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  2. How to Solve It - Wikipedia

    en.wikipedia.org/wiki/How_to_Solve_It

    Russian inventor Genrich Altshuller developed an elaborate set of methods for problem solving known as TRIZ, which in many aspects reproduces or parallels Pólya's work. How to Solve it by Computer is a computer science book by R. G. Dromey. [29] It was inspired by Pólya's work.

  3. George Pólya - Wikipedia

    en.wikipedia.org/wiki/George_Pólya

    George Pólya (/ ˈ p oʊ l j ə /; Hungarian: Pólya György, pronounced [ˈpoːjɒ ˈɟørɟ]; December 13, 1887 – September 7, 1985) was a Hungarian-American mathematician.He was a professor of mathematics from 1914 to 1940 at ETH Zürich and from 1940 to 1953 at Stanford University.

  4. Category:Princeton University Press books - Wikipedia

    en.wikipedia.org/wiki/Category:Princeton...

    Pages in category "Princeton University Press books" ... 1945–1960; The Collected Works of C. G. Jung; ... How to Solve It; I.

  5. Mathematics and Plausible Reasoning - Wikipedia

    en.wikipedia.org/wiki/Mathematics_and_plausible...

    Polya begins Volume I with a discussion on induction, not mathematical induction, but as a way of guessing new results.He shows how the chance observations of a few results of the form 4 = 2 + 2, 6 = 3 + 3, 8 = 3 + 5, 10 = 3 + 7, etc., may prompt a sharp mind to formulate the conjecture that every even number greater than 4 can be represented as the sum of two odd prime numbers.

  6. Princeton University Press - Wikipedia

    en.wikipedia.org/wiki/Princeton_University_Press

    Princeton University Press is an independent publisher with close connections to Princeton University. Its mission is to disseminate scholarship within academia and society at large. The press was founded by Whitney Darrow, with the financial support of Charles Scribner , as a printing press to serve the Princeton community in 1905. [ 2 ]

  7. Plausible reasoning - Wikipedia

    en.wikipedia.org/wiki/Plausible_reasoning

    Polya’s intention is to teach students the art of guessing new results in mathematics for which he marshals such notions as induction and analogy as possible sources for plausible reasoning. The first volume of the book is devoted to an extensive discussion of these ideas with several examples drawn from various field of mathematics.

  8. All horses are the same color - Wikipedia

    en.wikipedia.org/wiki/All_horses_are_the_same_color

    All horses are the same color is a falsidical paradox that arises from a flawed use of mathematical induction to prove the statement All horses are the same color. [1] There is no actual contradiction, as these arguments have a crucial flaw that makes them incorrect.

  9. Princeton Science Library - Wikipedia

    en.wikipedia.org/wiki/Princeton_Science_Library

    How to Solve It: A New Aspect of Mathematical Method by George Polya (1945) The Mathematician's Mind: The Psychology of Invention in the Mathematical Field by Jacques Hadamard (1945) Symmetry by Hermann Weyl (1952) Eye and Brain by Richard L. Gregory (1966) The Enjoyment of Math by Hans Rademacher and Otto Toeplitz (1966)

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