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Titlebook: High Performance Computing in Science and Engineering ‘20; Transactions of the Wolfgang E. Nagel,Dietmar H. Kröner,Michael M. Res Conferen

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could suitably be extended to non-reversible dissipative systems. We review here those arguments, by discussing the properties of a simple irreversible nonequilibrium baker model. We also consider the problem of the extension of the Fluctuation-Dissipation Theorem to dissipative deterministic dynami
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Pedro A. Romero,Angelika Brink,Matthias Scherge,Michael Moselerators inherently possess these two properties. Consequently, chaotic transmitter-receiver synchronization emerges as a key-topic in networked communication. The issues of synchronization robustness and synchronization stability are of great importance, if one means to turn in advantage properties of
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Thorsten Zirwes,Feichi Zhang,Jordan A. Denev,Peter Habisreuther,Henning Bockhorn,Dimosthenis TrimisArrays (FPGAs) for implementing nonlinear dynamical systems that exhibit chaotic behaviour. An FPGA is basically a “blank-slate” of hardware that can be “programmed” to emulate a plethora of digital systems. The purpose of this chapter is to expose this exciting engineering product for investigating
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