The bismar scale and elastic collisions: a geometrical analogy

X. Prado, Angel Paredes Galan, Iván Area, Jose Manuel Domínguez Castiñeiras, Jorge Mira
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Abstract

Throughout history, scales have served as instrumental tools for quantifying the weight of objects, relying on a comparative assessment against a specified reference weight. Scales featuring uneven arms, such as the bismar scale, have proven particularly adept at gauging masses within a specific range relative to a predetermined reference mass. On the other hand, the kinematics of elastic collisions hinge on the inertial masses of the colliding entities. By observing the aftermath of a collision between a known reference mass and an object of unknown mass, one can deduce the latter’s mass. In this contribution, we highlight a fascinating and clear analogy between these two methodologies. We do so by adapting a geometric approach, initially applicable to the bismar scale, to both non-relativistic and relativistic elastic collisions, encompassing phenomena such as Compton scattering.
双星尺度和弹性碰撞:几何类比
古往今来,天平一直是量化物体重量的工具,依靠的是与指定参考重量进行比较评估。事实证明,具有不平臂的天平(如俾斯麦天平)尤其擅长于测量相对于预定参考质量的特定范围内的质量。另一方面,弹性碰撞的运动学取决于碰撞实体的惯性质量。通过观察已知参考质量和未知质量物体之间碰撞的后果,可以推断出后者的质量。在这篇论文中,我们将重点介绍这两种方法之间迷人而清晰的类比。我们将最初适用于双星尺度的几何方法应用于非相对论和相对论弹性碰撞,包括康普顿散射等现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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