APL (named after the book A Programming Language)[2] is a programming language developed in the 1960s by Kenneth E. Iverson. Its central datatype is the multidimensional array. It uses a large range of special graphic symbols[3] to represent most functions and operators, leading to very concise code. It has been an important influence on the development of concept modeling, spreadsheets, functional programming,[4] and computer math packages.[5] It has also inspired several other programming languages. (wikipedia)

References in zbMATH (referenced in 58 articles , 3 standard articles )

Showing results 1 to 20 of 58.
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  1. Gibbons, Jeremy: Aplicative programming with Naperian functors (2017)
  2. Amram, Meirav; Dagan, Miriam; Ioshpe, Michael; Satianov, Pavel: Staircase and fractional part functions (2016)
  3. Fernández-Martínez, M.; Sánchez-Granero, M. A.; Trinidad Segovia, J. E.; Vera-López, J. A.: A new topological indicator for chaos in mechanical systems (2016)
  4. Lagarias, Jeffrey C.; Murayama, Takumi; Richman, D. Harry: Dilated floor functions that commute (2016)
  5. D’Oliveira, Rafael Gregorio Lucas; Firer, Marcelo: The packing radius of a code and partitioning problems: the case for poset metrics on finite vector spaces (2015)
  6. Garn, Wolfgang; Aitken, James: Agile factorial production for a single manufacturing line with multiple products (2015)
  7. Goldberg, Mayer: Ellipses and lambda definability (2015)
  8. Varando, Gherardo; Bielza, Concha; Larrañaga, Pedro: Decision boundary for discrete Bayesian network classifiers (2015)
  9. Rininen, Lassi; Lehtinen, Markku S.; Piiroinen, Petteri; Virtanen, Ilkka I.: Perfect radar pulse compression via unimodular Fourier multipliers (2014)
  10. Beh, Eric J.; Tran, Duy; Hudson, Irene L.: A reformulation of the aggregate association index using the odds ratio (2013)
  11. Boute, Raymond: Pointfree expression and calculation: From quantification to temporal logic (2010)
  12. Lin, Edward Y. H.; Chen, M. C.: A dynamic programming approach to the multiple-choice multi-period, knapsack problem and the recursive APL2 code (2010)
  13. Trojahner, Kai; Grelck, Clemens: Dependently typed array programs don’t go wrong (2009)
  14. Emoto, Kento; Hu, Zhenjiang; Kakehi, Kazuhiko; Takeichi, Masato: A compositional framework for developing parallel programs on two-dimensional arrays (2007)
  15. Si, Yain-Whar; Edmond, David; Dumas, Marlon; ter Hofstede, Arthur H. M.: Specification and execution of composite trading activities (2007)
  16. Cockshott, Paul; Michaelson, Greg: Orthogonal parallel processing in Vector Pascal (2006)
  17. Grelck, Clemens; Scholz, Sven-Bodo: SAC -- a functional array language for efficient multi-threaded execution (2006)
  18. Goldberg, Mayer: A variadic extension of Curry’s fixed-point combinator (2005)
  19. Luke Tierney: Some Notes on the Past and Future of Lisp-Stat (2005) not zbMATH
  20. Raynolds, James E.; Mullin, Lenore R.: Applications of conformal computing techniques to problems in computational physics: the fast Fourier transform (2005)

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