bioRxiv · 10.64898/2026.06.10.731311
Goal-dependent resource-rational compression of attribute differences explains nonlinearities in multi-attribute decision making
Abstract
Why do multi-attribute choices so often depart from classical weighted-additive decision rules? Rather than attributing such deviations solely to biases or heuristics, we propose a resource-rational account in which value differences are encoded via capacity-limited information channels. Under resource-rational compression, these difference representations are systematically distorted, such that behavior deviates from weighted-additive predictions because value differences are not represented veridically. This theoretical account makes testable predictions about power-law relationships between true and internally represented differences. The amount of power-law-like compression is determined by information-processing capacity, emergent long-tailed prior distributions over attribute differences, and, in choice contexts, goal-dependent subjective weights that govern the allocation of limited capacity across attribute channels. We test and find support for these predictions in an attribute difference-estimation task and by reanalyzing existing food- and social-choice datasets. These results provide converging evidence for a normative, information-theoretic account of systematic nonlinearities in multi-attribute decision making. Together they show how goals can interact with cognitive capacity and priors to shape representational precision in ways that may facilitate or impair decision making.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Bao, S. D., Bedi, S., Li, D., Ruff, C. C., Hare, T. A.. 2026-06-12. Goal-dependent resource-rational compression of attribute differences explains nonlinearities in multi-attribute decision making. https://doi.org/10.64898/2026.06.10.731311
Cite the original work for its findings. Save a collection to share your selection of sources.