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A Historical Study on the Successful Convergence Research Between Lavoisier and Laplace

  • Jung, Won (Dept. of Science Studies, Jeonbuk National Univ.)
  • 투고 : 2020.03.11
  • 심사 : 2020.04.10
  • 발행 : 2020.06.30

초록

The Chemist Antoine-Laurent Lavoisier and mathematician Pierre Simon Laplace, who conducted a collaborative research on heat phenomena, are two of the key figures that represent French scientific community in the late 18th century. They joined hands together to understand heat phenomena that had not been fully explained until that time. They studied heat phenomena based on a heat particle model called 'caloric' and this study further expanded into light, magnetism and electricity, laying groundwork for many other research achievements afterwards. This article goes through their individual researches and looks into the process of their joint research based on the analysis of their publications. Further to these, it emphasizes its continuity with the Laplacian Program, a large-scale research project conducted in the early 19th century. Lastly, this article presents how science can merge with history, and at the same time, introduces the prerequisites for successful convergence research through existing research cases.

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참고문헌

  1. Shan Lim, "Collaboration between Artists and Engineers: 'Experiments in Art and Technology' Group," The Journal of the Convergence on Culture Technology, Vol. 5, No. 4, pp. 79-85, 2019. http://dx.doi.org/10.17703/JCCT.2019.5.4.79
  2. Shan Lim, "The Relationships among Human, Machine, and Thought in Charles Babbage's Calculating Engines," The Journal of the Convergence on Culture Technology, Vol. 5, No. 2, pp. 111-116, 2019. http://dx.doi.org/10.17703/JCCT.2019.5.2.111
  3. Robert Fox, The Caloric Theory of Gases from Lavoisier to Regnault, The Clarendon Press, 1971.
  4. Charles C. Gillispie, R. Fox and I. Grattan-Guinness, Pierre-Simon Laplace, 1749-1827: A Life in Exact Sciences, Princeton University Press, 1996.
  5. Arthur Donovan, Antoine Lavoisier: Science Administration, and Revolution, Cambridge University Press, pp. 237-268, 1996.
  6. Maurice Crosland, Science under Control: The French Academy of Sciences 1795-1904, Cambridge University Press, pp. 119-123, 1992.
  7. Frederic L. Holmes, Lavoisier and the Chemistry of Life: An Exploration of Scientific Creativity, University of Wisconsin Press, 1985.
  8. J. L. Heilbron, "The Measure of Enlightenment," in Tore Frangsmyr, J. L. Heilbron, and Robin E. Rider ed., The Quantifying Spirit in the 18th Century, University of California Press, pp. 207-242, 1990.
  9. Robert Fox, "The Rise and Fall of Laplacian Physics," Historical Studies in the Physical Sciences, Vol. 4, pp. 89-136, 1974. https://doi.org/10.2307/27757328
  10. Roger Hahn, The Anatomy of a Scientific Institution: The Paris Academy of Science, 1666-1803, University of California Press, 1971.
  11. Jan Golinski, Science as Public Culture: Chemistry and Enlightenment in Britain, 1760-1820, Cambridge University Press, pp. 129-152, 1992.
  12. Peter Dear, The Intelligibility of Nature, The University of Chicago Press, pp. 67-90, 2006.
  13. Ivor Grattan-Guinness, Convolutions in French Mathematics, 1800-1840, Birkhauser Verlag, pp. 436-517, 1990.
  14. Stephen G. Brush, The Kind of Motion We Call Heat: A History of the Kinetic Theory of Gases in the 19th Century, Book 2, Statistical Physics and Irreversible Processes, North-Holland Publishing Company, pp. 303-313, 1976.
  15. Antoine-Laurent Lavoisier, translated by Robert Kerr, Elements of Chemistry in a New Systemic Order, Containing All the Modern Discoveries, Dover Publications, Inc., pp. 1-31, 1965.
  16. Ivor Grattan-Guinness, "Heat Diffusion," in I. Grattan-Guinness ed., Companion Encyclopedia of History and Philosophy of the Mathematical Sciences, Routledge, pp. 1165-1170, 1994.