arXiv Analytics

Sign in

arXiv:2406.04936 [math.LO]AbstractReferencesReviewsResources

On Quantifiers for Quantitative Reasoning

Matteo Capucci

Published 2024-06-07Version 1

We explore a kind of first-order predicate logic with intended semantics in the reals. Compared to other approaches in the literature, we work predominantly in the multiplicative reals [0,\infty], showing they support three generations of connectives, that we call non-linear, linear additive, and linear multiplicative. Means and harmonic means emerge as natural candidates for bounded existential and universal quantifiers, and in fact we see they behave as expected in relation to the other logical connectives. We explain this fact through the well-known fact that min/max and arithmetic mean/harmonic mean sit at opposite ends of a spectrum, that of p-means. We give syntax and semantics for this quantitative predicate logic, and as example applications, we show how softmax is the quantitative semantics of argmax, and R\'enyi entropy/Hill numbers are additive/multiplicative semantics of the same formula. Indeed, the additive reals also fit into the story by exploiting the Napierian duality -log \dashv 1/exp, which highlights a formal distinction between 'additive' and 'multiplicative' quantities. Finally, we describe two attempts at a categorical semantics via enriched hyperdoctrines. We discuss why hyperdoctrines are in fact probably inadequate for this kind of logic.

Related articles: Most relevant | Search more
arXiv:2410.09195 [math.LO] (Published 2024-10-11)
$ω$-consistency for Different Arrays of Quantifiers
arXiv:1809.08299 [math.LO] (Published 2018-09-21)
On elimination of quantifiers in some non-classical mathematical theories
arXiv:1905.05745 [math.LO] (Published 2019-05-14)
A New Universal Definition of $\mathbb{F}_q [t]$ in $\mathbb{F}_q (t)$