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Disarming the Ultimate Historical Challenge to Scientific Realism

机译:解除对科学现实主义的最终历史挑战

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Probably the most dramatic historical challenge to scientific realism concerns Arnold Sommerfeld's ([1916]) derivation of the fine structure energy levels of hydrogen. Not only were his predictions good, he derived exactly the same formula that would later drop out of Dirac's 1928 treatment (something not possible using 1925 Schrodinger-Heisenberg quantum mechanics). And yet the most central elements of Sommerfeld's theory were not even approximately true: his derivation leans heavily on a classical approach to elliptical orbits, including the necessary adjustments to these orbits demanded by relativity. Even physicists call Sommerfeld's success a 'miracle', which rather makes a joke of the so-called 'no miracles argument'. However, this can all be turned around. Here I argue that the realist has a story to tell vis-a-vis the discontinuities between the old and the new theory, leading to a realist defence based on sufficient continuity of relevant structure.
机译:可能是科学现实主义的最戏剧性的历史挑战涉及Arnold Sommerfeld([1916])衍生氢的细结构能量水平。 他的预测不仅是好的,他源自与迪拉克的1928种治疗(使用1925 Schrodinger-Heisenberg量子力学)掉出的相同配方。 然而,Sommerfeld的理论中最中心的元素甚至不是真实的:他的推导在很大程度上对椭圆轨道的经典方法倾斜,包括对所需的这些轨道的必要调整。 甚至物理学家甚至称Sommerfeld的成功是一个“奇迹”,这相当开玩笑的是所谓的“没有奇迹争论”。 但是,这一切都可以转过身来。 在这里,我认为现实主义者有一个故事,可以告诉旧的和新理论之间的不连续性,导致基于相关结构充足的连续性的真实性防范。

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