"Introduction to Dynamics and Control in Mechanical Engineering Systems" - Information and Links:

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"Introduction to Dynamics and Control in Mechanical Engineering Systems" was published by John Wiley & Sons, Incorporated in 2016 - Newark and it has 1 pages.


“Introduction to Dynamics and Control in Mechanical Engineering Systems” Metadata:

  • Title: ➤  Introduction to Dynamics and Control in Mechanical Engineering Systems
  • Author:
  • Number of Pages: 1
  • Publisher: ➤  John Wiley & Sons, Incorporated
  • Publish Date:
  • Publish Location: Newark

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"Introduction to Dynamics and Control in Mechanical Engineering Systems" Description:

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Intro -- Title Page -- Copyright Page -- Contents -- Series Preface -- Preface -- Acknowledgments -- Chapter 1 Introduction -- 1.1 Important Difference between Static and Dynamic Responses -- 1.2 Classification of Dynamic Systems -- 1.3 Applications of Control Theory -- 1.4 Organization of Presentation -- References -- Chapter 2 Review of Laplace Transforms -- 2.1 Definition -- 2.2 First and Second Shifting Theorems -- 2.3 Dirac Delta Function (Unit Impulse Function) -- 2.4 Laplace Transforms of Derivatives and Integrals -- 2.5 Convolution Theorem -- 2.6 Initial and Final Value Theorems -- 2.7 Laplace Transforms of Periodic Functions -- 2.8 Partial Fraction Method -- 2.9 Questions and Solutions -- 2.10 Applications of MATLAB -- Exercise Questions -- References -- Chapter 3 Dynamic Behaviors of Hydraulic and Pneumatic Systems -- 3.1 Basic Elements of Liquid and Gas Systems -- 3.1.1 Liquids -- 3.1.2 Gases -- 3.1.3 Remarks -- 3.2 Hydraulic Tank Systems -- 3.2.1 Non-interacting Hydraulic Tank Systems -- 3.2.2 Interacting Hydraulic Tank Systems -- 3.3 Nonlinear Hydraulic Tank and Linear Transfer Function -- 3.4 Pneumatically Actuated Valves -- 3.5 Questions and Solutions -- Appendix 3A: Transfer Function of Two Interacting Hydraulic Tanks -- Exercise Questions -- Chapter 4 Dynamic Behaviors of Oscillatory Systems -- 4.1 Elements of Oscillatory Systems -- 4.2 Free Vibration of Single Degree-of-Freedom Systems -- 4.3 Single Degree-of-Freedom Systems under Harmonic Forces -- 4.4 Single Degree-of-Freedom Systems under Non-Harmonic Forces -- 4.5 Vibration Analysis of Multi-Degrees-of-Freedom Systems -- 4.5.1 Formulation and Solution for Two-Degrees-of-Freedom Systems -- 4.5.2 Vibration Analysis of a System with a Dynamic Absorber -- 4.5.3 Normal Mode Analysis -- 4.6 Vibration of Continuous Systems -- 4.6.1 Vibrating Strings or Cables -- 4.6.2 Remarks

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