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Timeline of thermodynamics

From Wikipedia, the free encyclopedia

A timeline of events in the history of thermodynamics.

Before 1800

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1800–1847

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1848–1899

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1900–1944

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1945–present

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See also

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References

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  1. ^ "Who Gets Credit for Inventing the Thermometer?". ThoughtCo. Retrieved 2023-11-23.
  2. ^ In 1662, he published a second edition of the 1660 book New Experiments Physico-Mechanical, Touching the Spring of the Air, and its Effects with an addendum Whereunto is Added a Defence of the Authors Explication of the Experiments, Against the Obiections of Franciscus Linus and Thomas Hobbes; see J Appl Physiol 98: 31–39, 2005. (Jap.physiology.org Online.)
  3. ^ Hooke, Robert, Robert (1965). Micrographia. s.l.: Science Heritage. p. 12.
  4. ^ Becher, Johann Joachim, 1635-1682. (1738). Physica subterranea profundam subterraneorum genesin, e principiis hucusque ignotis, ostendens. Ex officina Weidmanniana. OCLC 3425904.{{cite book}}: CS1 maint: multiple names: authors list (link) CS1 maint: numeric names: authors list (link)
  5. ^ Jenkins, Rhys (1936). Links in the History of Engineering and Technology from Tudor Times. Ayer Publishing. p. 66. ISBN 0-8369-2167-4.
  6. ^ See:
    • Daniel Rutherford (1772) "Dissertatio Inauguralis de aere fixo, aut mephitico" (Inaugural dissertation on the air [called] fixed or mephitic), M.D. dissertation, University of Edinburgh, Scotland.
    • English translation: Leonard Dobbin (1935) "Daniel Rutherford's inaugural dissertation," Journal of Chemical Education, 12 (8) : 370–375.
    • See also: James R. Marshall and Virginia L. Marshall (Spring 2015) "Rediscovery of the Elements: Daniel Rutherford, nitrogen, and the demise of phlogiston," The Hexagon (of Alpha Chi Sigma), 106 (1) : 4–8. Available on-line at: University of North Texas.
  7. ^ Lavoisier, Antoine Laurent (1965). Elements of chemistry, in a new systematic order: containing all the modern discoveries. Courier Dover Publications. p. 15. ISBN 0-486-64624-6.
  8. ^ Prévost, Pierre (April 1791). "Mémoire sur l'équilibre du feu". Observations Sur la Physique (in French). XXXVIII (1): 314–323.
  9. ^ Brown, Robert, 1773-1858. (1828). A brief account of microscopical observations made in the months of June, July, and August, 1827, on the particles contained in the pollen of plants: and on the general existence of active molecules in organic and inorganic bodies ... A. and C. Black. OCLC 38057036.{{cite book}}: CS1 maint: multiple names: authors list (link) CS1 maint: numeric names: authors list (link)
  10. ^ CLAPEYRON, Benoît Paul Émile. (1834). Mémoire sur la puissance motrice de la chaleur. OCLC 559435201.
  11. ^ Waterston, John J. (1843). Thoughts on the mental functions : being an attempt to treat metaphysics as a branch of the physiology of the nervous system. London. OCLC 328092289.
  12. ^ "Neglected Pioneers". www.math.umd.edu. Retrieved 2020-12-20.
  13. ^ Joule, J.P. (1843). "LII. On the calorific effects of magneto-electricity, and on the mechanical value of heat". The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science. 23 (154): 435–443. doi:10.1080/14786444308644766. ISSN 1941-5966.
  14. ^ Grove, W. R. (1874). The correlation of physical forces (6th edition) by W.R. Grove. London: Longmans, Green. doi:10.5962/bhl.title.19475.
  15. ^ Helmholtz, Hermann v. (1847). Über die Erhaltung der Kraft, eine physikalische Abhandlung. OCLC 488622067.
  16. ^ Planck, Max, 1858-1947. Zur Theorie des Gesetzes der Energieverteilung im Normalspectrum. OCLC 15745309.{{cite book}}: CS1 maint: multiple names: authors list (link) CS1 maint: numeric names: authors list (link)
