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Monte Carlo Methods for Equilibrium Solutions in Neutron Multiplication

Monte Carlo Methods for Equilibrium Solutions in Neutron Multiplication PDF Author: E. L. Kaplan
Publisher:
ISBN:
Category : Equilibrium
Languages : en
Pages : 114

Book Description


Monte Carlo Methods for Equilibrium Solutions in Neutron Multiplication

Monte Carlo Methods for Equilibrium Solutions in Neutron Multiplication PDF Author: E. L. Kaplan
Publisher:
ISBN:
Category : Equilibrium
Languages : en
Pages : 114

Book Description


Monte Carlo Methods

Monte Carlo Methods PDF Author: Rose Kraft
Publisher:
ISBN:
Category : Monte Carlo method
Languages : en
Pages : 120

Book Description


Monte Carlo Methods and Their Application to Neutron Transport Problems

Monte Carlo Methods and Their Application to Neutron Transport Problems PDF Author: Jerome Spanier
Publisher:
ISBN:
Category : Monte Carlo method
Languages : en
Pages : 72

Book Description


Monte Carlo Particle Transport Methods

Monte Carlo Particle Transport Methods PDF Author: I. Lux
Publisher: CRC Press
ISBN: 1351083287
Category : Science
Languages : en
Pages : 530

Book Description
With this book we try to reach several more-or-less unattainable goals namely: To compromise in a single book all the most important achievements of Monte Carlo calculations for solving neutron and photon transport problems. To present a book which discusses the same topics in the three levels known from the literature and gives us useful information for both beginners and experienced readers. It lists both well-established old techniques and also newest findings.

Monte Carlo Methods

Monte Carlo Methods PDF Author: Malvin H. Kalos
Publisher: John Wiley & Sons
ISBN: 3527626220
Category : Science
Languages : en
Pages : 215

Book Description
This introduction to Monte Carlo methods seeks to identify and study the unifying elements that underlie their effective application. Initial chapters provide a short treatment of the probability and statistics needed as background, enabling those without experience in Monte Carlo techniques to apply these ideas to their research. The book focuses on two basic themes: The first is the importance of random walks as they occur both in natural stochastic systems and in their relationship to integral and differential equations. The second theme is that of variance reduction in general and importance sampling in particular as a technique for efficient use of the methods. Random walks are introduced with an elementary example in which the modeling of radiation transport arises directly from a schematic probabilistic description of the interaction of radiation with matter. Building on this example, the relationship between random walks and integral equations is outlined. The applicability of these ideas to other problems is shown by a clear and elementary introduction to the solution of the Schrödinger equation by random walks. The text includes sample problems that readers can solve by themselves to illustrate the content of each chapter. This is the second, completely revised and extended edition of the successful monograph, which brings the treatment up to date and incorporates the many advances in Monte Carlo techniques and their applications, while retaining the original elementary but general approach.

Monte Carlo Principles and Neutron Transport Problems

Monte Carlo Principles and Neutron Transport Problems PDF Author: Jerome Spanier
Publisher: Courier Corporation
ISBN: 0486462935
Category : Mathematics
Languages : en
Pages : 258

Book Description
This two-part treatment introduces the general principles of the Monte Carlo method within a unified mathematical point of view, applying them to problems in neutron transport. It describes several efficiency-enhancing approaches, including the method of superposition and simulation of the adjoint equation based on reciprocity. The first half of the book presents an exposition of the fundamentals of Monte Carlo methods, examining discrete and continuous random walk processes and standard variance reduction techniques. The second half of the text focuses directly on the methods of superposition and reciprocity, illustrating their applications to specific neutron transport problems. Topics include the computation of thermal neutron fluxes and the superposition principle in resonance escape computations.

Monte Carlo Studies of Neutron Transport in Cold Neutron Facilities

Monte Carlo Studies of Neutron Transport in Cold Neutron Facilities PDF Author: Heikki Kalli
Publisher:
ISBN:
Category : Monte Carlo method
Languages : en
Pages : 28

Book Description


Nuclear Science Abstracts

Nuclear Science Abstracts PDF Author:
Publisher:
ISBN:
Category : Nuclear energy
Languages : en
Pages : 632

Book Description
NSA is a comprehensive collection of international nuclear science and technology literature for the period 1948 through 1976, pre-dating the prestigious INIS database, which began in 1970. NSA existed as a printed product (Volumes 1-33) initially, created by DOE's predecessor, the U.S. Atomic Energy Commission (AEC). NSA includes citations to scientific and technical reports from the AEC, the U.S. Energy Research and Development Administration and its contractors, plus other agencies and international organizations, universities, and industrial and research organizations. References to books, conference proceedings, papers, patents, dissertations, engineering drawings, and journal articles from worldwide sources are also included. Abstracts and full text are provided if available.

A Practical Manual on the Monte Carlo Method for Random Walk Problems

A Practical Manual on the Monte Carlo Method for Random Walk Problems PDF Author: E. D. Cashwell
Publisher:
ISBN:
Category : Computers
Languages : en
Pages : 230

Book Description


Monte Carlo Methods in Chemical Physics

Monte Carlo Methods in Chemical Physics PDF Author: David M. Ferguson
Publisher: John Wiley & Sons
ISBN: 0470142170
Category : Science
Languages : en
Pages : 576

Book Description
In Monte Carlo Methods in Chemical Physics: An Introduction to the Monte Carlo Method for Particle Simulations J. Ilja Siepmann Random Number Generators for Parallel Applications Ashok Srinivasan, David M. Ceperley and Michael Mascagni Between Classical and Quantum Monte Carlo Methods: "Variational" QMC Dario Bressanini and Peter J. Reynolds Monte Carlo Eigenvalue Methods in Quantum Mechanics and Statistical Mechanics M. P. Nightingale and C.J. Umrigar Adaptive Path-Integral Monte Carlo Methods for Accurate Computation of Molecular Thermodynamic Properties Robert Q. Topper Monte Carlo Sampling for Classical Trajectory Simulations Gilles H. Peslherbe Haobin Wang and William L. Hase Monte Carlo Approaches to the Protein Folding Problem Jeffrey Skolnick and Andrzej Kolinski Entropy Sampling Monte Carlo for Polypeptides and Proteins Harold A. Scheraga and Minh-Hong Hao Macrostate Dissection of Thermodynamic Monte Carlo Integrals Bruce W. Church, Alex Ulitsky, and David Shalloway Simulated Annealing-Optimal Histogram Methods David M. Ferguson and David G. Garrett Monte Carlo Methods for Polymeric Systems Juan J. de Pablo and Fernando A. Escobedo Thermodynamic-Scaling Methods in Monte Carlo and Their Application to Phase Equilibria John Valleau Semigrand Canonical Monte Carlo Simulation: Integration Along Coexistence Lines David A. Kofke Monte Carlo Methods for Simulating Phase Equilibria of Complex Fluids J. Ilja Siepmann Reactive Canonical Monte Carlo J. Karl Johnson New Monte Carlo Algorithms for Classical Spin Systems G. T. Barkema and M.E.J. Newman