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Computer Simulation Methods in Theoretical Physics
  • Language: en
  • Pages: 155

Computer Simulation Methods in Theoretical Physics

Appropriately for a book having the title "Computer Simulation Methods in Theoretical Physics", this book begins with a disclai mer. It does not and cannot give a complete introduction to simu lational physics. This exciting field is too new and is expanding too rapidly for even an attempt to be made. The intention here is to present a selection of fundamental techniques that are now being widely applied in many areas of physics, mathematics, chem istry and biology. It is worth noting that the methods are not only applicable in physics. They have been successfully used in other sciences, showing their great flexibility and power. This book has two main chapters (Chaps. 3 and 4) dealing with ...

Monte Carlo Simulation in Statistical Physics
  • Language: en
  • Pages: 132

Monte Carlo Simulation in Statistical Physics

When learning very formal material one comes to a stage where one thinks one has understood the material. Confronted with a "realiife" problem, the passivity of this understanding sometimes becomes painfully elear. To be able to solve the problem, ideas, methods, etc. need to be ready at hand. They must be mastered (become active knowledge) in order to employ them successfully. Starting from this idea, the leitmotif, or aim, of this book has been to elose this gap as much as possible. How can this be done? The material presented here was born out of a series of lectures at the Summer School held at Figueira da Foz (Portugal) in 1987. The series of lectures was split into two concurrent parts...

Monte Carlo Simulation in Statistical Physics
  • Language: en
  • Pages: 193

Monte Carlo Simulation in Statistical Physics

Monte Carlo Simulation in Statistical Physics deals with the computer simulation of many-body systems in condensed-matter physics and related fields of physics, chemistry and beyond, to traffic flows, stock market fluctuations, etc.). Using random numbers generated by a computer, probability distributions are calculated, allowing the estimation of the thermodynamic properties of various systems. This book describes the theoretical background to several variants of these Monte Carlo methods and gives a systematic presentation from which newcomers can learn to perform such simulations and to analyze their results. This fourth edition has been updated and a new chapter on Monte Carlo simulation of quantum-mechanical problems has been added. To help students in their work a special web server has been installed to host programs and discussion groups (http://wwwcp.tphys.uni-heidelberg.de). Prof. Binder was the winner of the Berni J. Alder CECAM Award for Computational Physics 2001.

Frontiers in Physics - 2017 & 2018 Editor's Choice
  • Language: en
  • Pages: 190

Frontiers in Physics - 2017 & 2018 Editor's Choice

Launched in 2013, Frontiers in Physics consists of 18 specialties covering all areas of research in physics. With over 500 published manuscripts, the journal is now indexed in SCIE with the first impact factor coming in 2019. Frontiers in Physics aims to become the largest and most cited open access multidisciplinary physics journal. This eBook collects what the Specialty Chief Editors of the journal believed were the most interesting manuscripts published over the past two years. It is a nice collection, which will offer the reader the chance to have a quick overview of the specialties of the journal and offer a glimpse into the state of the art of physics. We must confess that it has been ...

Parallel Algorithms in Computational Science
  • Language: en
  • Pages: 192

Parallel Algorithms in Computational Science

Our aim in this book is to present and enlarge upon those aspects of parallel computing that are needed by practitioners of computational science. Today al most all classical sciences, such as mathematics, physics, chemistry and biology, employ numerical methods to help gain insight into nature. In addition to the traditional numerical methods, such as matrix inversions and the like, a whole new field of computational techniques has come to assume central importance, namely the numerical simulation methods. These methods are much less fully developed than those which are usually taught in a standard numerical math ematics course. However, they form a whole new set of tools for research in th...

Computer Simulation Methods in Theoretical Physics
  • Language: en
  • Pages: 152

Computer Simulation Methods in Theoretical Physics

Computational methods pertaining to many branches of science, such as physics, physical chemistry and biology, are presented. The text is primarily intended for third-year undergraduate or first-year graduate students. However, active researchers wanting to learn about the new techniques of computational science should also benefit from reading the book. It treats all major methods, including the powerful molecular dynamics method, Brownian dynamics and the Monte-Carlo method. All methods are treated equally from a theroetical point of view. In each case the underlying theory is presented and then practical algorithms are displayed, giving the reader the opportunity to apply these methods directly. For this purpose exercises are included. The book also features complete program listings ready for application.

The Monte Carlo Method in Condensed Matter Physics
  • Language: en
  • Pages: 406

The Monte Carlo Method in Condensed Matter Physics

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 Meth...

Computational Physics
  • Language: en
  • Pages: 395

Computational Physics

  • Type: Book
  • -
  • Published: 2012-12-06
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  • Publisher: Springer

Computational Physics. Selected Methods, Simple Exercises, Serious Applications is an overview written by leading researchers of a variety of fields and developments. Selected Methods introduce the reader to current fields, including molecular dynamics, hybrid Monte-Carlo algorithms, and neural networks. Simple Exercises give hands-on advice for effective program solutions from a small number of lines to demonstration programs with elaborate graphics. Serious Applications show how questions concerning, for example, aging, many-minima optimisation, or phase transitions can be treated by appropriate tools. The source code and demonstration graphics are included on a 3.5" MS-DOS diskette.

A new model with non-spherical interactions for dense polymer systems
  • Language: de
  • Pages: 11

A new model with non-spherical interactions for dense polymer systems

  • Type: Book
  • -
  • Published: 1995
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  • Publisher: Unknown

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Facilitating Interdisciplinary Collaboration among the Intelligence Community, Academy, and Industry
  • Language: en
  • Pages: 381

Facilitating Interdisciplinary Collaboration among the Intelligence Community, Academy, and Industry

This volume describes, analyzes, and critiques the design and evolution of the Laboratory for Analytic Sciences (LAS), a National Security Agency-funded big data laboratory. The LAS consists of teams of intelligence personnel, who provide practical understanding of needs, targets, and tradecraft, working collaboratively with university scholars and industry partners of varying disciplines to bring their collective expert knowledge and understanding to improve the tools and tradecraft of intelligence. This book details the theoretical and practical lessons that can be drawn from the LAS for the development of cross-sector, interdisciplinary collaboration. It will inform scholars and practitioners in intelligence, communication, design, management, public policy, political science, and indeed all arenas currently grappling with the desire to engage multiple and diverse stakeholders in the research and development of innovative solutions to the world’s most challenging problems.