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Titlebook: Human-Like Biomechanics; A Unified Mathematic Vladimir G. Ivancevic,Tijana T. Ivancevic Book 2006 Springer Science+Business Media B.V. 2006

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Motion of Turbulent Vortex Rings,tem. For this reason, the manifold is called the .. If the biomechanical system moves in any way, its coordinates are given as the functions of the time. Thus, the motion is given by equations of the form: . = .(.). As . varies we observe that the system’s . in the configuration manifold describes a . and . = .(.)are the equations of this curve.
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,Geometric Basis of Human–Like Biomechanics,tem. For this reason, the manifold is called the .. If the biomechanical system moves in any way, its coordinates are given as the functions of the time. Thus, the motion is given by equations of the form: . = .(.). As . varies we observe that the system’s . in the configuration manifold describes a . and . = .(.)are the equations of this curve.
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https://doi.org/10.1007/978-3-663-13883-9s the main analytical tool was . (see Figure 1.1). The skeleton is driven by a synergistic action of its 640 skeletal muscles. Each of these muscles has its own . and . dynamics, in which neural action potentials are transformed into muscular force vectors (see [Hat77a, Hat77b, Hat78]).
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Introduction,s the main analytical tool was . (see Figure 1.1). The skeleton is driven by a synergistic action of its 640 skeletal muscles. Each of these muscles has its own . and . dynamics, in which neural action potentials are transformed into muscular force vectors (see [Hat77a, Hat77b, Hat78]).
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Jie-Zhi Wu,Hui-Yang Ma,Ming-De Zhounal principles of holonomic mechanics. Next we depart to nonholonomic. At the end, we present the current research in biomechanics given in the framework of Lie–Lagrangian and Lie–Hamiltonian functors.
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Some Studies of the Flow Past Cylinders,, e.g., [VHI87]). However, the repetitive use of electro–muscular stimulation, besides functional, causes also structural changes in the stimulated muscles, giving the physiological effect of muscular training.
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Book 2006 covariant biophysics of electro-muscular stimulation. The Appendix consists of two parts: classical muscular mechanics and modern path integral methods, which are both used frequently in the main text. The whole book is based on the authors’ own research papers in human-like biomechanics..
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