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  1. Wilson Renormalization Group Phase-Space Cell Analysis 1971
  2. Wilson 1971: Renormalization Group and the Kadanoff Scaling Picture
  3. Wilson 1975: Renormalization Group, Scale Invariance, and Critical Phenomena
  4. Wilson and Fisher on Critical Exponents in 3.99 Dimensions
  5. Wilson 1979: Problems in Physics with Many Scales of Length
  6. Wilson's Renormalization Group and Critical Phenomena (1983)
  7. Feigenbaum 1978: Quantitative Universality in Nonlinear Maps
  8. Feigenbaum on Universal Behavior in Nonlinear Systems (1983)
  9. Feigenbaum 1979: Universal metric properties of nonlinear transformations
  10. Chaitin 1975: A Theory of Program Size Formally Identical to Information Theory
  11. Chaitin Algorithmic Information Theory 1987
  12. Chaitin, Meta Math! The Quest for Omega (2005)
  13. Chaitin on the Limits of Mathematics (2012)
  14. Chaitin, Proving Darwin: Making Biology Mathematical (2012)
  15. Kolmogorov 1941: Local Structure of Turbulence
  16. Kolmogorov 1941: Dissipation of Energy in Locally Isotropic Turbulence
  17. Kolmogorov 1962: Refinement of Local Turbulence Structure
  18. Kolmogorov 1958: A Metric Invariant for Dynamical Systems
  19. Kolmogorov 1963: On the Definition of Algorithms
  20. Kolmogorov 1954: Conservation of Conditionally Periodic Motions
  21. Kolmogorov (1965): Three Approaches to the Quantitative Definition of Information
  22. Frisch (1995) Turbulence: The Legacy of A. N. Kolmogorov
  23. Shannon and Weaver: The Mathematical Theory of Communication (1949)
  24. Shannon, C.E. (1948). A Mathematical Theory of Communication
  25. Euler's Mechanica: Analytical Exposition of Motion
  26. Euler 1736: Geometry of Position and Network Structure
  27. Euler, L. (1755/1757). Principes généraux du mouvement des fluides
  28. Euler's Polyhedral Formula
  29. Noether (1918): Invariante Variationsprobleme
  30. Kosmann-Schwarzbach (2011) on the Noether Theorems
  31. Neuenschwander on Emmy Noether's Theorem
  32. Rowe on Emmy Noether's Theorems: Symmetry, Invariants, and Conservation
  33. Mandelbrot 1975: Fractals Form Chance and Dimension
  34. Mandelbrot 1967: Statistical Self-Similarity and Fractional Dimension
  35. Mandelbrot, Fractals and Scaling in Finance (1997)
  36. Mandelbrot Fractals Form Chance and Dimension 1977
  37. Mandelbrot on Multifractals and 1/f Noise: Wild Self-Affinity in Physics
  38. Mandelbrot, The Fractalist: Memoir of a Scientific Maverick
  39. von Neumann and Morgenstern: Theory of Games and Economic Behavior (1944)
  40. von Neumann (1948): The General and Logical Theory of Automata
  41. von Neumann (1956): Probabilistic Logics and Reliable Organisms from Unreliable Components
  42. von Neumann and Burks: Theory of Self-Reproducing Automata (1966)
