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Titlebook: Dynamics and Stochastic Processes; Theory and Applicati Ricardo Lima,Ludwig Streit,Rui Vilela Mendes Conference proceedings 1990 Springer-V

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Conference proceedings 1990mation on neural networks, chemical dissipation, fractal diffusion, problems in accelerator and fusion physics, pattern formation and self-organisation, control problems in regions of insta- bility, and mathematical modeling in biology.
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0075-8450 find information on neural networks, chemical dissipation, fractal diffusion, problems in accelerator and fusion physics, pattern formation and self-organisation, control problems in regions of insta- bility, and mathematical modeling in biology.978-3-662-13797-0978-3-540-46969-8Series ISSN 0075-8450 Series E-ISSN 1616-6361
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Gail P. Kelly,Sheila S. Slaughter are exhibited. Finally, a stochastic process called grey Brownian motion is constructed based on a probability measure called grey noise. Its relation to fractional diffusion is the same as the one of ordinary Brownian motion to ordinary diffusion.
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Feedback control of resistive modes in tokamaks, and the phase of the modes is obtained. The system presents regimes of both phase and frequency instabilities and shows clearly that the problem of amplitude stabilisation is strictly related to the stabilisation of the phase.
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On a Cantor structure in a satellite scattering problem, the chaotic scattering by a simple billiard: a point particle bounces on two disks and in addition is subjected to a constant acceleration. This leads to a one-parameter family with chaotic scattering. With the help of symbolic dynamics, the structure of the family can be completely elucidated.
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Fractional diffusion, are exhibited. Finally, a stochastic process called grey Brownian motion is constructed based on a probability measure called grey noise. Its relation to fractional diffusion is the same as the one of ordinary Brownian motion to ordinary diffusion.
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Neural networks: Deterministic and stochastic dynamics,ing for, motivates the idea of endowing the dynamics of a neural network with a stochastic transition rule leading to a stationary distribution strongly peacked around global minima..Here we discuss several problems related to the dynamics of both deterministic and stochastic networks with an emphas
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Managing Water in Stressed Environmentsing for, motivates the idea of endowing the dynamics of a neural network with a stochastic transition rule leading to a stationary distribution strongly peacked around global minima..Here we discuss several problems related to the dynamics of both deterministic and stochastic networks with an emphas
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