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Research Articles

A new agent-based model offers insight into population-wide adoption of prosocial common-pool behavior

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Pages 311-338 | Received 24 Jul 2021, Accepted 19 Dec 2021, Published online: 05 Feb 2022
 

ABSTRACT

New theoretical agent-based model of population-wide adoption of prosocial common-pool behavior with four parameters (initial percent of adopters, pressure to change behavior, synergy from behavior, and population density); dynamics in behavior, movement, freeriding, and group composition and size; and emergence of multilevel group selection. Theoretical analysis of model’s dynamics identified six regions in model’s parameter space, in which pressure-synergy combinations lead to different outcomes: extinction, persistence, and full adoption. Simulation results verified the theoretical analysis and demonstrated that increases in density reduce number of pressure-synergy combinations leading to population-wide adoption; initial percent of contributors affects underlying behavior and final outcomes, but not size of regions or transition zones between them; and random movement assists adoption of prosocial common-pool behavior.

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Additional information

Funding

The author(s) reported that there is no funding associated with the work featured in this article.

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