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Added link to Blount paper; tagged claims that contradict their sources.
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[[Richard Lenski]] rejected a request to release his bacteria mutation data to the public,<ref>See [[Conservapedia:Lenski dialog]].</ref> but the following serious flaws are emerging about his work<ref>Blount et al., "Historical contingency and the [[evolution]] of a key innovation in an experimental population of ''Escherichia coli'', 105 PNAS 7899-7906 (June 10, 2008).</ref> even without a full disclosure of the data.  Note that the peer review on Lenski's paper took somewhere between 0 (non-existent) and at most 14 days (including administrative time), and Lenski himself does not have any obvious expertise in statistics.  In fact, Richard Lenski admits in his paper that he based his statistical conclusions on use of a website called "statistics101".
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[[Richard Lenski]] rejected a request to release his bacteria mutation data to the public,<ref>See [[Conservapedia:Lenski dialog]].</ref>{{failed verification}} but the following serious flaws are emerging about his work<ref>Blount et al., "Historical contingency and the [[evolution]] of a key innovation in an experimental population of ''Escherichia coli'', [http://www.pnas.org/content/105/23/7899.full 105 PNAS 7899-7906] (June 10, 2008).</ref>{{failed verification}} even without a full disclosure of the data.  Note that the peer review on Lenski's paper took somewhere between 0 (non-existent) and at most 14 days (including administrative time), and Lenski himself does not have any obvious expertise in statistics.  In fact, Richard Lenski admits in his paper that he based his statistical conclusions on use of a website called "statistics101".
    
1.  Lenski's "historical contingency" hypothesis, as specifically depicted in Figure 3, is contradicted by the data presented in the Third Experiment in Table 1 of his paper.  Figure 3 proposes a step-up in mutation rate to Cit<sup>+</sup> due to a historical contingency (potentiating mutation) occurring at about the 31,000th generation, yet the Third (and largest) Experiment in Table 1 shows Cit<sup>+</sup> arising just as often before the 31,000th generation as after.  The abstract, in further contradiction with Figure 3, suggests that the historical contingency (potentiating mutation) occurred prior to the 20,000th generation.
 
1.  Lenski's "historical contingency" hypothesis, as specifically depicted in Figure 3, is contradicted by the data presented in the Third Experiment in Table 1 of his paper.  Figure 3 proposes a step-up in mutation rate to Cit<sup>+</sup> due to a historical contingency (potentiating mutation) occurring at about the 31,000th generation, yet the Third (and largest) Experiment in Table 1 shows Cit<sup>+</sup> arising just as often before the 31,000th generation as after.  The abstract, in further contradiction with Figure 3, suggests that the historical contingency (potentiating mutation) occurred prior to the 20,000th generation.
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