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Gyroscopic Effects and Applications
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This book highlights an analytical solution for the dynamics of axially rotating objects. It also presents the theory of gyroscopic effects, explaining their physics and using mathematical models of Euler’s form for the motion of movable spinning objects to demonstrate these effects. The major themes and approaches are represented by the spinning disc and the action of the system of interrelated inertial torques generated by the centrifugal and Coriolis forces, as well as the change in the angular momentum. The interrelation of inertial torques is based on the dependency of the angular velocities of the motions of the spinning objects around axes by the principle of mechanical energy conservation. These kinetically interrelated torques constitute the fundamental principles of the mechanical gyroscope theory that can be used for any rotating objects of different designs, like rings, cones, spheres, paraboloids, propellers, etc. Lastly, the mathematical models for the gyroscopic effects are validated by practical tests. This book is highlighted in its already third edition.
The new edition comprises many new sections for several chapters or new chapters. The most important ones are:
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Dr. Ryspek Usubamatov graduated from the Moscow State Technical University after N. Bauman with a professional engineer in Mechanical and Manufacturing Engineering and Ph.D. in Industrial Engineering. He obtained Dr. Tech. Sc. in Academy of Sciences of Kyrgyzstan. His industrial experience includes work as a registered professional engineer in machine tools design at the Bishkek Engineering Plant of Kyrgyzstan. Academic professional experience has involved teaching at the Universities of Kyrgyzstan and Malaysia. His major areas of research are mechanical, manufacturing, and industrial engineering where published 8 books around 400 manuscripts, and 61 patents of inventions. He is the author of two fundamental works, "Productivity Theory for Industrial Engineering", Taylor & Francis, 2018, and "Theory of Gyroscopic Effects, for Rotating Objects", Springer, 2022.
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