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Theory of gyroscopic effects for rot...
~
Usubamatov, Ryspek.
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Theory of gyroscopic effects for rotating objects = gyroscopic effects and applications /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Theory of gyroscopic effects for rotating objects/ by Ryspek Usubamatov.
其他題名:
gyroscopic effects and applications /
作者:
Usubamatov, Ryspek.
出版者:
Singapore :Springer Singapore : : 2020.,
面頁冊數:
xviii, 263 p. :ill., digital ;24 cm.
內容註:
Preface -- Abstract -- Nomenclature -- Chapter 1 Gyroscopic effects in engineering -- Chapter 2 Acceleration analysis of rotating object -- Chapter 3 Inertial forces acting on simple spinning objects -- Chapter 4 Properties and specifies of gyroscopic torques -- Chapter 5 Mathematical models for motions of a gyroscope suspended from the flexible cord -- Chapter 6 Mathematical models for motions of a gyroscope with one side support -- Chapter 7 Mathematical models for the top motions and gyroscope nutation -- Chapter 8 Gyroscopic effects of deactivation of inertial forces -- Appendix A -- Appendix B.
Contained By:
Springer Nature eBook
標題:
Rotational motion (Rigid dynamics) -
電子資源:
https://doi.org/10.1007/978-981-15-6475-8
ISBN:
9789811564758
Theory of gyroscopic effects for rotating objects = gyroscopic effects and applications /
Usubamatov, Ryspek.
Theory of gyroscopic effects for rotating objects
gyroscopic effects and applications /[electronic resource] :by Ryspek Usubamatov. - Singapore :Springer Singapore :2020. - xviii, 263 p. :ill., digital ;24 cm.
Preface -- Abstract -- Nomenclature -- Chapter 1 Gyroscopic effects in engineering -- Chapter 2 Acceleration analysis of rotating object -- Chapter 3 Inertial forces acting on simple spinning objects -- Chapter 4 Properties and specifies of gyroscopic torques -- Chapter 5 Mathematical models for motions of a gyroscope suspended from the flexible cord -- Chapter 6 Mathematical models for motions of a gyroscope with one side support -- Chapter 7 Mathematical models for the top motions and gyroscope nutation -- Chapter 8 Gyroscopic effects of deactivation of inertial forces -- Appendix A -- Appendix B.
This book highlights an analytical solution for the dynamics of axially symmetric 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, common inertial, Coriolis forces, as well as the change in their angular momentum. These torques constitute the fundamental principles of the mechanical gyroscope theory that can be used for any rotating objects, like rings, cones, spheres, paraboloids and propellers of different designs. Lastly, the mathematical models for the gyroscopic effects are validated by practical tests.
ISBN: 9789811564758
Standard No.: 10.1007/978-981-15-6475-8doiSubjects--Topical Terms:
2188895
Rotational motion (Rigid dynamics)
LC Class. No.: QA863 / .U78 2020
Dewey Class. No.: 531.34
Theory of gyroscopic effects for rotating objects = gyroscopic effects and applications /
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Preface -- Abstract -- Nomenclature -- Chapter 1 Gyroscopic effects in engineering -- Chapter 2 Acceleration analysis of rotating object -- Chapter 3 Inertial forces acting on simple spinning objects -- Chapter 4 Properties and specifies of gyroscopic torques -- Chapter 5 Mathematical models for motions of a gyroscope suspended from the flexible cord -- Chapter 6 Mathematical models for motions of a gyroscope with one side support -- Chapter 7 Mathematical models for the top motions and gyroscope nutation -- Chapter 8 Gyroscopic effects of deactivation of inertial forces -- Appendix A -- Appendix B.
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This book highlights an analytical solution for the dynamics of axially symmetric 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, common inertial, Coriolis forces, as well as the change in their angular momentum. These torques constitute the fundamental principles of the mechanical gyroscope theory that can be used for any rotating objects, like rings, cones, spheres, paraboloids and propellers of different designs. Lastly, the mathematical models for the gyroscopic effects are validated by practical tests.
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