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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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Introduction,4, Iva05, IB05, PI03, PI04]). The dynamics of human motion is extremely complex, multi–dimensional, highly nonlinear and hierarchical. Human skeleton has more than two hundred rigid bones, connected by rotational joints, witch have up to three axes of rotation. Nevertheless, in classical biomechanic
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,Covariant Biophysics of Electro–Muscular Stimulation,FES) of human skeletal muscles is used in rehabilitation and in medical orthotics to externally stimulate the muscles with damaged neural control (see, e.g., [VHI87]). However, the repetitive use of electro–muscular stimulation, besides functional, causes also structural changes in the stimulated mu
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https://doi.org/10.1007/978-3-663-13883-94, Iva05, IB05, PI03, PI04]). The dynamics of human motion is extremely complex, multi–dimensional, highly nonlinear and hierarchical. Human skeleton has more than two hundred rigid bones, connected by rotational joints, witch have up to three axes of rotation. Nevertheless, in classical biomechanic
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Motion of Turbulent Vortex Rings,us geometry, let us consider a simple 3DOF biomechanical system (e.g., a representative point of the center of mass of the human body) determined by three . = .. There is a unique way to represent this system as a 3D manifold, such that to each point of the manifold there corresponds a definite conf
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Some Studies of the Flow Past Cylinders,FES) of human skeletal muscles is used in rehabilitation and in medical orthotics to externally stimulate the muscles with damaged neural control (see, e.g., [VHI87]). However, the repetitive use of electro–muscular stimulation, besides functional, causes also structural changes in the stimulated mu
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Signals and Communication Technologyussed. The physico-chemical properties of clay mineral layers, including the reactivity at the edges surfaces, are introduced together with their consequences for the various mechanisms of clay-polymer interactions. The chapter closes on a brief presentation of synthetic clay minerals and a general introduction to clay polymer nanocomposites.
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