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Computing possible worlds in the history of modern astronomy

机译:计算现代天文学历史上的可能世界

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As part of an ongoing study of causal models in the history of science, a counterfactual scenario in the history of modern astronomy is explored with the aid of computer simulations. After the definition of “linking advance”, a possible world involving technological antecedence is described, branching out in 1510, in which the telescope is invented 70 years before its actual construction, at the time in which Fracastoro actually built the first prototelescope. By using the principle of the closest possible world (PCP), we estimate that in this scenario the discovery of the elliptical orbit of Mars would by anticipated by only 28 years. The second part of the paper involves an estimate of the probability of the previous scenario, guided by the principle that the actual world is the mean (PAM) and using computer simulations to create possible worlds in which the time spans between advances is varied according to a gamma distribution function. Taking into account the importance of the use of the diaphragm for the invention of the telescope, the probability that the telescope were built by 1538 for a branching time at 1510 is found to be smaller than 1%. The work shows that one of the important features of computational simulations in philosophy of science is to serve as a consistency check for the intuitions and speculations of the philosopher.
机译:作为正在进行的科学史上因果模型研究的一部分,借助于计算机模拟,探索了现代天文学史上的反事实场景。在定义“链接推进”之后,描述了一个可能涉及技术先验的世界,该世界始于1510年,其中望远镜是在其实际制造之前的70年发明的,当时Fracastoro实际制造了第一台原型望远镜。通过使用最接近可能世界(PCP)的原理,我们估计在这种情况下,火星椭圆轨道的发现预计仅需要28年。本文的第二部分涉及对前一种情况的概率的估计,其指导原则是:实际世界是均值(PAM),并使用计算机模拟来创建可能的世界,其中前进之间的时间间隔根据伽玛分布函数。考虑到在本发明的望远镜中使用光阑的重要性,发现由1538在1510的分支时间建立望远镜的概率小于1%。这项工作表明,科学哲学中计算模拟的重要特征之一是可以作为对哲学家直觉和推测的一致性检验。

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