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- W1464849214 abstract "Abstract The seminal numerical experiment by Bak and Sneppen (BS) is repeated, along with computations with replicator models, including a greater amount of features. Both types of models do self-organize, and do obey power-law scaling for the size distribution of activity cycles. However species extinction within the replicator models interferes with the BS self-organized critical (SOC) activity. Speciation–extinction dynamics ruins any stationary state which might contain a steady size distribution of activity cycles. The BS-type activity appears as a dissimilar phenomenon in comparison to speciation–extinction dynamics in the replicator system. No criticality is found from the speciation–extinction dynamics. Neither are speciations and extinctions in real biological macroevolution known to contain any diverging distributions, or self-organization towards any critical state. Consequently, biological macroevolution probably is not a self-organized critical phenomenon." @default.
- W1464849214 created "2016-06-24" @default.
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- W1464849214 date "2015-10-01" @default.
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- W1464849214 title "Extremal dynamics in random replicator ecosystems" @default.
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- W1464849214 doi "https://doi.org/10.1016/j.physleta.2015.07.028" @default.
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