复制数学发明:伽利略的指南针,它的说明,它的学生

Q1 Arts and Humanities Perspectives on Science Pub Date : 2022-02-20 DOI:10.1162/posc_a_00422
M. Biagioli
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引用次数: 0

摘要

关于如何在涉及新的观察或实验主张的争议中实现结论性的问题突出了身体知识的作用,这些知识可能无法简化为书面实验协议和如何构建和操作仪器的说明。这篇文章对一个既相关又明显不同的场景提出了类似的问题:复制一项发明,而不是观察或产生该发明的工具。此外,这里考虑的机器——伽利略的指南针或扇形——不是典型的工业发明(如纺纱机),而是数学发明(计算器),也就是说,一种产生数字的机器,而不是纱线。本案例研究描述了复制实验、生产材料输出的传统机器和产生计算或信息的数学发明之间的一些异同。这一比较表明,与其他类型的复制一样,数学发明的复制涉及文本(计算器的指令),但在这种情况下,身体知识不能被恰当地描述为隐性或显性。它更像是记忆的形式——肌肉记忆——可以在阅读说明书时被唤起。
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Replicating Mathematical Inventions: Galileo’s Compass, Its Instructions, Its Students
Abstract Questions about how closure is achieved in disputes involving new observational or experimental claims have highlighted the role of bodily knowledge possibly irreducible to written experimental protocols and instructions how to build and operate instruments. This essay asks similar questions about a scenario that is both related and significantly different: the replication of an invention, not of an observation or the instrument through which it produced. Furthermore, the machine considered here—Galileo’s compass or sector—was not a typical industrial invention (like a spinning jenny), but a mathematical invention (a calculator), that is, a machine that produces numbers, not yarn. This case study describes some of the similarities and differences between replicating experiments, traditional machines producing material outputs, and mathematical inventions yielding calculations or information. This comparison indicates that, as in other kinds of replication, the replication of mathematical inventions involves texts (the calculator’s instructions) but that in this case bodily knowledge cannot be properly described as either tacit or explicit. It rather takes the shape of memory—muscle memory—that may be recalled from reading the instructions.
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来源期刊
Perspectives on Science
Perspectives on Science Arts and Humanities-History and Philosophy of Science
CiteScore
1.70
自引率
0.00%
发文量
48
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