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Titlebook: Dynamic Stability of Bodies Containing Fluid; N. N. Moiseyev,V. V. Rumyantsev,N. H. Abramson Book 1968 Springer Verlag New York Inc. 1968

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Fluid Surface Phenomena and Their Effect on the Motion of a Body Containing a Fluiditational forces or inertial forces. The free surface of the fluid was considered as free of any stresses. For an extensive group of problems this model is completely satisfactory. But actually each real fluid is also subjected to surface tension forces and, when the mass forces are weak (for exampl
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0066-5509 of such bodies, in particular, has been the subject of study by Soviet engineers and applied mathematicians who have brought their fuH powers of analysis to bear on the problem, and have succeeded in developing a very weH-founded body of theory. It is difficult to find a more striking example anywhe
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Gelassen ans Werk: Strategie und Umsetzung and thus has no free surface. If the motion of the fluid is potential or homogeneous turbulent motion (quasi-solid), then the motion of the system is described by ordinary differential equations together with Laplace’s equation.,.. The study of the motion of the system in these cases is appreciably simplified.
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Empirischer Zugang zu Werthaltungenicity that the vibrating system contains only one “fluid link,” i.e., one cavity with an ideal incompressible fluid. All of the results are trivially extended to the case of an arbitrary number of cavities.
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Elementary Cases of Motion of a Rigid Body Containing a Fluid and thus has no free surface. If the motion of the fluid is potential or homogeneous turbulent motion (quasi-solid), then the motion of the system is described by ordinary differential equations together with Laplace’s equation.,.. The study of the motion of the system in these cases is appreciably simplified.
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Statement of the Problems of the Theory of Vibrationsicity that the vibrating system contains only one “fluid link,” i.e., one cavity with an ideal incompressible fluid. All of the results are trivially extended to the case of an arbitrary number of cavities.
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Gelassen ans Werk: Strategie und Umsetzung to some variables., but not with respect to all the variables that characterize the motion of a system having an infinite number of degrees of freedom. This problem can be solved by the Lyapunov methods for systems with a finite number of degrees of freedom.
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Das Zeichen zum Aufbruch: „Ja, ich will!“body containing a fluid reduces to the problem of minimizing a certain expression. a solution to which is given.. The results are used for solving a number of problems of stability of motion of bodies containing a fluid.
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