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Prigogine (thermodynamics, Brussels) derived dissipative structures from chemical kinetics. Georgescu-Roegen (economics, Vanderbilt) derived the entropy-economics connection from reading Boltzmann independently. Odum (ecology, Florida) derived emergy from ecosystem energetics. No borrowing chain. - Convergence strength (1–10): 8 - Note: The convergence is not that “economics uses energy” — it is that economic order follows the same thermodynamic binding constraint as biological and physical order. The pattern is: gradient consumption → structure.","hero":null,"status":"published","bytes":891,"hash":"925de6a41fb3847915cc266931ff6eb462d810282463d29b2c68aa3ee37d0004"},{"n":0,"ts":"2026-07-04T02:53:57.512Z","title":"Convergence Edge 1: Edge 1: C01 (Gradient Dissipation) recurs-with C19 (Thermoeconomics) - Shared pattern: Sustained order requires throughput; complex systems are entropy-exporting engines; economic value tracks available energy - Domain distance: Physics → Economics (maximum — historically hostile disciplinary boundaries) - Derivation independence: HIGH. Prigogine (thermodynamics, Brussels) derived dissipative structures from chemical kinetics. Georgescu-Roegen (economics, Vanderbilt) derived the entropy-economics connection from reading Boltzmann independently. Odum (ecology, Florida) derived emergy from ecosystem energetics. No borrowing chain. - Convergence strength (1–10): 8 - Note: The convergence is not that “economics uses energy” — it is that economic order follows the same thermodynamic binding constraint as biological and physical order. The pattern is: gradient consumption → structure.","hero":null,"status":"published","bytes":0,"hash":"51d5ac8ec60151d5c4f610fc6f32bb8bca02aade232d17d3caa173faa48b397f"}]}