  43. Von Neumann: The Computer and the Brain (1958)
  44. Moralez and Favela on Thermodynamics and Cognition (2016)
  45. Vogel (1991): Uninvited Guests – A Thermodynamic Approach to Resource Allocation
  46. Mussett, S.M. (2022). Entropic Philosophy: Chaos, Breakdown, and Creation
  47. Axelrod and Hamilton (1981): The Evolution of Cooperation
  48. Axelrod 1984 The Evolution of Cooperation
  49. Axelrod (1997) The Complexity of Cooperation
  50. Axelrod and Cohen on Harnessing Complexity in Organizations
  51. Ostrom, E. (1990). Governing the Commons: The Evolution of Institutions for Collective Action
  52. Ostrom, E. (2005). Understanding Institutional Diversity
  53. Ostrom (2009): Polycentric Governance of Complex Economic Systems
  54. Ostrom 2009: A General Framework for Socio-Ecological Sustainability
  55. Ydri (2025): Stapledon's Star Maker, Ibn Arabi's Unveiling, Jung's Individuation and Boltzmann's Thermodynamics
  56. Charles X. Yang, From Laozi to Prigogine: The Generative Dynamics of the Universe
  57. Peirce, C.S. (1891). The Architecture of Theories
  58. Peirce, C.S. (1892). The Doctrine of Necessity Examined
  59. Peirce, C.S. (1892). The Law of Mind
  60. Peirce Evolutionary Love 1893
  61. Peirce, C.S. (c. 1887-1888). A Guess at the Riddle
  62. Peirce 1898 Lectures: Reasoning and the Logic of Things
  63. Peirce's Neglected Argument for the Reality of God (1908)
  64. Teilhard de Chardin: The Phenomenon of Man
  65. Teilhard de Chardin: The Divine Milieu (1957)
  66. Teilhard de Chardin: The Formation of the Noosphere (1947)
  67. Teilhard de Chardin: The Heart of Matter
  68. Teilhard de Chardin, Man's Place in Nature (1956)
  69. Eigen and Schuster on the Hypercycle (1977)
  70. Ramstead, Badcock, and Friston: A Free-Energy Formulation of Autopoietic Systems
  71. Gierer and Meinhardt 1972: Reaction-Diffusion Patterns in Biology
  72. Von Bertalanffy General System Theory 1968
  73. Gershman on the Free Energy Principle: What It Tells Us About the Brain
  74. Nietzsche, F. (1886). Jenseits von Gut und Böse (Beyond Good and Evil)
  75. Nietzsche's The Gay Science and Eternal Recurrence
  76. Nietzsche, F. (1887). Zur Genealogie der Moral (On the Genealogy of Morality)
  77. Nietzsche, The Will to Power (1901): Will to Power as Physics of Forces and Eternal Recurrence
  78. Sinhababu on Nietzsche's Eternal Recurrence
  79. Neves (2016): Nietzsche for Physicists
  80. Deleuze's Difference and Repetition (1968)
  81. Deleuze and Guattari, Anti-Oedipus (1972)
  82. Deleuze and Guattari, A Thousand Plateaus (1980)
  83. Bergson Creative Evolution 1907
  84. DiFrisco on Bergson’s Élan Vital and the Thermodynamic Paradigm
  85. Bergson, H. (1896). Matter and Memory
  86. Bergson: The Two Sources of Morality and Religion (1932)
  87. Szendrei on Bergson, Prigogine and the Rediscovery of Time
  88. Whitehead, A.N. (1925). Science and the Modern World
  89. Whitehead Process and Reality 1929
  90. Whitehead, A.N. (1920). The Concept of Nature
  91. Whitehead's Adventures of Ideas (1933): Process Metaphysics Applied to Civilization
  92. Principia Mathematica (1910-1913) by Whitehead and Russell
  93. Alfred North Whitehead, Modes of Thought (1938)
  94. Spinoza Ethics 1677: Substance Modes Conatus and Necessary Order
  95. Evolutionary Thermodynamics and Theory of Social Quality (Westbroek, Nijhuis, van der Maesen 2020)
  96. Smith, E. (2008). Thermodynamics of natural selection I: Energy flow and the limits on organization
  97. Bizzarri on Nature Between Heraclitus and Prigogine
  98. Ulanowicz 2009: Increasing Entropy – Heat Death or Perpetual Harmonies?
  99. van der Leeuw, S.E. (2026). From Aristotle to Heraclitus
  100. Bassford: Heraclitean Flux Metaphysics (2023)
  101. Diacu and Holmes on Poincaré and the Origins of Chaos
  102. Morowitz, H.J. (1968). Energy Flow in Biology: Biological Organization as a Problem in Thermal Physics
  103. Schneider and Sagan, Into the Cool (2005)
  104. Lorenz: The Essence of Chaos (1993)
  105. Poincaré 1890: Three-Body Problem and Bounded Chaos
  106. Poincaré, Les méthodes nouvelles de la mécanique céleste (1892-1899)
  107. Poincaré, H. (1902). La science et l'hypothèse. Flammarion.
  108. Poincaré: Science and Method (1908)
  109. Strogatz Sync 2003: Spontaneous Order from Coupled Oscillators
  110. Lorenz (1963): Deterministic Nonperiodic Flow
  111. Lorenz 1969: Predictability Limits in Multi-Scale Flows
  112. Bar-Yam, Y. (2002). Complexity Rising: From Human Beings To Human Civilization, A Complexity Profile. EOLSS.
  113. Watts and Strogatz (1998): Collective Dynamics of Small-World Networks
