aspects of controlled macromolecular architectures and soft nano-objects including hybrids and bioconjugates. Many of the achievements would have not been possible without new characterization techniques like AFM that allowed direct imaging of single molecules and nano-objects with a precision available only recently. An entirely new aspect in polymer science is based on the combination of bottom-up methods such as polymer synthesis and molecularly programmed self-assembly with top-down structuring such as lithography and surface templating, as presented in Volume 7. It encompasses polymer and nanoparticle assembly in bulk and under confined conditions or influenced by an external field, including thin films, inorganic-organic hybrids, or nanofibers. Volume 8 expands these concepts focusing on applications in advanced technologies, e.g. in electronic industry and centers on combination with top down approach and functional properties like conductivity. Another type of functionality that is of rapidly increasing importance in polymer science is introduced in volume 9. It deals with various aspects of polymers in biology and medicine, including the response of living cells and tissue to the contact with biofunctional particles and surfaces. The last volume is devoted to the scope and potential provided by environmentally benign and green polymers, as well as energy-related polymers. They discuss new technologies needed for a sustainable economy in our world of limited resources. Provides broad and in-depth coverage of all aspects of polymer science from synthesis/polymerization, properties, and characterization methods and techniques to nanostructures, sustainability and energy, and biomedical uses of polymers Provides a definitive source for those entering or researching in this area by integrating the multidisciplinary aspects of the science into one unique, up-to-date reference work Electronic version has complete cross-referencing and multi-media components Volume editors are world experts in their field (including a Nobel Prize winner)

Molecular Simulation Methods for Predicting Polymer Properties

Author : Vassilios Galiatsatos
Publisher : John Wiley & Sons
Page : 325 pages
File Size : 47,6 Mb
Release : 2005-02-03
Category : Science
ISBN : 9780471464815

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Molecular Simulation Methods for Predicting Polymer Properties by Vassilios Galiatsatos Pdf

Among the thousands of synthesized polymers, new polymeric substances and materials with new, often unusual, properties often arise. Consequently, this presents a problem in determining the physical properties of polymers, and thus makes it difficult to ascertain how to synthesize polymers with desired properties. This book discusses what molecular modelling can do to predict the properties of realistic polymer systems. Organized by property, each chapter will address the methods one may use to study the particular system. * Focuses on polymer properties rather than methods, making it more accessible to the average scientist/engineer * All important polymers will be covered, such as amorphous polymers, semicrystalline polymers, elastomers, emulsions, polymer interfaces and surfaces * Chapters contributed by experts in the field * Discusses current commercial software used in molecular simulation

Advanced Computer Simulation Approaches for Soft Matter Sciences I

Author : Christian Holm,Kurt Kremer
Publisher : Springer Science & Business Media
Page : 296 pages
File Size : 54,7 Mb
Release : 2005-02-14
Category : Science
ISBN : 3540220585

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Advanced Computer Simulation Approaches for Soft Matter Sciences I by Christian Holm,Kurt Kremer Pdf

Soft matter science is nowadays an acronym for an increasingly important class of materials, which ranges from polymers, liquid crystals, colloids up to complex macromolecular assemblies, covering sizes from the nanoscale up the microscale. Computer simulations have proven as an indispensable, if not the most powerful, tool to understand properties of these materials and link theoretical models to experiments. In this first volume of a small series recognized leaders of the field review advanced topics and provide critical insight into the state-of-the-art methods and scientific questions of this lively domain of soft condensed matter research.