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The Paternity of the Modern Computer

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Abstract

In recent decades, there has been a proliferation among the scientific community of works that focus on Alan Turing’s contributions to the design and development of the modern computer. However, there are significant discrepancies among these studies, to such a point that some of them cast serious doubts on Alan Turing’s work with respect to today’s computer, and there are others that staunchly defend his leading role, as well as other studies that set out more well-balanced opinions. Faced with this situation, the aim of this paper is to analyse the evidence existing today in order to be able to draw a conclusion about whether or not Turing anticipated the trivialisation of the modern computer memory and, likewise, if his universal a-machine is the precursor of the general-purpose computer so omnipresent today. As a result of our research, the authors conclude that Turing did indeed play a leading role in the appearance of the modern computer, although he was not the only one or the first in the field of Computing Science, albeit he was the most influential, both in scope and in depth.

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References

  • Anguera, A., Lara, J. A., Lizcano, D., Martínez, M. A., Pazos, J., & De la Peña, F. D. (2020). Turing: The great unknown. Foundations of Science, 25, 1203–1225.

    Article  Google Scholar 

  • Anguera de Sojo, A., Ares, J., Lara, J. A., Lizcano, D., Martínez, M. A., & Pazos, J. (2013). Turing and the serendipitous discovery of the modern computer. Foundations of Science, 18(3), 545–557.

    Article  Google Scholar 

  • Aspray, W. (1990). John von Neumann and the origins of modern Computing. MIT Press.

  • Bridgman, P. W. (1927). The logic of modern physics. McMillan.

  • Bridgman, P. W. (1934). A physicist’s second reaction to mengenlehre. Scripta Mathematica, 2(101–107), 224–234.

    Google Scholar 

  • Brewster, E. T. (1912). A child’s guide to living things, (the child’s guide series). Doubleday.

  • Burks, A. (1980). From ENIAC to the stored program computer two revolutions in computers. In N. Metropolis, J. Howlett, & G.-C. Rota (Eds.), A History of Computing in the 20th Century.Academic Press.

  • Copeland, B. J. (2004). The essential turing. Clarendon Press.

  • Copeland, B. J., & Shagrir, O. (2011). Do accelerating turing machines compute the uncomputable? Minds and Machines, 21(2), 221–239.

    Article  Google Scholar 

  • Copeland, B. J. (2015). The church-turing thesis. The Stanford Encyclopedia of Philosophy, Summer 2015 Edition. Retrieved January 2021, from .https://plato.stanford.edu/archives/sum2015/entries/church-turing

  • Corry, L. (2017). Turing’s pre-war analog computers: The fatherhood of the modern computer revisited. Communications of the ACM, 60(8), 50–58.

    Article  Google Scholar 

  • Evans, C. The pioneers of computing: An oral history of computing (London: Science Museum; © Board of Trustees of the Science Museum); audiotape of interview, 1976; supplied to B. J. Copeland by the archives of the London Science Museum in 1995; transcribed by B. J. Copeland in 1997.

  • Haigh, T., & Priestley, M. (2020). von neumann thought turing’s universal machine was “simple and neat”: But that didn’t tell him how to design a computer. Communications of the ACM, 63(1), 26–32.

    Article  Google Scholar 

  • Hodges, A. (1983). Alan turing: The enigma. Simon & Schuster.

  • Leavitt, D. (2006). The man who knew too much: Alan turing and the invention of the computer. W.W. Norton cop.

  • Manzano, M. (1997). Alonzo church: His life his work, and some of his miracles. History and Philosophy of Logic, 18, 211–232.

    Article  Google Scholar 

  • O’Connor, J. J. & Robertson, E. F. (2003). Turing biography. University of St Andrews. Retrieved January 2021, from http://www-history.mcs.st-andrews.ac.uk/Biographies/Turing.html

  • Randell, B. (1972). On Alan turing and the origins of digital computers. In B. Meltzer & D. Michie (Eds.), Machine intelligence. (Vol. 7, pp. 3–20). Edinburgh Univ Press.

  • Strathern, P. (1997). The big idea: Turing and the computer. Anchor Books.

  • Turing, A. M. (1935). On the Gaussian Error Function, King’s College Fellowship dissertation. The original is in the library of King’s College Cambridge but a copy is available online at http://www.turingarchive.org/browse.php/C/28

  • Turing, A. M. (1936). On computable numbers, with an application to the Entscheidungsproblem. Proceedings of the London Mathematical Society, Series, 2(42), 230–265.

    Google Scholar 

  • Vardi, M. Y. (2013). Who begat computing? Communications of the ACM, 56(1), 5.

    Article  Google Scholar 

  • Vardi, M. Y. (2017). Would turing have won the turing award? Communications of the ACM, 60(11), 7.

    Article  Google Scholar 

  • Von Neumann, J. (1932). Mathematical foundations of quantum mechanics: Princeton landmarks in mathematics and physics. Princeton University Press.

  • Von Neumann, J. (1934). Almost periodic functions in a group I. Transactions and the American Mathematical Society, 36(3), 445–492.

    Article  Google Scholar 

  • Von Neumann, J. (1946). Letter from von Neumann to weiner, 29 Nov. 1946. In the von Neumann Archive at the Library of Congress, Washington, DC.

  • Von Neumann, J. (1951). The general and logical theory of automata. In L. A. Jeffress (Ed.), Cerebral mechanisms in behavior; the Hixon Symposium. (pp. 1–41). Wiley.

  • Von Neumann, J. (1996). Rigorous theories of control and information: Theory of self-reproducing automata. (pp. 42–56). Univ. of Illinois Press.

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Correspondence to Juan A. Lara.

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Lara, J.A., Pazos, J., de Sojo, A.A. et al. The Paternity of the Modern Computer. Found Sci 27, 1029–1040 (2022). https://doi.org/10.1007/s10699-021-09797-y

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