  114. Strogatz Nonlinear Dynamics and Chaos 1994
  115. Strogatz on the Onset of Synchronization in Populations of Coupled Oscillators
  116. Strogatz (2001): Exploring Complex Networks
  117. Bar-Yam, Dynamics of Complex Systems (1997)
  118. Holland, J.H. (1975). Adaptation in Natural and Artificial Systems
  119. Bar-Yam on General Features of Complex Systems (2002)
  120. Bar-Yam 2004: Multiscale Variety in Complex Systems
  121. Özkural (2019): Epistemological and Ethical Implications of the Free Energy Principle
  122. Holland (1995) Hidden Order: Adaptation Builds Complexity
  123. Holland, J.H. (1998). Emergence: From Chaos to Order
  124. Holland, J.H. (2012). Signals and Boundaries: Building Blocks for Complex Adaptive Systems
  125. Jha on Entropy Driven Awareness
  126. Cross and Hohenberg 1993: Pattern Formation Outside of Equilibrium
  127. de Wit et al. (2024): Pattern Formation by Turbulent Cascades
  128. Beni on Structural Realism and the Free Energy Principle
  129. Mavromatidis (2025): Constructal Thermodynamics and Semantic Ontology in Protocell Research
  130. Ashby, W.R. (1962). Principles of the Self-Organizing System
  131. Self-organization in a Diversity Induced Thermodynamics (Scirè et al., 2017)
  132. Wang et al. 2024: Complexity and Entropy of Natural Patterns
  133. Chvykov et al. (2021): Low Rattling as a Predictive Principle for Self-Organization in Active Matter
  134. Bowick et al. (2022): Symmetry, Thermodynamics, and Topology in Active Matter
  135. Thermodynamic Efficiency of Interactions in Self-Organizing Systems (Nigmatullin & Prokopenko, 2021)
  136. Ashby, W.R. (1952). Design for a Brain
  137. Wiener, N. (1950). The Human Use of Human Beings: Cybernetics and Society
  138. Ashby, W.R. (1960). Design for a Brain: The Origin of Adaptive Behaviour (2nd edn)
  139. Ashby, W.R. (1956). An Introduction to Cybernetics
  140. Wiener Cybernetics 1948: Feedback, Information, and Negative Entropy
  141. Di Paolo, Thompson & Beer (2022): Tensions between Enaction and the Free Energy Principle
  142. Deco et al. 2022: INSIDEOUT framework signatures of intrinsic-extrinsic balance in brain states
  143. Sharma et al. (2023): Assembly Theory Explains and Quantifies Selection and Evolution
  144. Radomski and Dołęga (2024): Forced Friends – Why the Free Energy Principle Is Not the New Hamilton’s Principle
  145. Bejan (2024): Evolution and Irreversibility as Distinct Phenomena
  146. Odum and Odum: A Prosperous Way Down
  147. Marshall, Murray & Cronin 2017: Pathway Complexity as a Biosignature Threshold
  148. Formalising the Pathways to Life Using Assembly Spaces: Marshall et al. 2022
  149. Marshall et al. 2021: Assembly Theory and Molecular Biosignatures
  150. Odum 1971: Energy Circuits, Maximum Power, and Hierarchical Flows
  151. Lotka, A.J. (1925). Elements of Physical Biology
  152. Odum, H.T. (1983). Systems Ecology: An Introduction; revised 1994 as Ecological and General Systems
  153. Odum on Self-Organization, Transformity, and Information (1988)
  154. Odum on Self-Organization and Maximum Empower (1995)
  155. Odum Emergy Accounting: Energy Memory and Maximum Empower
  156. Kauffman, S.A. (2019). A World Beyond Physics: The Emergence and Evolution of Life
  157. Lotka's Contribution to the Energetics of Evolution (1922)
  158. Lotka 1922: Natural Selection as a Physical Principle
  159. Maturana and Varela: The Tree of Knowledge (1987)
  160. Kauffman, S.A. (2016). Humanity in a Creative Universe
  161. Kauffman 1995: At Home in the Universe
  162. Kauffman Investigations 2000
  163. Kauffman, Reinventing the Sacred (2008)
  164. Maturana and Varela: Autopoiesis and Cognition
  165. Darwin, C. (1872). The Expression of the Emotions in Man and Animals
  166. Bak and Sneppen (1993): Punctuated Equilibrium and Criticality in a Simple Model of Evolution
  167. Darwin, C. (1859). On the Origin of Species by Means of Natural Selection, or the Preservation of Favoured Races in the Struggle for Life
  168. Darwin, C. (1871). The Descent of Man, and Selection in Relation to Sex
  169. England: Every Life is on Fire (2020)
  170. Bak, Tang, and Wiesenfeld on Self-Organized Criticality (1987)
  171. Annila, A. (2023). Philosophy of thermodynamics
  172. England 2013: Statistical Physics of Self-Replication
  173. Statistical Physics of Adaptation (Perunov, Marsland, England 2016)
  174. Bejan, A. (2022). Time and Beauty: Why Time Flies and Beauty Never Dies
  175. Ball (1999) The Self-Made Tapestry: Pattern Formation in Nature
  176. Badcock, Friston and Ramstead (2019): The Hierarchically Mechanistic Mind
