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Crossover Accelerates Evolution in GAs with a Babel-like Fitness Landscape: Mathematical Analyses.

, and . Evol. Comput., 7 (3): 275-310 (1999)

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Functional Emergence with Multiple von Neumann Computers.. Artif. Life, 3 (2): 121-14 (1997)Chemical Genetic Programming - Coevolution Between Genotypic Strings and Phenotypic Trees., , and . GECCO (2), volume 3103 of Lecture Notes in Computer Science, page 715-716. Springer, (2004)A Network-Based Computational Model with Learning., , and . UC, volume 6079 of Lecture Notes in Computer Science, page 193. Springer, (2010)Chemical Genetic Programming - evolutionary optimization of the genotype-to-phenotype translation set., , and . Artif. Life Robotics, 9 (4): 202-208 (2005)Minimum density of functional proteins to make a system evolvable.. Artif. Life Robotics, 5 (2): 93-96 (2001)Universal constructor to build a Tierran machine structure., , and . Artif. Life Robotics, 8 (1): 57-61 (2004)Multiple von Neumann Computers: An Evolutionary Approach to Functional Emergence. Artificial Life, (Spring 1997)Algorithmically Transitive Network: Learning Padé Networks for Regression.. BIONETICS, volume 134 of Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, page 150-166. Springer, (2012)Chemical genetic algorithms - coevolutionary genotype-phenotype mapping by modelling of metabolism in cell., and . IEEE Congress on Evolutionary Computation, page 639-646. IEEE, (2003)A Data-Flow Network That Represents First-Order Logic for Inference., , and . TAAI, page 211-218. IEEE Computer Society, (2012)