[PDF] Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications By Zach Liang and George C. Lee Free Download


[PDF] Download Zach Liang and George C. Lee by Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications

Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications written by Zach Liang and George C. Lee is very useful for Mechanical Engineering (MECH) students and also who are all having an interest to develop their knowledge in the field of Design, Automobile, Production, Thermal Engineering as well as all the works related to Mechanical field. This Book provides an clear examples on each and every topics covered in the contents of the book to provide an every user those who are read to develop their knowledge.

Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications written to meet exhaustively the requirements of various syllabus in the subject of the courses in B.E /B.Tech/ B.Sc (Engineering) of various Indian Universities. It is Equally suitable for UPSC, AIME and all other competitive examinations in the field of Engineering.

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Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications By Zach Liang and George C. Lee – PDF Free DownloadRandom Vibration By Zach Liang
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Description of a Book

After determining that most textbooks on random vibrations are mathematically intensive and often too difficult for students to fully digest in a single course, the authors of Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications decided to revise the current standard. This text incorporates more than 20 years of research on formulating bridge design limit states. Utilizing the authors’ experience in formulating real-world failure probability-based engineering design criteria, and their discovery of relevant examples using the basic ideas and principles of random processes, the text effectively helps students readily grasp the essential concepts. It eliminates the rigorous math-intensive logic training applied in the past, greatly reduces the random process aspect, and works to change a knowledge-based course approach into a methodology-based course approach. This approach underlies the book throughout, and students are taught the fundamental methodologies of accounting for random data and random processes as well as how to apply them in engineering practice.

Gain a Deeper Understanding of the Randomness in Sequences

Presented in four sections, the material discusses the scope of random processes, provides an overview of random processes, highlights random vibrations, and details the application of the methodology. Relevant engineering examples, included throughout the text, equip readers with the ability to make measurements and observations, understand basic steps, validate the accuracy of dynamic analyses, and master and apply newly developed knowledge in random vibrations and corresponding system reliabilities.

Comprising 11 Chapters, this text:

  1. Reviews the theory of probability and applies it from an engineering perspective
  2. Introduces basic concepts and formulas to prepare for discussions of random processes
  3. Emphasizes the essence of probability as the chance of occurrence in sample space
  4. Covers two important issues in engineering practice, the uncertainty of data and the probability of failure
  5. Explores the random processes in the time domain
  6. Explains the nature of time-varying variables by joint PDF through the Kolmogorov extension
  7. Examines random processes in the frequency domain
  8. Discusses several basic and useful models of random processes
  9. Presents a new set of statistics for random processes
  10. Employs an approach to present important processes within the context of practical engineering problems
  11. Includes the generality of dealing with randomness and the difference between random variables and processes
  12. Focuses on the topic of vibration problems
  13. Addresses the basic parameters of linear single-degree-of-freedom (SDOF) systems
  14. Stresses a new method of random process referred to as time series
  15. Details linear multi-degree-of-freedom (MDOF) systems
  16. Describes the statistical analyses of direct approach based on model decoupling of proportionally and nonproportionally-damped systems
  17. Provides materials on the applications of random processes and vibration
  18. Discusses statistical studies on random data and model identifications
  19. Describes the nonlinear phenomena and the general approach of linearization
  20. Highlights a special method of Monte Carlo simulation, and more
  21. Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications effectively integrates the basic ideas, concepts, principles, and theories of random processes. This enables students to understand the basic methodology and establish their own logic to systematically handle the issues facing the theory and application of random vibrations.

About Author

Zach Liang and George C. Lee

Book Details

Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications written by Zach Liang and George C. Lee detailed in the below table…

Name of the Book Random Vibration: Mechanical, Structural, and Earthquake Engineering Applications
Name of the Author(s) Zach Liang and George C. Lee
Language English

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