  177. Haken (1983) Synergetics: An Introduction
  178. Bejan (1997) Advanced Engineering Thermodynamics
  179. Bejan & Zane, Design in Nature (2012): The Constructal Law of Flow Design
  180. Bejan, A. and Lorente, S. (2008). Design with Constructal Theory
  181. Bejan, The Physics of Life (2016)
  182. Bejan (2011) The Constructal Law and the Evolution of Design in Nature
  183. Bejan, Freedom and Evolution (2020): Flow Access, Hierarchy, and Persistent Design
  184. Bohm and Hiley: The Undivided Universe (1993)
  185. Deacon, T.W. (2011). Incomplete Nature: How Mind Emerged from Matter
  186. Chaisson Cosmic Evolution The Rise of Complexity in Nature
  187. Kauffman (1993) The Origins of Order: Self-Organization and Selection in Evolution
  188. Brooks and Wiley: Evolution as Entropy (1988)
  189. Ulanowicz, R.E. (1997). Ecology, the Ascendent Perspective
  190. England 2015: Dissipative Adaptation in Driven Self-Assembly
  191. Bohm, D. (1951). Quantum Theory
  192. Bohm: Causality and Chance in Modern Physics (1957)
  193. Bohm and Peat, Science, Order and Creativity (1987)
  194. Bohm Wholeness and the Implicate Order
  195. Wheeler (1989): Information, Physics, Quantum – The Search for Links
  196. Romero, F.G. (2025). The Thermodynamics of Self: Identity as a Dissipative Structure and Biomarkers of Entropic Rigidity in Psychopathology
  197. Raine, Foster, Potts (2006): The New Entropy Law and the Economic Process
  198. Boltzmann 1895: Statistical Mechanics and the Emergence of Irreversibility
  199. Schrödinger, E. (1958). Mind and Matter
  200. Boltzmann 1872 Weitere Studien über das Wärmegleichgewicht unter Gasmolekülen
  201. Boltzmann's Lectures on Gas Theory (1896)
  202. Boltzmann 1877: Entropy as Number of States
  203. Goldbeter and Lefever 1972: Dissipative Structures in an Allosteric Model of Glycolytic Oscillations
  204. Pulselli et al. (2009): Thermodynamic Self-Organization and Prebiotic Cell Emergence
  205. Salthe 2010: Maximum Power and Maximum Entropy Production Finalities in Nature
  206. Wiese & Friston (2021): Neural Correlates of Consciousness under the Free Energy Principle
  207. Gilon (2025): Critique of the Free Energy Principle of Consciousness
  208. Kim (2023): Free Energy and Inference in Living Systems
  209. Georgescu-Roegen: The Entropy Law and the Economic Process
  210. Prigogine: From Being to Becoming
  211. Prigogine, I. (1976). Order Through Fluctuation
  212. Prigogine: Structure, Dissipation and Life (1969)
  213. Prigogine, The End of Certainty (1997)
  214. Prigogine 1977 Nobel Lecture: Time, Structure and Fluctuations
  215. Bejan 2010: The Constructal Law of Design and Evolution in Nature
  216. Friston, Kilner and Harrison (2006): A Free Energy Principle for the Brain
  217. Solms (2019): The Hard Problem of Consciousness and the Free Energy Principle
  218. Lostracco on Ethics from Thermodynamic Axioms
  219. Dalton on Thermodynamics and the Metaphysics of Entropic Decay
  220. Ruiz (2025): Dynamic Balance and the Emergence of the Golden Ratio in Open Non-Equilibrium Systems
  221. Kondepudi, De Bari, Dixon (2020) on Dissipative Structures, Organisms and Evolution
  222. Friston 2010: The Free-Energy Principle as a Unified Brain Theory
  223. Cross and Greenside (2009): Pattern Formation and Dynamics in Nonequilibrium Systems
  224. Anderson and Stein (1987): Broken Symmetry, Emergent Properties, Dissipative Structures, Life
  225. Kondepudi et al. (2020): Dissipative Structures, Organisms and Evolution
  226. Mandelbrot, The Fractal Geometry of Nature (1982)
  227. Tiezzi 2008: Dissipative Structures in Nature and Human Systems
  228. Chung et al. (2022) on the Thermodynamics of Self-Organization in Dissipative Systems
  229. Schieve and Allen (1982): Self-Organization and Dissipative Structures
  230. Glansdorff and Prigogine 1971: Dissipative Structures from Nonequilibrium Thermodynamics
  231. Nicolis and Prigogine: Self-Organization in Nonequilibrium Systems (1977)
  232. Prigogine and Stengers Order Out of Chaos 1984
  233. Bejan Street Network Theory of Organization in Nature (1996)
  234. Bejan (2000): Shape and Structure, from Engineering to Nature
  235. Schrödinger, E. (1944). What is Life?
  236. Déli et al. (2022): Thermodynamic Cycles and the Emergence of Emotions
  237. The Thermodynamics of Mind (Kringelbach et al., 2024)
  238. Massoudi (2016): A Possible Ethical Imperative Based on the Entropy Law
  239. Turing, A.M. (1952). The Chemical Basis of Morphogenesis
  240. Holme, P. (2024). Dissipative delusions (critique of Prigogine)

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