词条 | Timeline of scientific computing |
释义 |
The following is a timeline of scientific computing, also known as computational science. Before modern computers18th century
19th century
1900s (decade)
1910s (decade)
1920s
1930sThis decade marks the first major strides to a modern computer, and hence the start of the modern era.
1940s
1950s
1960s
1970s
1980s
1990s
2000s
2010s
See also
References1. ^Buffon, G. Editor's note concerning a lecture given 1733 by Mr. Le Clerc de Buffon to the Royal Academy of Sciences in Paris. Histoire de l'Acad. Roy. des Sci., pp. 43-45, 1733; according to Weisstein, Eric W. "Buffon's Needle Problem." From MathWorld--A Wolfram Web Resource. 20 Dec 2012 20 Dec 2012. 2. ^Buffon, G. "Essai d'arithmétique morale." Histoire naturelle, générale er particulière, Supplément 4, 46-123, 1777; according to Weisstein, Eric W. "Buffon's Needle Problem." From MathWorld--A Wolfram Web Resource. 20 Dec 2012 3. ^Euler, L. Institutionum calculi integralis. Impensis Academiae Imperialis Scientiarum, 1768. 4. ^Butcher, John C. (2003), Numerical Methods for Ordinary Differential Equations, New York: John Wiley & Sons, {{ISBN|978-0-471-96758-3}}. 5. ^Hairer, Ernst; Nørsett, Syvert Paul; Wanner, Gerhard (1993), Solving ordinary differential equations I: Nonstiff problems, Berlin, New York: Springer-Verlag, {{ISBN|978-3-540-56670-0}}. 6. ^Laplace, PS. (1816). Théorie Analytique des Probabilités :First Supplement, p. 497ff. 7. ^{{cite journal | last1 = Gram | first1 = J. P. | year = 1883 | title = Ueber die Entwickelung reeler Funtionen in Reihen mittelst der Methode der kleinsten Quadrate, | url = | journal = Jrnl. für die reine und angewandte Math. | volume = 94 | issue = | pages = 71–73 }} 8. ^{{cite journal | last1 = Schmidt | first1 = E. | year = | title = Zur Theorie der linearen und nichtlinearen Integralgleichungen. I. Teil: Entwicklung willkürlicher Funktionen nach Systemen vorgeschriebener, | url = | journal = Math. Ann. | volume = 63 | issue = | page = 1907 }} 9. ^Earliest Known Uses of Some of the Words of Mathematics (G). As of Aug 2017. 10. ^{{cite book|last1=Farebrother|first1=RW|title=Linear Least Squares Computations|date=1988|publisher=CRC Press|isbn=9780824776619|pages=|edition=|url=https://books.google.com/books?id=aCS0zw7SztEC|accessdate=19 August 2017|ref=}} 11. ^{{cite web|last=Simonite|first=Tom|url=https://www.newscientist.com/blogs/shortsharpscience/2009/03/ada-lovelace-day.html|title=Short Sharp Science: Celebrating Ada Lovelace: the 'world's first programmer'|work=New Scientist|date=24 March 2009|accessdate=14 April 2012}} 12. ^Tom Stoppard’s “Arcadia,” at Twenty. By Brad Leithauser. The New Yorker, August 8, 2013. 13. ^{{cite journal|title=Ada and the first computer|last1=Kim|first1=Eugene Eric|last2=Toole|first2=Betty Alexandra|journal=Scientific American|date=May 1999|volume=280|issue=5|pages=70–71|doi=10.1038/scientificamerican0599-76}} 14. ^Jacobi’s Ideas on Eigenvalue Computation in a modern context, Henk van der Vorst. 15. ^Jacobi method, Encyclopedia of Mathematics. 16. ^The Early History of Matrix Iterations: With a Focus on the Italian Contribution, Michele Benzi, 26 October 2009. SIAM Conference on Applied Linear Algebra, Monterey Bay – Seaside, California. 17. ^MW Kutta. "Beiträge zur näherungsweisen Integration totaler Differentialgleichungen" [Contributions to the approximate integration of total differential equations] (in German). Thesis, University of Munich. * 1901 - {{citation|title= Reprinted|journal=Z. Math. Phys. |volume=46 |year=1901|pages= 435–453}} and in [https://books.google.com/books/about/Beitrag_zur_n%C3%A4herungsweisen_Integration.html?id=K5e6kQEACAAJ&redir_esc=y B.G Teubner, 1901]. 18. ^Runge, C., "Über die numerische Auflösung von Differentialgleichungen" [About the numerical solution of differential equations](in German), Math. Ann. 46 (1895) 167-178. 