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Mathematics of Computation

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Journal: Math. Comp. 5 (1951), 70-81
DOI: https://doi.org/10.1090/S0025-5718-51-99437-9
Corrigendum: Math. Comp. 5 (1951), 184.
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  • [1] M. Kraitchik, Recherches sur la Théorie des Nombres. Paris, 1924, v. 1, p. 80.
  • [1] E. S. Pearson & C. Chandra Sekar, ``The efficiency of statistical tools and a criterion for the rejection of outlying observations,'' Biometrika, v. 28, 1936, p. 308-320.
  • [2] K. R. Nair, The distribution of the extreme deviate from the sample mean and its Studentized form, Biometrika 35 (1948), 118–144. MR 0025125, https://doi.org/10.1093/biomet/35.1-2.118
  • [3] A. T. McKay, ``The distribution of the difference between the extreme observation and the sample mean in samples of $ n$ from a normal universe,'' Biometrika, v. 27, 1935, p. 466-471.
  • [4] L. H. C. Tippett, ``On the extreme individuals and the range of samples taken from a normal population,'' Biometrika, v. 17, 1925, p. 364-387.
  • [1] B.A.A.S., Math. Tables, v. 1, 2nd ed., Cambridge, 1946, Tables XV and XVI.
  • [2] Karl Pearson & Alice Lee, ``On the generalized probable error in multiple normal correlation,'' Biometrika, v. 6, 1908, p. 59-68.
  • [3] See 1st ed. of above B.A.A.S. tables, 1931, p. xxvi-xxxv.
  • [1] Student, ``New tables for testing the significance of observations,'' Metron, v. 5, no. 3, 1925, p. 105-120.
  • [1] Otto Emersleben, Einige Identitäten für Epsteinsche Zetafunktionen 2. Ordnung, Math. Ann. 121 (1949), 103–106 (German). MR 0031516, https://doi.org/10.1007/BF01329619


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DOI: https://doi.org/10.1090/S0025-5718-51-99437-9
Article copyright: © Copyright 1951 American Mathematical Society