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1: Publications
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D. W. Lozier (2003)
The NIST Digital Library of Mathematical Functions Project,
Annals of Mathematics and Artificial Intelligence—Special Issue on Mathematical Knowledge Management,
Vol. 38, Nos. 1–3, pp. 105–119.
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B. R. Miller and A. Youssef (2003)
Technical Aspects of the Digital Library of Mathematical Functions,
Annals of Mathematics and Artificial Intelligence—Special Issue on Mathematical Knowledge Management,
Vol. 38, Nos. 1–3, pp. 121–136.
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B. V. Saunders and Q. Wang (2005)
Boundary/Contour Fitted Grid Generation for Effective Visualizations
in a Digital Library of Mathematical Functions,
Proceedings of the 9th International Conference on Numerical Grid Generation
in Computational Field Simulations,
San Jose, June 11–18, 2005. pp. 61–71.
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Q. Wang and B. V. Saunders (2005)
Web-Based 3D Visualization in a Digital Library of Mathematical Functions,
Proceedings of the Web3D Symposium,
Bangor, UK, March 29–April 1, 2005.
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B. V. Saunders and Q. Wang (2006)
From B-Spline Mesh Generation to Effective Visualizations for the
NIST Digital Library of Mathematical Functions,
in Curve and Surface Design, Proceedings of the Sixth International
Conference on Curves and Surfaces,
Avignon, France June 29–July 5, 2006,
pp. 235–243.
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2: 10 Bessel Functions
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3: 26.2 Basic Definitions
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4: 26.9 Integer Partitions: Restricted Number and Part Size
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5: 11 Struve and Related Functions
Chapter 11 Struve and Related Functions
…6: Staff
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Richard B. Paris, University of Abertay, Chaps. 8, 11
Hans Volkmer, University of Wisconsin, Milwaukee, Chaps. 29, 30
Richard B. Paris, University of Abertay Dundee, for Chaps. 8, 11 (deceased)
Hans Volkmer, University of Wisconsin–Milwaukee, for Chaps. 29, 30
7: 29 Lamé Functions
Chapter 29 Lamé Functions
…8: 27.2 Functions
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Table 27.2.1: Primes.
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5 | 11 | 47 | 97 | 149 | 197 | 257 | 313 | 379 | 439 | 499 |
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10 | 29 | 71 | 113 | 173 | 229 | 281 | 349 | 409 | 463 | 541 |
9: Bibliography
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Asymptotic expansions of spheroidal wave functions.
J. Math. Phys. Mass. Inst. Tech. 28, pp. 195–199.
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Complex Analysis: An Introduction of the Theory of Analytic Functions of One Complex Variable.
2nd edition, McGraw-Hill Book Co., New York.
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On the zeros of confluent hypergeometric functions. III. Characterization by means of nonlinear equations.
Lett. Nuovo Cimento (2) 29 (11), pp. 353–358.
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Normal forms of functions in the neighborhood of degenerate critical points.
Uspehi Mat. Nauk 29 (2(176)), pp. 11–49 (Russian).
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Some basic hypergeometric extensions of integrals of Selberg and Andrews.
SIAM J. Math. Anal. 11 (6), pp. 938–951.
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10: Bibliography L
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An efficient derivative-free method for solving nonlinear equations.
ACM Trans. Math. Software 11 (3), pp. 250–262.
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Eine Verallgemeinerung der Sphäroidfunktionen.
Arch. Math. 11, pp. 29–39.
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Algorithm 244: Fresnel integrals.
Comm. ACM 7 (11), pp. 660–661.
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On the theory of Painlevé’s third equation.
Differ. Uravn. 3 (11), pp. 1913–1923 (Russian).
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Algorithms for rational approximations for a confluent hypergeometric function.
Utilitas Math. 11, pp. 123–151.
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