DLMF

NIST digital library of mathematical functions. The National Institute of Standards and Technology is preparing a Digital Library of Mathematical Functions (DLMF) to provide useful data about special functions for a wide audience. The initial products will be a published handbook and companion Web site, both scheduled for completion in 2003. More than 50 mathematicians, physicists and computer scientists from around the world are participating in the work. The data to be covered include mathematical formulas, graphs, references, methods of computation, and links to software. Special features of the Web site include 3D interactive graphics and an equation search capability. The information technology tools that are being used are, of necessity, ones that are widely available now, even though better tools are in active development. For example, LaTeX files are being used as the common source for both the handbook and the Web site. This is the technology of choice for presentation of mathematics in print but it is not well suited to equation search, for example, or for input to computer algebra systems. These and other problems, and some partially successful work-arounds, are discussed in this paper and in the companion paper by {it B. R. Miller} and {it A. Youssef} lbrack ibid. 38, 121--136 (2003; Zbl 1019.65002) brack.


References in zbMATH (referenced in 2331 articles , 4 standard articles )

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  1. Znojil, Miloslav: The crypto-Hermitian smeared-coordinate representation of wave functions (2011)
  2. Bailey, D. H.; Borwein, J. M.; Crandall, R. E.: Advances in the theory of box integrals (2010)
  3. Ben-Naim, E.; Krapivsky, P. L.: First-passage exponents of multiple random walks (2010)
  4. Benoit, Alexandre; Chyzak, Frédéric; Darrasse, Alexis; Gerhold, Stefan; Mezzarobba, Marc; Salvy, Bruno: The dynamic dictionary of mathematical functions (DDMF) (2010)
  5. Burgsmüller, Matthias; Diehl, H. W.; Shpot, M. A.: Fluctuation-induced forces in strongly anisotropic critical systems (2010)
  6. Kanzieper, Eugene; Singh, Navinder: Non-Hermitean Wishart random matrices (I) (2010)
  7. Olver, Frank W. J. (ed.); Lozier, Daniel W. (ed.); Boisvert, Ronald F. (ed.); Clark, Charles W. (ed.): NIST handbook of mathematical functions (2010)
  8. Saunders, Bonita; Wang, Qiming: Tensor product B-spline mesh generation for accurate surface visualizations in the NIST digital library of mathematical functions (2010)
  9. Saxena, R. K.; Mathai, A. M.; Haubold, H. J.: Solutions of certain fractional kinetic equations and a fractional diffusion equation (2010)
  10. Stamerjohanns, Heinrich; Kohlhase, Michael; Ginev, Deyan; David, Catalin; Miller, Bruce: Transforming large collections of scientific publications to XML (2010)
  11. Wu, Junjie; Yuan, Hua; Xiong, Hui; Chen, Guoqing: Validation of overlapping clustering: a random clustering perspective (2010) ioport
  12. Wong, R.; Zhao, Yuqiu: Asymptotics of orthogonal polynomials via the Riemann-Hilbert approach (2009)
  13. Backeljauw, Franky; Becuwe, Stefan; Cuyt, Annie: Validated evaluation of special mathematical functions (2008)
  14. Borwein, David; Borwein, Jonathan M.; Chan, O-Yeat: The evaluation of Bessel functions via exp-arc integrals (2008)
  15. Kaliszyk, Cezary: Automating side conditions in formalized partial functions (2008)
  16. Li, Y. T.; Wong, R.: Integral and series representations of the Dirac delta function (2008)
  17. Saxena, R. K.; Mathai, A. M.; Haubold, H. J.: Solutions of certain fractional kinetic equations and a fractional diffusion equation (2008)
  18. Youssef, Abdou S.: Relevance ranking and hit description in math search (2008)
  19. Chen, Xiaoyu; Wang, Dongming: Towards an electronic geometry textbook (2007)
  20. Chetrite, Raphaël; Delannoy, Jean-Yves; Gawedzki, Krzysztof: Kraichnan flow in a square: An example of integrable chaos (2007)

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