19. ^{{cite journal|last1=|first1=|author1=Commandant Benoit|title=Note sur une méthode de résolution des équations normales provenant de l'application de la méthode des moindres carrés à un système d'équations linéaires en nombre inférieur à celui des inconnues (Procédé du Commandant Cholesky)|journal=Bulletin Géodésique 2|date=1924|volume=|issue=|accessdate=|pages=67–77|trans-title=}} 20. ^{{cite book|last1=Cholesky|authorlink1=André-Louis Cholesky |title=Sur la résolution numérique des systèmes d'équations linéaires|date=1910|publisher=(manuscript)}} 21. ^L F Richardson, Weather Prediction by Numerical Process. Cambridge University Press (1922). 22. ^{{cite journal|last=Lynch|first=Peter|title=The origins of computer weather prediction and climate modeling|journal=Journal of Computational Physics|date=March 2008|volume=227|issue=7|pages=3431–44|doi=10.1016/j.jcp.2007.02.034|bibcode=2008JCoPh.227.3431L|publisher=University of Miami|url=http://www.rsmas.miami.edu/personal/miskandarani/Courses/MPO662/Lynch,Peter/OriginsCompWF.JCP227.pdf|accessdate=2010-12-23|deadurl=yes|archiveurl=https://web.archive.org/web/20100708191309/http://www.rsmas.miami.edu/personal/miskandarani/Courses/MPO662/Lynch,Peter/OriginsCompWF.JCP227.pdf|archivedate=2010-07-08|df=}} 23. ^{{cite journal| author=Grete Hermann| title=Die Frage der endlich vielen Schritte in der Theorie der Polynomideale| journal=Mathematische Annalen| year=1926| volume=95| pages=736–788|url=http://gdz.sub.uni-goettingen.de/index.php?id=11&PPN=PPN235181684_0095&DMDID=DMDLOG_0044&L=1| doi=10.1007/bf01206635}} 24. ^{{cite journal|last=Metropolis|first=N.|title=The Beginning of the Monte Carlo method|journal=Los Alamos Science|year=1987|volume=No. 15, Page 125|url=http://library.lanl.gov/cgi-bin/getfile?15-12.pdf}}. Accessed 5 may 2012. 25. ^S. Ulam, R. D. Richtmyer, and J. von Neumann(1947). Statistical methods in neutron diffusion. Los Alamos Scientific Laboratory report LAMS–551. 26. ^{{cite journal | last1 = Metropolis | first1 = N. | last2 = Ulam | first2 = S. | year = 1949 | title = The Monte Carlo method | url = | journal = Journal of the American Statistical Association | volume = 44 | issue = | pages = 335–341 | doi=10.1080/01621459.1949.10483310}} 27. ^{{cite web|title=SIAM News, November 1994.|url=http://www.stanford.edu/group/SOL/dantzig.html|accessdate=6 June 2012}} Systems Optimization Laboratory, Stanford University Huang Engineering Center (site host/mirror). 28. ^Von Neumann, J., Theory of Self-Reproduiing Automata, Univ. of Illinois Press, Urbana, 1966. 29. ^A. M. Turing, Rounding-off errors in matrix processes. Quart. J Mech. Appl. Math. 1 (1948), 287–308 (according to Poole, David (2006), Linear Algebra: A Modern Introduction (2nd ed.), Canada: Thomson Brooks/Cole, {{ISBN|0-534-99845-3}}.) . 30. ^[https://www.theguardian.com/business/2008/may/08/bankofenglandgovernor.economics The computer model that once explained the British economy.] Larry Elliott, The Guardian, Thursday 8 May 2008. 31. ^Phillip's Economic Computer, 1949. Exhibit at London Science Museum. 32. ^Richtmyer, R. D. (1948). Proposed Numerical Method for Calculation of Shocks. Los Alamos, NM: Los Alamos Scientific Laboratory LA-671. 33. ^{{cite journal | last1 = Von Neumann | first1 = J. | last2 = Richtmyer | first2 = R. D. | year = 1950 | title = A Method for the Numerical Calculation of Hydrodynamic Shocks | url = | journal = Journal of Applied Physics | volume = 21 | issue = | pages = 232–237 | doi=10.1063/1.1699639 | bibcode=1950JAP....21..232V}} 34. ^{{cite journal | last1 = Charney | first1 = J. | last2 = Fjørtoft | first2 = R. | last3 = von Neumann | first3 = J. | year = 1950 | title = Numerical Integration of the Barotropic Vorticity Equation | doi = 10.1111/j.2153-3490.1950.tb00336.x | journal = Tellus | volume = 2 | issue = 4 | pages=237–254}} 35. ^See the review article:- {{cite journal|last=Smagorinsky|first=J|title=The Beginnings of Numerical Weather Prediction and General Circulation Modelling: Early Recollections|journal=Advances in Geophysics|year=1983|volume=25|url=http://docs.lib.noaa.gov/rescue/JNWP/50th_Symp_2004_CD.PDF/JNWPU_2004_All/1010.pdf|accessdate=6 June 2012}} 36. ^Magnus R. Hestenes and Eduard Stiefel, Methods of Conjugate Gradients for Solving Linear Systems, J. Res. Natl. Bur. Stand. 