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Evidence, Content and Corroboration and the Tree of Life

机译:证据,内容和佐证与生命之树

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摘要

We examine three critical aspects of Popper’s formulation of the ‘Logic of Scientific Discovery’—evidence, content and degree of corroboration—and place these concepts in the context of the Tree of Life (ToL) problem with particular reference to molecular systematics. Content, in the sense discussed by Popper, refers to the breadth and scope of existence that a hypothesis purports to explain. Content, in conjunction with the amount of available and relevant evidence, determines the testability, or potential degree of corroboration, of a statement; content distinguishes scientific hypotheses from metaphysical assertions. Degree of corroboration refers to the relative and tentative confidence assigned to one hypothesis over another, based upon the performance of each under critical tests. Here we suggest that systematists attempt to maximize content and evidence to increase the potential degree of corroboration in all phylogenetic endeavors. Discussion of this “total evidence” approach leads to several interesting conclusions about generating ToL hypotheses. Keywords Corroboration - Tree of life - ToL - Karl Popper - Genomics - Systematics - HGT - Evolution - Vantage points - Darwin - Philosophy of science
机译:我们研究了波普尔提出的“科学发现逻辑”的三个关键方面–证据,内容和佐证程度–并将这些概念置于生命树(ToL)问题的背景下,特别涉及分子系统学。在波普尔所讨论的意义上,内容是指假设旨在解释的存在的广度和存在范围。内容与现有和相关证据的数量一起决定了陈述的可测试性或潜在的佐证程度;内容将科学假说与形而上学断言区分开。确证度是指根据每种假设在关键测试下的表现,将一种假设相对于另一种假设分配给的相对和暂定置信度。在这里,我们建议系统论者尝试使内容和证据最大化,以增加所有系统发育努力中潜在的佐证程度。对这种“全面证据”方法的讨论得出了有关生成ToL假设的几个有趣的结论。确证-生命之树-ToL-卡尔·波普尔-基因组学-系统学-HGT-进化-优势点-达尔文-科学哲学

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