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Titlebook: Galloping Instability to Chaos of Cables; Albert C. J. Luo,Bo Yu Book 2017 Springer Nature Singapore Pte Ltd. and Higher Education Press,

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Nonlinear Dynamical Systems,ssed. The stability switching and bifurcation on specific eigenvectors of the linearized system at equilibrium will be discussed. The higher order singularity and stability for nonlinear systems on the specific eigenvectors will be developed.
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Analytical Methods,esented. This method is the generalized harmonic balance method. This method is first to determine a basis of trigonometric functions, and then to use the finite Fourier series for expression of periodic solutions in nonlinear dynamical systems. Further, using Functional analysis, the coefficients o
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Two-Degree-of-Freedom Nonlinear Oscillators,with the finite Fourier series expression are obtained from the generalized harmonic balance method, and the stability and bifurcation analyses of the corresponding period-. motions in the two-degree-of-freedom system are carried out.
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Linear Cable Galloping, the two degree-of-freedom oscillator is only from aero-dynamical forces caused by the uniform airflow. The analytical solutions of periodic motions for linear cable galloping are discussed from the analytical solutions with the finite Fourier series. The corresponding stability and bifurcation anal
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Jakob Rechsteinern isolation are not new in the software domain. In this paper I will discuss some of these challenges, what is new and possible solutions making reference to the approach undertaken in the IST PLASTIC project for a specific instance of Softure focused on software for Beyond 3G (B3G) networks.
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Knowledge Versioning Dynamics during the Design Process in a Concurrent Engineering Environmentt results multiple interactions and disagreement between them. Besides, many product data and knowledge are modified and changed throughout this dynamic process. To capitalize and have traceability of knowledge modifications, we need to versioning those pieces of knowledge. This paper aims firstly t
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