Dynamical Systems Induced by Continuous Time Difference Equations and Long-time Behavior of Solutions |
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Authors: | Elena Yu. Romanenko |
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Affiliation: | Institute of Mathematics , National Academy of Science of Ukraine , Kiev, 01601, Ukraine |
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Abstract: | The paper considers the continuous time difference equation x(t + 1) = f(x(t)), t?R + (?) with f being a continuous interval map. Although the long-time behavior of continuous solutions of Eq. (?) has been extensively described under certain added conditions, there are a number of relatively simple and yet pivotal results for Eq. (?) with no restrictions on f , that were not published. The paper is to compensate for this gap. Herein, properties of the solutions are derived from that of the ω -limit sets of trajectories of the dynamical system induced by Eq. (?) . In particular, if the ω -limit set corresponding a solution x(t) is a cycle or the closure of an almost periodic trajectory, x(t) tends (in the Hausdorff metric for graphs) to a certain upper semicontinuous function. |
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Keywords: | Dynamical System Difference Equation With Continuous Time 1d Maps Upper Semicontinuous Functions Gradient Catastrophe |
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