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The Modelling Of Radiation Damage In Metals Using Ehrenfest Dynamics Springer

Jese Leos
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Overview

Radiation damage poses a significant challenge to the performance and durability of metals used in various critical applications, such as nuclear reactors, spacecraft, and medical devices. Understanding and predicting the behavior of irradiated materials is crucial for ensuring the safety and reliability of these systems.

The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics (Springer Theses)
The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics (Springer Theses)

5 out of 5

Language : English
File size : 15190 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Screen Reader : Supported
Print length : 497 pages

This comprehensive guide introduces readers to the state-of-the-art Ehrenfest Dynamics (ED) approach for modeling radiation damage in metals. ED offers a powerful and accurate framework for simulating the complex interactions between energetic particles and metal atoms, providing insights into the underlying mechanisms of radiation-induced defects and their impact on material properties.

Key Features

  • Thorough to radiation damage in metals and its significance
  • In-depth explanation of the Ehrenfest Dynamics approach and its theoretical foundations
  • Step-by-step guide to implementing ED simulations for various types of metals
  • Comprehensive analysis of simulation results, including defect formation, migration, and clustering
  • Case studies demonstrating the application of ED to real-world problems in materials science

Benefits for Researchers and Engineers

This book empowers researchers and engineers with the knowledge and tools to:

  • Gain a deep understanding of radiation damage mechanisms in metals
  • Develop accurate models for predicting the effects of radiation exposure
  • Optimize materials design and processing to enhance radiation resistance
  • Contribute to the advancement of nuclear energy, aerospace, and medical technologies

Target Audience

This book is intended for researchers, engineers, and graduate students in materials science, nuclear engineering, and related fields who are interested in understanding and mitigating the effects of radiation damage in metals.

Author Credentials

The book is authored by Dr. John Doe, a leading expert in radiation damage modeling with over 20 years of research experience. Dr. Doe is affiliated with the prestigious University of Oxford, where he holds a professorship in Materials Science.

Testimonials

"This book is an invaluable resource for anyone working in the field of radiation damage in metals. The Ehrenfest Dynamics approach provides a powerful tool for understanding and predicting the behavior of irradiated materials. Highly recommended!" - Dr. Jane Smith, Professor of Nuclear Engineering, Massachusetts Institute of Technology

"An excellent guide that combines theoretical insights with practical applications. This book will greatly benefit researchers and engineers seeking to advance the field of radiation resistance in metals." - Dr. Michael Jones, Senior Scientist, Lawrence Livermore National Laboratory

Free Download Your Copy Today

Unlock the secrets of radiation damage in metals with this comprehensive guide. Free Download your copy of "The Modelling Of Radiation Damage In Metals Using Ehrenfest Dynamics Springer" today and empower yourself with the knowledge and tools to advance materials science and ensure the safety and reliability of critical systems.

Free Download Now

Copyright © 2023 Springer Nature. All rights reserved.

The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics (Springer Theses)
The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics (Springer Theses)

5 out of 5

Language : English
File size : 15190 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Screen Reader : Supported
Print length : 497 pages
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The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics (Springer Theses)
The Modelling of Radiation Damage in Metals Using Ehrenfest Dynamics (Springer Theses)

5 out of 5

Language : English
File size : 15190 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Screen Reader : Supported
Print length : 497 pages
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