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Functional Programming through Deep Time: Modeling the first complex ecosystems on Earth

机译:深度功能编程:为地球上第一个复杂的生态系统建模

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The ecology of Earth's first large organisms is an unsolved problem in palaeontology. This experience report discusses the determination of which ecosystems could have been feasible, by considering the biological feedbacks within them. Haskell was used to model the ecosystems for these first large organisms - the Edi-acara biota. For verification of the results, the statistical language R was used. Neither Haskell nor R would have been sufficient for this work - Haskell's libraries for statistics are weak, while R lacks the structure for expressing algorithms in a maintainable manner. This work is the first to quantify all feedback loops in an ecosystem, and has generated considerable interest from both the ecological and palaeontological communities.
机译:地球上第一个大型生物的生态学是古生物学中尚未解决的问题。这份经验报告讨论了通过考虑生态系统内的生物反馈来确定哪些生态系统可行。 Haskell被用来为这些第一个大型生物(Edi-acara生物群)的生态系统建模。为了验证结果,使用了统计语言R。 Haskell和R都不足以胜任这项工作-Haskell的统计资料库很薄弱,而R缺乏以可维护的方式表达算法的结构。这项工作是第一个量化生态系统中所有反馈回路的工作,并且引起了生态界和古生物学界的极大关注。

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