Marcin Gileta, Sebastian Kozera, A. Łukasik
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摘要

本文旨在批判性地分析Wojciech Sady在著作《相对论的结构和物理学中的量子革命》中提出的科学发展的概念。作者利用Ludwik Fleck的思想风格和思想集体的概念,从量子论和狭义相对论的兴起来分析20世纪物理学中两次伟大的科学革命是如何发生的问题。萨迪认为,科学家的思维方式是由他们所受教育的特定思维方式决定的,伟大的科学发现不是“创造性想象”的结果,而是演绎推理的产物,在演绎推理中,学者们严格遵循数学理论的形式主义和实验结果。因此,物理学中的科学发现是“在纸上”而不是“在科学家的头脑中”进行的。在“方程式与想象力的战斗”中,方程式总是获胜,科学发现更多的是一个科学团体的工作结果,而不是孤独的天才,只能在历史上正确的时间做出,被称为“发现情境”。《结构论》提出的科学发展观是针对不可通约性命题和不确定性命题提出的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Równania mądrzejsze od swych odkrywców
This article aims to critically analyse the concept of the development of science, as proposed by Wojciech Sady in the work Struktura rewolucji relatywistycznej i kwantowej w fizyce [The Structure of the Relativity and Quantum Revolution in Physics]. The author uses Ludwik Fleck’s concept of thought styles and thought collectives to analyse the problem of how two great scientific revolutions took place in 20th-Century physics in terms of the rise of quantum theory and special relativity. Sady argues that the way of thinking of scientists is determined by the particular thought style in which they were educated, and that great scientific discoveries are not the result of “creative imagination”, but a product of deductive reasoning, in which scholars closely adhere to the formalism of mathematical theory and the results of experiments. Therefore, scientific discovery in physics is made “on paper” rather than “in the mind of a scientist.” In the “battle of equations with the imagination,” equations always win, and scientific discovery is more a result of the work of a scientific community than solitary geniuses, and can only be made at the right time in history, called the “discoverygenic situation.” The concept of the development of science presented in The Structure is directed against the incommensurability thesis and the indeterminacy thesis.
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