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A Development of the Principle of Virtual Laws and its Conceptual Framework in Mechanics as Fundamental Relationship between Physics and Mathematics

机译:一种发展虚拟法律原则及其在力学中的概念框架作为物理与数学基本关系

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摘要

Generally speaking, virtual displacement or work concerns to a timely idea according to which a motion of a certain body is not the unique possible motion. The process of reducing this motion to a particular magnitude and concept, eventually minimizing as a hypothesis, can be traced back to the Aristotelian school. In the history and philosophy of science one finds various enunciations of the Principle of Virtual Laws and its virtual displacement or work applications, i.e., from Aristotle to Leibniz’s vis viva, from Maupertuis’ least action to Euler and Lagrange with calculus of variations (statics and dynamics) to Lazare Carnot’s mechanics. In this case study, I will demonstrate that a particular approach used by Lazare Carnot is original by explaining within the historical context of rival approaches such as the development of the Principle of virtual Laws (also known as the Principle of virtual velocity or of virtual work). I will also discuss Carnot’s geometric motion as one of the possible but invertible movements applied to virtual displacement as employed in his theories of machines and collisions. I will then go on to explore how the originality of an invertible motion within his mechanical and, in general, mathematical research program permitted Carnot to introduce a new way of structuring a scientific theory and making mechanics, with respect to the Newtonian paradigm, to scholars and his students of the École polytechnique de Paris.
机译:一般来说,虚拟位移或工作对及时想法的担忧,根据该问题,某个身体的运动不是独特的运动。将这种运动减少到特定数量和概念的过程,最终最小化为假设,可以追溯到亚里士多德学校。在科学的历史和哲学中,一个人发现虚拟法律和虚拟位移或工作申请的原则的各种阐明,即从亚里士多雷到莱布尼兹的VIVA,从林伯提萨对欧拉和拉格朗士的比分(静态和动态)到Lazare Carnot的力学。在这种情况下,我将证明Lazare Carnot使用的特定方法是通过在竞争方法的历史背景下解释诸如虚拟法则原则的历史背景(也称为虚拟速度或虚拟工作原理或虚拟工作)的历史背景下解释)。我还将讨论Carnot的几何动作作为应用于机器和碰撞理论中的虚拟位移的可能但可逆的运动之一。然后,我将继续探索他机械和一般数学研究计划在机械和一般数学研究方案中的最新性如何允许Carnot引入一种构建科学理论和制造力学的新方式,以及纽托尼亚范式对学者来说和他的ÉcoleGoytechniqueDe巴黎的学生。

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    Raffaele Pisano;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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