GAP

GAP is a system for computational discrete algebra, with particular emphasis on Computational Group Theory. GAP provides a programming language, a library of thousands of functions implementing algebraic algorithms written in the GAP language as well as large data libraries of algebraic objects. See also the overview and the description of the mathematical capabilities. GAP is used in research and teaching for studying groups and their representations, rings, vector spaces, algebras, combinatorial structures, and more. The system, including source, is distributed freely. You can study and easily modify or extend it for your special use. Computer algebra system (CAS).

This software is also referenced in ORMS.


References in zbMATH (referenced in 2535 articles , 2 standard articles )

Showing results 2361 to 2380 of 2535.
Sorted by year (citations)

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  1. Björner, Anders; Lutz, Frank H.: Simplicial manifolds, bistellar flips and a 16-vertex triangulation of the Poincaré homology 3-sphere. (2000)
  2. Bleher, Frauke M.; Kimmerle, Wolfgang: On the structure of integral group rings of sporadic groups (2000)
  3. Blume, Andreas: Coordination and learning with a partial language (2000)
  4. Bovdi, A.; Erdei, L.: Unitary units in modular group algebras of (2)-groups (2000)
  5. Bratus, Sergey; Pak, Igor: Fast constructive recognition of a black box group isomorphic to (S_n) or (A_n) using Goldbach’s conjecture (2000)
  6. Breuer, Thomas: Characters and automorphism groups of compact Riemann surfaces (2000)
  7. Brown, Kenneth S.: The coset poset and probabilistic zeta function of a finite group (2000)
  8. Camina, Alan R.; Spiezia, Federica: Sporadic groups and automorphisms of linear spaces (2000)
  9. de Graaf, Willem A.: Lie algebras: theory and algorithms (2000)
  10. Edjvet, M.; Juhász, A.: Equations of length 4 and one-relator products (2000)
  11. Edjvet, M.; Juhász, A.: One-relator quotients of free products of cyclic groups (2000)
  12. Eisermann, Michael: Knot group representations and invariants of finite type (2000)
  13. Geck, Meinolf; Kim, Sungsoon; Pfeiffer, Götz: Minimal length elements in twisted conjugacy classes of finite Coxeter groups. (2000)
  14. Green, Edward L.; Heath, Lenwood S.; Struble, Craig A.: Constructing endomorphism rings via duals (2000)
  15. Guralnick, Robert M.; Kantor, William M.: Probabilistic generation of finite simple groups (2000)
  16. Hausel, T.; Makai, E. jun.; Szűcs, A.: Inscribing cubes and covering by rhombic dodecahedra via equivariant topology (2000)
  17. Hiss, Gerhard; Kessar, Radha: Scopes reduction and Morita equivalence classes of blocks in finite classical groups (2000)
  18. Hulpke, Alexander: Conjugacy classes in finite permutation groups via homomorphic images (2000)
  19. Ivanyos, Gábor; Lux, Klaus: Treating the exceptional cases of the MeatAxe (2000)
  20. Koolen, J. H.; Munemasa, A.: Tight 2-designs and perfect 1-codes in Doob graphs (2000)

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Further publications can be found at: http://www.gap-system.org/Doc/Bib/bib.html