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Physico-mathematics and the search for causes in Descartes’ optics—1619–1637

机译:笛卡尔光学中的物理数学和原因探究—1619–1637年

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One of the chief concerns of the young Descartes was with what he, and others, termed “physico-mathematics”. This signalled a questioning of the Scholastic Aristotelian view of the mixed mathematical sciences as subordinate to natural philosophy, non explanatory, and merely instrumental. Somehow, the mixed mathematical disciplines were now to become intimately related to natural philosophical issues of matter and cause. That is, they were to become more ’physicalised’, more closely intertwined with natural philosophising, regardless of which species of natural philosophy one advocated. A curious, short-lived yet portentous epistemological conceit lay at the core of Descartes’ physico-mathematics—the belief that solid geometrical results in the mixed mathematical sciences literally offered windows into the realm of natural philosophical causation—that in such cases one could literally “see the causes”. Optics took pride of place within Descartes’ physico-mathematics project, because he believed it offered unique possibilities for the successful vision of causes. This paper traces Descartes’ early physico-mathematical program in optics, its origins, pitfalls and its successes, which were crucial in providing Descartes resources for his later work in systematic natural philosophy. It explores how Descartes exploited his discovery of the law of refraction of light—an achievement well within the bounds of traditional mixed mathematical optics—in order to derive—in the manner of physico-mathematics—causal knowledge about light, and indeed insight about the principles of a “dynamics” that would provide the laws of corpuscular motion and tendency to motion in his natural philosophical system.
机译:年轻的笛卡尔最关心的问题之一就是他和其他人所说的“物理数学”。这标志着对亚里士多德学派关于混合数学科学的观点的质疑,这种观点是服从自然哲学的,是非解释性的,只是工具性的。不知何故,现在混合数学学科已经与物质和原因的自然哲学问题紧密相关。也就是说,无论人们提倡哪种自然哲学,它们都将变得更加“物理化”,与自然哲学更加紧密地交织在一起。笛卡尔物理数学的核心是一种好奇,短暂而又具有预见性的认识论思想,即相信混合几何科学中的固体几何结果从字面上提供了自然哲学因果关系领域的窗口。在这种情况下,人们可以从字面上理解“查看原因”。光学在笛卡尔的物理数学项目中占有举足轻重的地位,因为他认为光学为成功理解原因提供了独特的可能性。本文追溯了笛卡尔的光学早期物理数学程序,其起源,缺陷和成功经验,这对于为笛卡尔后来的系统自然哲学研究提供资源至关重要。它探索了笛卡尔如何利用他对光折射定律的发现(这一成就完全在传统的混合数学光学的范围之内),以便以物理数学的方式得出关于光的因果知识,以及对光的确知。 “动力学”的原理,将在其自然哲学体系中提供微粒运动和运动趋势定律。

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