Intense Dynamic Loading Of Condensed Matter

Intense Dynamic Loading Of Condensed Matter

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This Book Reviews The Science And Technology Necessary To Understand, Predict, And Simulate The Phenomena Associated With Intense Dynamic Loading Of Matter. The Book Begins With Background Information On Shock Wave Phenomena In Materials And How They Are Measured. This Includes Materials With Strength, Materials Undergoing Dynamic Phase Transformations, And Material Fracturing. The Authors Then Cover The Phenomena Associated With Detonations, Where The Chemical Energy Release Of An Explosive Is An Integral Part Of The Hydrodynamics And Describe The Formation And Application Of The Semiempirical Equation Of State. They Develop The Numerical Techniques For Doing Realistic Computer Simulations Of Complicated Dynamical Processes Associated With Impacts. The Book Closes With Reviews Simulations, Compared With Experiments, For A Variety Of Dynamic Loading Events, Including Laser And Electron Beam Interactions With Metals, High Explosive Loading Of Iron, And Impacts Of Cometary Dust On The Vega Space Probe As It Crossed The Tail Of Hailey'S Comet.

⚠️ WARNING (California Proposition 65):

This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm.

For more information, please visit www.P65Warnings.ca.gov.

  • Q: What is the main focus of 'Intense Dynamic Loading Of Condensed Matter'? A: The book primarily reviews the science and technology related to understanding, predicting, and simulating phenomena associated with intense dynamic loading of matter, including shock wave phenomena and material fracturing.
  • Q: Who is the author of this book? A: The author of 'Intense Dynamic Loading Of Condensed Matter' is A. V. Bushman.
  • Q: What is the publication date of this book? A: The book was published on December 1, 1992.
  • Q: What type of binding does this book have? A: This book is available in hardcover binding.
  • Q: How many pages are in 'Intense Dynamic Loading Of Condensed Matter'? A: The book contains a total of 297 pages.
  • Q: What topics are covered in this book? A: The book covers shock wave phenomena, dynamic phase transformations, material fracturing, and numerical techniques for computer simulations of dynamic loading events.
  • Q: Is this book suitable for beginners in the field of materials science? A: The book is more suitable for readers with a foundational understanding of materials science, as it delves into complex phenomena associated with dynamic loading.
  • Q: What types of dynamic loading events are discussed in the book? A: The book reviews various dynamic loading events such as laser and electron beam interactions with metals and high explosive loading of iron.
  • Q: Does the book include experimental comparisons? A: Yes, the book includes reviews of simulations compared with experiments for different dynamic loading scenarios.
  • Q: What can I learn from this book regarding numerical techniques? A: You can learn about the development of numerical techniques for conducting realistic computer simulations of complex dynamical processes associated with impacts.

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