Self-Organization in Nonequilibrium Systems¶
Nicolis, G., & Prigogine, I. (1977). Self-Organization in Nonequilibrium Systems: From Dissipative Structures to Order through Fluctuations. Wiley.
Cited by¶
2 citations across 2 artifacts.
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Primes¶
- Self-Organization
- Nicolis and Prigogine (1977) developed the theory of self-organization in non-equilibrium systems, providing mathematical foundations for order emergence in physics, chemistry, and computation
This sourceDevelops the mathematical and thermodynamic mechanisms by which sustained energy throughput, fluctuation amplification, and nonlinear feedback produce stable far-from-equilibrium order; basis for multi-scale dissipation and fluctuation-driven sustenance mechanisms. Combined with Kauffman (1993, The Origins of Order, Oxford University Press) on adaptive fitness-landscape exploration via mutation–selection coupling.
- Nicolis and Prigogine (1977) developed the theory of self-organization in non-equilibrium systems, providing mathematical foundations for order emergence in physics, chemistry, and computation
- Self-Organized Criticality
- Several mechanisms are empirically observed, drawing on Nicolis and Prigogine's (1977) analysis of self-organization in nonequilibrium systems and Kauffman's (1993) treatment of fitness landscapes and adaptive exploration:
This sourceDevelops the mathematical and thermodynamic mechanisms by which sustained energy throughput, fluctuation amplification, and nonlinear feedback produce stable far-from-equilibrium order; basis for multi-scale dissipation and fluctuation-driven sustenance mechanisms. Combined with Kauffman (1993, The Origins of Order, Oxford University Press) on adaptive fitness-landscape exploration via mutation–selection coupling.
- Several mechanisms are empirically observed, drawing on Nicolis and Prigogine's (1977) analysis of self-organization in nonequilibrium systems and Kauffman's (1993) treatment of fitness landscapes and adaptive exploration:
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