ダニエル・ベルヌーイによる"ベルヌーイの定理"の導出方法
スポンサーリンク
概要
- 論文の詳細を見る
Daniel Bernoulli (1700-1772) is known for his masterpiece Hydrodynamica (1738), which presented the original formalism of "Bernoulli's Theorem," a fundamental law of fluid mechanics. Previous historical analyses have assumed that Daniel solely used the controversial principle of "conservation of vis viva" to introduce his theorem in this work. The "vis viva controversy" began in the 1680s between Cartesians, who defended the importance of momentum, and Leibnizians, who defended vis viva, as the basis of mechanics. In the 1720s, various Newtonians entered the dispute and sided with the crucial role of momentum. Since then, historians believed that 18th century natural philosophers regarded "vis viva" as incompatible with and opposed to Newtonian mechanics. This article argues that to introduce his theorem, Bernoulli not only used the principle of the conservation of vis viva but also the acceleration law, which originated in Newton's second law of motion. By looking at how eighteenth century scholars actually solved the challenging problems of their period instead of looking only at their philosophical claims, this paper shows the practice of mechanics at that time was far more pragmatic and dynamic than previously realized.
- 日本科学史学会の論文
- 2009-12-25
著者
関連論文
- ダニエル・ベルヌーイによる"ベルヌーイの定理"の導出方法
- ヨハン・ベルヌーイの力学 : 衝突法則からの再評価
- ホイヘンスからオイラーへ : 力学における振り子の役割の変遷(18世紀科学史に見る理論と実践の相互作用,2010年度年会報告)
- シンポジウム開催の趣旨(18世紀科学史に見る理論と実践の相互作用,2010年度年会報告)
- 流体を形作る : 草創期の流体力学理論における流体像の役割(物質・技術文化からみた近代数理諸科学の展開(1660-1840),2011年度年会報告)
- 科学者に歴史あり(8)理論と実用の邂逅--オイラーの研究生活
- 科学技術イノベーション政策研究の様相(科学技術イノベーション政策の科学)
- 「二つの文化」を超えて : 科学史の視点から (特集 科学を試す)
- 科学技術イノベーション政策研究の様相 (特集 科学技術イノベーション政策の科学)