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Understanding Measurement in Light of Its Origins

机译:根据测量起源了解测量

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During the course of history, the natural sciences have seen the development of increasingly convenient short-hand symbolic devices for denoting physical quantities. These devices ultimately took the form of physical algebra. However, the convenience of algebra arguably came at a cost – a loss of the clarity of direct insights by Euclid, Galileo, and Newton into natural quantitative relations. Physical algebra is frequently interpreted as ordinary algebra; i.e., it is interpreted as though symbols denote (a) numbers and operations on numbers, as opposed to (b) physical quantities and quantitative relations. The paper revisits the way in which Newton understood and expressed physical definitions and laws. Accordingly, it reviews a compact form of notation that has been used to denote both: (a) ratios of physical quantities; and (b) compound ratios, involving two or more kinds of quantity. The purpose is to show that it is consistent with historical developments to regard physical algebra as a device for denoting relations among ratios. Understood in the historical context, the objective of measurement is to establish that a physical quantity stands in a specific ratio to another quantity of the same kind. To clarify the meaning of measurement in terms of the historical origins of physics carries basic implications for the way in which measurement is understood and approached. Possible implications for the social sciences are considered.
机译:在历史的过程中,自然科学已经看到了越来越方便的用于表示物理量的速记符号设备的发展。这些设备最终采用物理代数的形式。但是,代数的便利性可以说是有代价的–失去了欧几里得,伽利略和牛顿对自然定量关系的直接见解的清晰性。物理代数通常被解释为普通代数。即,它被解释为符号代表(a)数字和数字运算,而不是(b)物理量和数量关系。本文回顾了牛顿理解和表达物理定义和定律的方式。因此,它审查了一种紧凑的符号形式,该符号已被用于表示以下两种形式:(a)物理量的比率; (b)涉及两种或两种以上数量的混合比例。目的是表明将物理代数视为表示比率之间关系的一种手段与历史发展是一致的。在历史背景下可以理解,测量的目的是要确定一个物理量与另一个同类量具有特定的比例。从物理学的历史渊源阐明测量的含义对理解和采用测量的方式具有基本的含义。考虑了对社会科学的可能影响。

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