A new theoretical foundation for the discrete dynamics of physicochemical systems is presented. Based on the analogy between the À-theorem of the theory of dimensionality, the second law of thermodynamics and the stoichiometry of complex physicochemical reactions, basic dynamic equations and an extreme principle were formulated. The meaning of discrete time and space in the proposed equations is discussed. Some results of numerical calculations are presented to demonstrate the potential of the proposed approach to the mathematical simulation of spatiotemporal physicochemical reaction dynamics
Welcome to the first issue of Discrete Dynamics in Nature and Society. We are sure that you will find new and interesting information about discrete dynamics, and we invite you to contribute your own ideas to the fascinating field of Discrete Non-linear Dynamics. Over the past decades, Discrete Non-linear Dynamics has emerged as an active area of re
An automatic procedure for generating colored two-dimensional symmetrical images based on the chemical reactions discrete chaotic dynamics (CRDCD) is proposed. The inverse problem of derivation of symmetrical images from CRDCD mathematical models was formulated and solved using a special type of genetic algorithm. Different symmetrical images corresponding to the solutions of a CRDCD mathematical model for which the parameters were obtained automatically by the proposed method are presented.
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