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Primitive Roots

Part of the Springer Series in Information Sciences book series (SSINF, volume 7)

Keywords

Period Length Primitive Root Great Common Divisor Decimal Fraction Coprime Factor 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Chapter 13

  1. 13.1
    C. F. Gauss: Disquisitiones Arithmeticae [English transl. by A. A. Clarke, Yale University Press, New Haven 1966]MATHGoogle Scholar
  2. 13.2
    M. Abramowitz, I. A. Stegun (eds.): Handbook of Mathematical Functions (Dover, New York 1970)Google Scholar
  3. 13.3
    C. S. Ogilvy: Tomorrow’s Math (Oxford University Press, Oxford 1962)MATHGoogle Scholar
  4. 13.4
    L. J. Alex: Solving exponential diophantine equations. Math. Mag. 54, 259–260 (1981)MATHCrossRefMathSciNetGoogle Scholar
  5. 13.5
    S. W. Golomb: Shift Register Sequences (Holden-Day, San Francisco 1967)MATHGoogle Scholar
  6. 13.6
    H. E. Rowe: Signals and Noise in Communication Systems (Van Nostrand Reinhold, New York 1965)MATHGoogle Scholar
  7. 13.7
    M. R. Schroeder, D. Gottlob, K. F. Siebrasse: Comparative study of European concert halls. J. Acoust. Soc. Am. 56, 1195–1201 (1974)ADSCrossRefGoogle Scholar
  8. 13.8
    M. R. Schroeder: Binaural dissimilarity and optimum ceilings for concert halls: More lateral sound diffusion. J. Acoust. Soc. Am. 65, 958–963 (1979)ADSCrossRefGoogle Scholar
  9. 13.9
    M. R. Schroeder: Toward better acoustics for concert halls. Phys. Today 33, No. 10, 24–30, October (1979)CrossRefGoogle Scholar
  10. 13.10
    H. W. Strube: More on the diffraction theory of Schroeder diffusors. J. Acoust. Soc. Am. 70, 633–635 (1981)CrossRefMATHADSGoogle Scholar
  11. 13.11
    H.P. Lawther, Jr.: An application of number theory to the splicing of telephone cables. Am. Math. Monthly 42, 81–91 (1935)MATHCrossRefGoogle Scholar
  12. 13.12
    G. K. Skinner: Sci. Am. August, 66 (1988)Google Scholar

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© Springer-Verlag Berlin Heidelberg 2006

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