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GrInvIn in a Nutshell

Adriaan Peeters (UGent) , Kris Coolsaet (UGent) , Gunnar Brinkmann (UGent) , Nicolas Van Cleemput (UGent) and Veerle Fack (UGent)
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Abstract
GrInvIn (Graph Invariant Investigator) is a software framework for teaching graph theory and for research in graph theory and graph theoretic chemistry. It enables users to construct graphs, compute invariants (e.g. topological indices in chemistry) and investigate relations between these concepts. The design of GrInvIn emphasizes easy usage and makes use of software engineering techniques that enable the user to easily extend the system (e.g. by adding new topological indices to investigate).

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Citation

Please use this url to cite or link to this publication:

MLA
Peeters, Adriaan, Kris Coolsaet, Gunnar Brinkmann, et al. “GrInvIn in a Nutshell.” Journal of Mathematical Chemistry 45.2 (2009): 471–477. Print.
APA
Peeters, Adriaan, Coolsaet, K., Brinkmann, G., Van Cleemput, N., & Fack, V. (2009). GrInvIn in a Nutshell. Journal of Mathematical Chemistry, 45(2), 471–477. Presented at the Conference on 20 Years of Molecular Topology in Cluj.
Chicago author-date
Peeters, Adriaan, Kris Coolsaet, Gunnar Brinkmann, Nicolas Van Cleemput, and Veerle Fack. 2009. “GrInvIn in a Nutshell.” Journal of Mathematical Chemistry 45 (2): 471–477.
Chicago author-date (all authors)
Peeters, Adriaan, Kris Coolsaet, Gunnar Brinkmann, Nicolas Van Cleemput, and Veerle Fack. 2009. “GrInvIn in a Nutshell.” Journal of Mathematical Chemistry 45 (2): 471–477.
Vancouver
1.
Peeters A, Coolsaet K, Brinkmann G, Van Cleemput N, Fack V. GrInvIn in a Nutshell. Journal of Mathematical Chemistry. 2009;45(2):471–7.
IEEE
[1]
A. Peeters, K. Coolsaet, G. Brinkmann, N. Van Cleemput, and V. Fack, “GrInvIn in a Nutshell,” Journal of Mathematical Chemistry, vol. 45, no. 2, pp. 471–477, 2009.
@article{524095,
  abstract     = {{GrInvIn (Graph Invariant Investigator) is a software framework for teaching graph theory and for research in graph theory and graph theoretic chemistry. It enables users to construct graphs, compute invariants (e.g. topological indices in chemistry) and investigate relations between these concepts. The design of GrInvIn emphasizes easy usage and makes use of software engineering techniques that enable the user to easily extend the system (e.g. by adding new topological indices to investigate).}},
  author       = {{Peeters, Adriaan and Coolsaet, Kris and Brinkmann, Gunnar and Van Cleemput, Nicolas and Fack, Veerle}},
  issn         = {{0259-9791}},
  journal      = {{Journal of Mathematical Chemistry}},
  language     = {{eng}},
  location     = {{Cluj Napoca, ROMANIA}},
  number       = {{2}},
  pages        = {{471--477}},
  title        = {{GrInvIn in a Nutshell}},
  url          = {{http://dx.doi.org/10.1007/s10910-008-9420-5}},
  volume       = {{45}},
  year         = {{2009}},
}

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