  17. ^ Einstein, Albert (1905). "On a Heuristic Viewpoint Concerning the Production and Transformation of Light" (PDF). Annalen der Physik (In German).
  18. ^ Pogliani, Lionello; Berberan-Santos, Mario (2000). "Constantin Carathéodory and the axiomatic thermodynamics" (PDF). Journal of Mathematical Chemistry. 28 (1): 313. doi:10.1023/A:1018834326958. S2CID 17244147. Retrieved May 30, 2022.
  19. ^ Debye, Peter (1912). "Zur Theorie der spezifischen Waerme". Annalen der Physik (in German). 39 (4): 789–839. Bibcode:1912AnP...344..789D. doi:10.1002/andp.19123441404.
  20. ^ Saha, Megh Nad (1920). "LIII.Ionization in the solar chromosphere". Philosophical Magazine. Series 6. 40 (238): 472–488. doi:10.1080/14786441008636148.
  21. ^ Fermi, Enrico (1926). "Sulla quantizzazione del gas perfetto monoatomico". Rendiconti Lincei (in Italian). 3: 145–9., translated as Zannoni, Alberto (1999-12-14). "On the Quantization of the Monoatomic Ideal Gas". arXiv:cond-mat/9912229.
  22. ^ Dirac, Paul A. M. (1926). "On the Theory of Quantum Mechanics". Proceedings of the Royal Society A. 112 (762): 661–77. Bibcode:1926RSPSA.112..661D. doi:10.1098/rspa.1926.0133. JSTOR 94692.
  23. ^ von Neumann, John (1927), "Wahrscheinlichkeitstheoretischer Aufbau der Quantenmechanik", Göttinger Nachrichten, 1: 245–272
  24. ^ Anonymous (1927). "Minutes of the Philadelphia Meeting December 28, 29, 30, 1926". Physical Review. 29 (2): 350–373. Bibcode:1927PhRv...29..350.. doi:10.1103/PhysRev.29.350.
  25. ^ Johnson, J. (1928). "Thermal Agitation of Electricity in Conductors". Physical Review. 32 (97): 97–109. Bibcode:1928PhRv...32...97J. doi:10.1103/physrev.32.97.
  26. ^ Nyquist H (1928). "Thermal Agitation of Electric Charge in Conductors". Physical Review. 32 (1): 110–113. Bibcode:1928PhRv...32..110N. doi:10.1103/PhysRev.32.110.
  27. ^ Onsager, Lars (1931-02-15). "Reciprocal Relations in Irreversible Processes. I." Physical Review. 37 (4). American Physical Society (APS): 405–426. Bibcode:1931PhRv...37..405O. doi:10.1103/physrev.37.405. ISSN 0031-899X.
  28. ^ A. A. Vlasov (1938). "On Vibration Properties of Electron Gas". J. Exp. Theor. Phys. (in Russian). 8 (3): 291.
  29. ^ A. A. Vlasov (1968). "The Vibrational Properties of an Electron Gas". Soviet Physics Uspekhi. 10 (6): 721–733. Bibcode:1968SvPhU..10..721V. doi:10.1070/PU1968v010n06ABEH003709. S2CID 122952713.
  30. ^ N. N. Bogolyubov Jr. and D. P. Sankovich (1994). "N. N. Bogolyubov and statistical mechanics". Russian Math. Surveys 49(5): 19—49. doi:10.1070/RM1994v049n05ABEH002419
  31. ^ N. N. Bogoliubov and N. M. Krylov (1939). Fokker–Planck equations generated in perturbation theory by a method based on the spectral properties of a perturbed Hamiltonian. Zapiski Kafedry Fiziki Akademii Nauk Ukrainian SSR 4: 81–157 (in Ukrainian).
  32. ^ Onsager, Lars (1944-02-01). "Crystal Statistics. I. A Two-Dimensional Model with an Order-Disorder Transition". Physical Review. 65 (3–4): 117–149. Bibcode:1944PhRv...65..117O. doi:10.1103/physrev.65.117. ISSN 0031-899X.
  33. ^ N. N. Bogoliubov (1946). "Kinetic Equations". Journal of Experimental and Theoretical Physics (in Russian). 16 (8): 691–702.
  34. ^ N. N. Bogoliubov (1946). "Kinetic Equations". Journal of Physics USSR. 10 (3): 265–274.
  35. ^ Shannon, Claude Elwood, 1916-2001. (September 1998). The mathematical theory of communication. ISBN 978-0-252-09803-1. OCLC 967725093.{{cite book}}: CS1 maint: multiple names: authors list (link) CS1 maint: numeric names: authors list (link)
  36. ^ Kubo, Ryogo (1957-06-15). "Statistical-Mechanical Theory of Irreversible Processes. I. General Theory and Simple Applications to Magnetic and Conduction Problems". Journal of the Physical Society of Japan. 12 (6): 570–586. doi:10.1143/JPSJ.12.570. ISSN 0031-9015.
  37. ^ Jaynes, E.T. (1957). "Information theory and statistical mechanics" (PDF). Physical Review. 106 (4): 620–630. Bibcode:1957PhRv..106..620J. doi:10.1103/PhysRev.106.620.
  38. ^ — (1957). "Information theory and statistical mechanics II" (PDF). Physical Review. 108 (2): 171–190. Bibcode:1957PhRv..108..171J. doi:10.1103/PhysRev.108.171.