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A postulate to assess 'habitability'

机译:评估“可居住性”的假设

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摘要

One principal challenge in biology is defining a postulate by which the habitability of other planets can be assessed. Current assessments suffer from two potential weaknesses. With respect to other planets, either assumptions are made about the physical and chemical conditions of environments that err on the side of biological optimism without empirical constraint by spacecraft observations or novel physiologies of microorganisms are invented to fit extraterrestrial environmental conditions with no demonstrated microbiological counterparts on Earth. Attempts to assess the habitability of the early Earth suffer from similar problems. We discuss the following postulate: 'the proposition that a planet is or was habitable requires that the physiological requirements of microorganisms on Earth known at the time of assessment match the empirically determined combined physical and chemical conditions in the extraterrestrial or early Earth environment being assessed' as a. means of evaluating 'habitability'. We use as tests for our postulate the early Earth and the cloud deck of Venus (a habitat that has been a source of optimistic debate for forty years). We conclude that, although the early Earth was habitable, Venus is a dead world.
机译:生物学的一个主要挑战是定义一种假设,通过该假设可以评估其他行星的可居住性。当前的评估存在两个潜在的弱点。关于其他行星,要么对环境的物理和化学条件做出假设,而这些条件在生物学乐观方面没有受到航天器观察的经验限制,要么发明了新的微生物生理学以适应地球外环境条件,而没有证明存在相应的微生物。地球。尝试评估早期地球的可居住性也遭受类似的问题。我们讨论以下假设:“行星是或宜居的主张要求评估时已知的地球上微生物的生理要求与被评估的地外或早期地球环境中凭经验确定的综合物理和化学条件相匹配”作为一个。评价“可居住性”的手段。我们使用测试作为我们假设的早期地球和金星的云层(这是四十年来一直令人乐观辩论的栖息地)。我们得出的结论是,尽管早期地球是可居住的,但金星是一个死世界。

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