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Updated: Apr 7, 2026

The HoneyComb Paradigm for Research on Collective Human Behavior
Published on: January 19, 2019
The dynamics of meaningful social interactions and the emergence of collective knowledge
Marija Mitrović Dankulov1, Roderick Melnik2, Bosiljka Tadić3
11] Department for Theoretical Physics, Jožef Stefan Institute, Ljubljana, Slovenia [2] Scientific Computing Laboratory, Institute of Physics Belgrade, University of Belgrade, Belgrade, Serbia.
Abstract:
Collective knowledge as a social value may arise in cooperation among actors whose individual expertise is limited. The process of knowledge creation requires meaningful, logically coordinated interactions, which represents a challenging problem to physics and social dynamics modeling. By combining two-scale dynamics model with empirical data analysis from a well-known Questions &Answers system Mathematics, we show that this process occurs as a collective phenomenon in an enlarged network (of actors and their artifacts) where the cognitive recognition interactions are properly encoded. The emergent behavior is quantified by the information divergence and innovation advancing of knowledge over time and the signatures of self-organization and knowledge sharing communities. These measures elucidate the impact of each cognitive element and the individual actor's expertise in the collective dynamics. The results are relevant to stochastic processes involving smart components and to collaborative social endeavors, for instance, crowdsourcing scientific knowledge production with online games.
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