49, 409-436 (1952). 37. ^Eduard Stiefel,U¨ ber einige Methoden der Relaxationsrechnung (in German), Z. Angew. Math. Phys. 3, 1-33 (1952). 38. ^Cornelius Lanczos, Solution of Systems of Linear Equations by Minimized Iterations, J. Res. Natl. Bur. Stand. 49, 33-53 (1952). 39. ^Cornelius Lanczos, An Iteration Method for the Solution of the Eigenvalue Problem of Linear Differential and Integral Operators, J. Res. Natl. Bur. Stand. 45, 255-282 (1950). 40. ^{{cite journal | last1 = Metropolis | first1 = N. | last2 = Rosenbluth | first2 = A.W. | last3 = Rosenbluth | first3 = M.N. | last4 = Teller | first4 = A.H. | last5 = Teller | first5 = E. | year = 1953 | title = Equations of State Calculations by Fast Computing Machines | url = http://www.aliquote.org/pub/metropolis-et-al-1953.pdf | format = PDF | journal = Journal of Chemical Physics | volume = 21 | issue = 6| pages = 1087–1092 | doi = 10.1063/1.1699114 | bibcode=1953JChPh..21.1087M}} 41. ^{{cite journal | last1 = Alder | first1 = B. J. | last2 = Wainwright | first2 = T. E. | year = 1957 | title = Phase Transition for a Hard Sphere System | url = | journal = J. Chem. Phys. | volume = 27 | issue = 5| page = 1208 | doi = 10.1063/1.1743957 }} 42. ^{{cite journal | last1 = Alder | first1 = B. J. | last2 = Wainwright | first2 = T. E. | year = 1962 | title = Phase Transition in Elastic Disks | url = | journal = Phys. Rev. | volume = 127 | issue = 2| pages = 359–361 | doi = 10.1103/PhysRev.127.359 }} 43. ^{{cite journal|first=A. S. |last=Householder |title=Unitary Triangularization of a Nonsymmetric Matrix|journal=Journal of the ACM |volume=5 |issue=4 |year=1958 |pages=339–342|doi=10.1145/320941.320947 |mr=0111128}} 44. ^Fermi, E. (posthumously); Pasta, J.; Ulam, S. (1955) : Studies of Nonlinear Problems (accessed 25 Sep 2012). Los Alamos Laboratory Document LA-1940. Also appeared in 'Collected Works of Enrico Fermi', E. Segre ed. , University of Chicago Press, Vol.II,978–988,1965. Recovered 21 Dec 2012 45. ^W.W. McDowell Award citation: {{cite web| title=W. Wallace McDowell Award| url=http://www.computer.org/portal/site/ieeecs/menuitem.c5efb9b8ade9096b8a9ca0108bcd45f3/index.jsp?&pName=ieeecs_level1&path=ieeecs/about/awards&file=WallaceMcD_recipients.xml&xsl=generic.xsl&| accessdate=April 15, 2008}} 46. ^National Medal of Science citation: {{cite web | title = The President's National Medal of Science: John Backus | publisher = National Science Foundation | url = https://www.nsf.gov/od/nms/recip_details.cfm?recip_id=25 | accessdate =March 21, 2007}} 47. ^{{cite web|title=ACM Turing Award Citation: John Backus |publisher=Association for Computing Machinery |url=http://www.acm.org/awards/turing_citations/backus.html |accessdate=March 22, 2007 |archiveurl=https://web.archive.org/web/20070204114319/http://www.acm.org/awards/turing_citations/backus.html |archivedate=February 4, 2007 |deadurl=yes |df= }} 48. ^RW Clough, "The Finite Element Method in PlaneStress Analysis," Proceedings of 2nd ASCE Conference on Electronic Computation, Pittsburgh, PA, Sept. 8, 9, 1960. 49. ^{{cite journal | last1 = Francis | first1 = J.G.F. | year = 1961 | title = The QR Transformation, I | url = | journal = The Computer Journal | volume = 4 | issue = 3| pages = 265–271 | doi=10.1093/comjnl/4.3.265}} 50. ^{{cite journal | last1 = Francis | first1 = J.G.F. | year = 1962 | title = The QR Transformation, II | url = | journal = The Computer Journal | volume = 4 | issue = 4| pages = 332–345 | doi=10.1093/comjnl/4.4.332}} 51. ^{{cite journal | last1 = Kublanovskaya | first1 = Vera N. | year = 1961 | title = On some algorithms for the solution of the complete eigenvalue problem | url = | journal = USSR Computational Mathematics and Mathematical Physics | volume = 1 | issue = 3| pages = 637–657 | doi = 10.1016/0041-5553(63)90168-X }} Also published in: Zhurnal Vychislitel'noi Matematiki i Matematicheskoi Fiziki [Journal of Computational Mathematics and Mathematical Physics], 1(4), pages 555–570 (1961). 