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Crisis is the Property of Complex Systems

Received: 18 December 2012    Accepted:     Published: 30 December 2012
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Abstract

We can understand of crisis nature only by means of investigation of complex systems. Our socio-economical system is very complicated system. Any complex system interacts with its changing environment and its viability depends on its adaptability. The number of arbitrary coefficients in the structure of equivalent equations of complex system changes in the process of learning. In systems with more than six variables, the number of arbitrary coefficients increases first, and then, passing through the maximum, begins to decrease. This phenomenon makes it possible to explain the processes of system growth, complication and death in biological, economical and physical-engineering systems. We use the linguo-combinatorial method of investigation of complex systems, in taking key words for building equivalent equations. This phenomenon is able to increase the adaptability of different systems. The crisis situation is the distance between the adaptation maximum zone and today situation.

Published in Journal of World Economic Research (Volume 1, Issue 1)
DOI 10.11648/j.jwer.20120101.11
Page(s) 1-5
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Copyright © The Author(s), 2024. Published by Science Publishing Group

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Keywords

Adaptability, Combinatorial Simulation, Uncertainty, Appearance, Essence, General Systems Theory, Physics, Biology, Social-Economics

References
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[2] Morick H. (Ed) (1967) Wittgenstein and the problem of other mind. N.Y.
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[4] Ignatiev M.B. (1963) "Golonomical automatic systems", Publ..AN USSR, Moscow-Leningrad , 204 p.
[5] Ignatiev.M.B. (1993)."Simulation of Adaptational Maximim Phenomenon in Developing Systems" Proceedings of The SIMTEC’93 - 1993 International Simulation Technology Conference, San Francisco, USA.
[6] Ignatyev M.B., D.M.Makina, N.N.Petrischev, I.V.Poliakov, E.V.Ulrich, A.V. Gubin (2000) "Global model of organism for decision making support" Proceedings of the High Per-formance Computing Symposium – HPC 2000, Ed. A. Tentner, 2000 Advanced Simulation Technologies Conference, Washington D.C. USA p.66-71.
[7] Ignatyev M. (2002) "Linguo-combinatorial world picture and reality cognition" Congress-2002 Proceedings "Fundamental problems of natural sciences and engineering" Part 2, St-Petersburg, Russia, p. 116-128.
[8] Ignatyev M.B. (2002) "Linguo-combinatorial method for complex systems simulation" Proceedings of the 6th World Multiconference on Systemics, Cybernetics and Informatics, vol.XI, Computer science II, Orlando, USA p.224-227.
[9] Ignatyev M.B. (2003)"Seven-blocks model of city for deci-sions making support " Proceedings of the seminar "Com-puter models of urban development" St-Petersburg, Russia, p.40-45.
[10] Ignatyev M.(2006) "The study of the adaptational pheno-menon in complex systems". CASYS’05 – Seventh Interna-tional Conference, edited by D.M.Dubois, published by The American Institute of Physics, Melville, NY, AIP Conference Proceedings vol.839, pp.322-330.
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    Mikhail B. Ignatyev. (2012). Crisis is the Property of Complex Systems. Journal of World Economic Research, 1(1), 1-5. https://doi.org/10.11648/j.jwer.20120101.11

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    ACS Style

    Mikhail B. Ignatyev. Crisis is the Property of Complex Systems. J. World Econ. Res. 2012, 1(1), 1-5. doi: 10.11648/j.jwer.20120101.11

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    AMA Style

    Mikhail B. Ignatyev. Crisis is the Property of Complex Systems. J World Econ Res. 2012;1(1):1-5. doi: 10.11648/j.jwer.20120101.11

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  • @article{10.11648/j.jwer.20120101.11,
      author = {Mikhail B. Ignatyev},
      title = {Crisis is the Property of Complex Systems},
      journal = {Journal of World Economic Research},
      volume = {1},
      number = {1},
      pages = {1-5},
      doi = {10.11648/j.jwer.20120101.11},
      url = {https://doi.org/10.11648/j.jwer.20120101.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.jwer.20120101.11},
      abstract = {We can understand of crisis nature only by means of investigation of complex systems. Our socio-economical system is very complicated system. Any complex system interacts with its changing environment and its viability depends on its adaptability. The number of arbitrary coefficients in the structure of equivalent equations of complex system changes in the process of learning. In systems with more than six variables, the number of arbitrary coefficients increases first, and then, passing through the maximum, begins to decrease. This phenomenon makes it possible to explain the processes of system growth, complication and death in biological, economical and physical-engineering systems. We use the linguo-combinatorial method of investigation of complex systems, in taking key words for building equivalent equations. This phenomenon is able to increase the adaptability of different systems. The crisis situation is the distance between the adaptation maximum zone and today situation.},
     year = {2012}
    }
    

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    AB  - We can understand of crisis nature only by means of investigation of complex systems. Our socio-economical system is very complicated system. Any complex system interacts with its changing environment and its viability depends on its adaptability. The number of arbitrary coefficients in the structure of equivalent equations of complex system changes in the process of learning. In systems with more than six variables, the number of arbitrary coefficients increases first, and then, passing through the maximum, begins to decrease. This phenomenon makes it possible to explain the processes of system growth, complication and death in biological, economical and physical-engineering systems. We use the linguo-combinatorial method of investigation of complex systems, in taking key words for building equivalent equations. This phenomenon is able to increase the adaptability of different systems. The crisis situation is the distance between the adaptation maximum zone and today situation.
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    IS  - 1
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Author Information
  • St-Petersburg State University of Aerospace Instrumentation ,67 Bolshaja Morskaja uliza, St-Petersburg, Russia

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