Particle Transport Simulation With The Monte Carlo Method


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Particle Transport Simulation with the Monte Carlo Method


Particle Transport Simulation with the Monte Carlo Method

Author: Leland Lavele Carter

language: en

Publisher:

Release Date: 1975


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Advanced Monte Carlo for Radiation Physics, Particle Transport Simulation and Applications


Advanced Monte Carlo for Radiation Physics, Particle Transport Simulation and Applications

Author: Andreas Kling

language: en

Publisher: Springer Science & Business Media

Release Date: 2014-02-22


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This book focusses on the state of the art of Monte Carlo methods in radiation physics and particle transport simulation and applications, the latter involving in particular, the use and development of electron--gamma, neutron--gamma and hadronic codes. Besides the basic theory and the methods employed, special attention is paid to algorithm development for modeling, and the analysis of experiments and measurements in a variety of fields ranging from particle to medical physics.

Exploring Monte Carlo Methods


Exploring Monte Carlo Methods

Author: William L. Dunn

language: en

Publisher: Elsevier

Release Date: 2022-06-07


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Exploring Monte Carlo Methods, Second Edition provides a valuable introduction to the numerical methods that have come to be known as "Monte Carlo." This unique and trusted resource for course use, as well as researcher reference, offers accessible coverage, clear explanations and helpful examples throughout. Building from the basics, the text also includes applications in a variety of fields, such as physics, nuclear engineering, finance and investment, medical modeling and prediction, archaeology, geology and transportation planning. - Provides a comprehensive yet concise treatment of Monte Carlo methods - Uses the famous "Buffon's needle problem" as a unifying theme to illustrate the many aspects of Monte Carlo methods - Includes numerous exercises and useful appendices on: Certain mathematical functions, Bose Einstein functions, Fermi Dirac functions and Watson functions