Network representation and complex systems
pp. 55-78
Résumé
In this article, network science is discussed from a methodological perspective, and two central theses are defended. The first is that network science exploits the very properties that make a system complex. Rather than using idealization techniques to strip those properties away, as is standard practice in other areas of science, network science brings them to the fore, and uses them to furnish new forms of explanation. The second thesis is that network representations are particularly helpful in explaining the properties of non-decomposable systems. Where part-whole decomposition is not possible, network science provides a much-needed alternative method of compressing information about the behavior of complex systems, and does so without succumbing to problems associated with combinatorial explosion. The article concludes with a comparison between the uses of network representation analyzed in the main discussion, and an entirely distinct use of network representation that has recently been discussed in connection with mechanistic modeling.
Détails de la publication
Publié dans:
Huneman Philippe, Kostić Daniel (2018) Mechanistic and topological explanations. Synthese 195 (1).
Pages: 55-78
DOI: 10.1007/s11229-015-0726-0
Citation complète:
Rathkopf Charles, 2018, Network representation and complex systems. Synthese 195 (1), Mechanistic and topological explanations, 55-78. https://doi.org/10.1007/s11229-015-0726-0.