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Magnification: how to turn a spyglass into an astronomical telescope

机译:放大倍数:如何将望远镜变成天文望远镜

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According to the received view, the first spyglass was assembled without any theory of how the instrument magnifies. Galileo, who was the first to use the device as a scientific instrument, improved the power of magnification up to 30 times. How did he accomplish this feat? Galileo does not tell us what he did. We hold that such improvement of magnification is too intricate a problem to be solved by trial and error, accidentally stumbling upon a complex procedure. We construct a plausibility argument and submit that Galileo had a theory of the telescope. He could develop it by analogical reasoning based on the phenomenon of reflection in mirrors—as it was put to use in surveying instruments—and applied to refraction in sets of lenses. Galileo could appeal to this analogy and assume Della Porta’s theory of refraction. He could thus turn the spyglass into a revolutionary scientific instrument—the telescope.
机译:根据收到的意见,第一个望远镜的组装没有任何关于仪器如何放大的理论。伽利略是最早使用该设备作为科学仪器的人,将放大倍数提高了30倍。他是如何完成这项壮举的?伽利略没有告诉我们他做了什么。我们认为,这种放大倍数的提高太复杂了,无法通过反复试验来解决,这偶然会绊倒复杂的程序。我们构造了一个合理的论点,并提出伽利略有望远镜理论。他可以通过基于镜面反射现象的类比推理来开发该反射镜(该反射镜已被用于测量仪器中)并应用于透镜组的折射。伽利略可能会喜欢这种类比,并假设德拉·波塔的折射理论。因此,他可以将望远镜变成一种革命性的科学仪器-望远镜。

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