Evolution of motions of a rigid body about its center of mass / by Felix L. Chernousko, Leonid D. Akulenko, Dmytro D. Leshchenko.
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NU Fairview College LRC | NU Fairview College LRC | School of Engineering and Technology | General Circulation | GC QA 839 C44 2017 (Browse shelf(Opens below)) | Available | NUFAI000005688 |
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GC QA 297 P73 2023 MATLAB for beginners / | GC QA 303 P48 1968 Calculus with Analytic Geometry | GC QA 371 Z55 2014 A First Course in Differential Equations with Modeling Application | GC QA 839 C44 2017 Evolution of motions of a rigid body about its center of mass / | GC QA 861 K56 2013 Rigid body dynamics for beginners : euler angles & quaternions / | GC QA 861 K56 2022 An effective rigid body math model / | GC QA 9 G66 2022 Mathematical logic through Python / |
The foundations of dynamics of a rigid body with a fixed point. -- Motion of a rigid body by inertia. Euler's case. -- Lagrange's case. -- Equations of perturbed motion of a rigid body about its center of mass. -- Perturbation torques acting upon a rigid body. -- Motion of a satellite about its center of mass under the action of gravitational torque. -- Motion of a rigid body with a cavity filled with a viscous fluid. -- Evolution of rotations of a rigid body in a medium. -- Motion of a rigid body with internal degrees of freedom. -- Influence of the torque due to the solar pressure upon the motion of a Sun satellite relative to its center of mass.-- Perturbed motions of a rigid body close to Lagrange's case. --
The book presents a unified and well-developed approach to the dynamics of angular motions of rigid bodies subjected to perturbation torques of different physical nature. It contains both the basic foundations of the rigid body dynamics and of the asymptotic method of averaging. The rigorous approach based on the averaging procedure is applicable to bodies with arbitrary ellopsoids of inertia. Action of various perturbation torques, both external (gravitational, aerodynamical, solar pressure) and internal (due to viscous fluid in tanks, elastic and visco-elastic properties of a body) is considered in detail. The book can be used by researchers, engineers and students working in attitude dynamics of spacecraft.
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