52. ^{{cite journal|last=Lorenz|first=Edward N.|title=Deterministic Nonperiodic Flow|journal=Journal of the Atmospheric Sciences |volume=20 |issue=2 |pages=130–141|year=1963|url=http://www.nd.edu/~powers/ame.60611/lorenz.article.pdf |doi=10.1175/1520-0469(1963)020<0130:dnf>2.0.co;2}} 53. ^Minovitch, Michael: "A method for determining interplanetary free-fall reconnaissance trajectories," Jet Propulsion Laboratory Technical Memo TM-312-130, pages 38-44 (23 August 1961). 54. ^Christopher Riley and Dallas Campbell, Oct 22, 2012. "The maths that made Voyager possible". BBC News Science and Environment. Recovered 16 Jun 2013. 55. ^{{cite journal|last=Rahman|first=A|title=Correlations in the Motion of Atoms in Liquid Argon|journal=Phys Rev|year=1964|volume=136|issue=2A|pages=A405–A41|doi=10.1103/PhysRev.136.A405|bibcode=1964PhRv..136..405R}} 56. ^{{cite journal | last1 = Cooley | first1 = James W. | last2 = Tukey | first2 = John W. | year = 1965 | title = An algorithm for the machine calculation of complex Fourier series | url = http://attach3.bdwm.net/attach/0Announce/groups/GROUP_3/MathTools/D6714701A/D69595345/M.1089260001.A/CooleyJ_AlgMCC.pdf | journal = Math. Comput. | volume = 19 | issue = | pages = 297–301 | doi=10.1090/s0025-5718-1965-0178586-1}} 57. ^{{cite journal | last1 = Kohn | first1 = Walter | last2 = Hohenberg | first2 = Pierre| year = 1964| title = Inhomogeneous Electron Gas| journal = Physical Review| volume = 136 | pages = B864-B871| issue = 3B | doi = 10.1103/PhysRev.136.B864|bibcode = 1964PhRv..136..864H }} 58. ^{{cite journal | last1 = Kohn | first1 = Walter | last2 = Sham | first2 = Lu Jeu | year = 1965 | title = Self-Consistent Equations Including Exchange and Correlation Effects | journal = Physical Review | volume = 140 | pages = A1133–A1138 | issue = 4A | doi = 10.1103/PhysRev.136.B864|bibcode = 1965PhRv..140.1133K }} 59. ^{{cite web | title = The Nobel Prize in Chemistry 1998 | publisher = Nobelprize.org | url = http://nobelprize.org/nobel_prizes/chemistry/laureates/1998/index.html|accessdate=2008-10-06}} 60. ^B. Mandelbrot; Les objets fractals, forme, hasard et dimension (in French). Publisher: Flammarion (1975), {{ISBN|9782082106474}} ; English translation Fractals: Form, Chance and Dimension. Publisher: Freeman, W. H & Company. (1977). {{ISBN|9780716704737}}. 61. ^{{cite journal | last1 = Appel | first1 = Kenneth | last2 = Haken | first2 = Wolfgang | year = 1977 | title = Every planar map is four colorable, Part I: Discharging | url = | journal = Illinois Journal of Mathematics | volume = 21 | issue = | pages = 429–490 }} 62. ^{{cite journal | last1 = Appel | first1 = K. | last2 = Haken | first2 = W. | year = 1977 | title = Every Planar Map is Four-Colorable, II: Reducibility | url = | journal = Illinois J. Math. | volume = 21 | issue = | pages = 491–567 }} 63. ^{{cite journal | last1 = Appel | first1 = K. | last2 = Haken | first2 = W. | year = 1977 | title = The Solution of the Four-Color Map Problem | url = | journal = Sci. Am. | volume = 237 | issue = | pages = 108–121 | doi=10.1038/scientificamerican1077-108}} 64. ^L. Greengard, The Rapid Evaluation of Potential Fields in Particle Systems, MIT, Cambridge, (1987). 65. ^Rokhlin, Vladimir (1985). "Rapid Solution of Integral Equations of Classic Potential Theory." J. Computational Physics Vol. 60, pp. 187-207. 66. ^{{cite journal | last1 = Greengard | first1 = L. | last2 = Rokhlin | first2 = V. | year = 1987 | title = A fast algorithm for particle simulations | url = | journal = J. Comput. Phys. | volume = 73 | issue = 2| pages = 325–348 | doi=10.1016/0021-9991(87)90140-9}} External links
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