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Titlebook: Income Modeling and Balancing; A Rigorous Treatment Thomas Kämpke,Franz Josef Radermacher Book 2015 Springer International Publishing Switz

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illustrate our approach using four well-known and nonidentical chaotic systems. The numerical results are consistent with the theory. Additionally, we compare our method with active control, a commonly used approach in this context, and find that optimal control leads to faster synchronization erro
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Thomas Kämpke,Franz Josef Radermacherre the dengue disease in each patch is represented with a SIR-SI epidemic model. In order to consider the seasonality feature of a dengue disease, a piecewise constant signal is introduced in order to switch the growth dynamics of mosquito population into two intervals called favorable and unfavorab
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Thomas Kämpke,Franz Josef Radermacherre the dengue disease in each patch is represented with a SIR-SI epidemic model. In order to consider the seasonality feature of a dengue disease, a piecewise constant signal is introduced in order to switch the growth dynamics of mosquito population into two intervals called favorable and unfavorab
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Thomas Kämpke,Franz Josef Radermachernsion. Interesting phenomena related to chaos have been investigated. In more detail, chaotic and regular orbits, such as periodic or semi-periodic, have been observed. Furthermore, the route to chaos through the mechanism of period doubling, coexisting attractors, and crisis phenomena have been obs
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Thomas Kämpke,Franz Josef Radermacherre the dengue disease in each patch is represented with a SIR-SI epidemic model. In order to consider the seasonality feature of a dengue disease, a piecewise constant signal is introduced in order to switch the growth dynamics of mosquito population into two intervals called favorable and unfavorab
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