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Projection, symmetry, and natural kinds

Synthese 192 (11):3617-3646 (2015)

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  1. Emotions in conceptual spaces.Michał Sikorski & Ohan Hominis - 2024 - Philosophical Psychology.
    The overreliance on verbal models and theories in psychology has been criticized for hindering the development of reliable research programs (Harris, 1976; Yarkoni, 2020). We demonstrate how the conceptual space framework can be used to formalize verbal theories and improve their precision and testability. In the framework, scientific concepts are represented by means of geometric objects. As a case study, we present a formalization of an existing three-dimensional theory of emotion which was developed with a spatial metaphor in mind. Wundt (...)
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  • Homeostatic Property Cluster Theory without Homeostatic Mechanisms: Two Recent Attempts and their Costs.Yukinori Onishi & Davide Serpico - 2021 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie (1):61-82.
    The homeostatic property cluster theory is widely influential for its ability to account for many natural-kind terms in the life sciences. However, the notion of homeostatic mechanism has never been fully explicated. In 2009, Carl Craver interpreted the notion in the sense articulated in discussions on mechanistic explanation and pointed out that the HPC account equipped with such notion invites interest-relativity. In this paper, we analyze two recent refinements on HPC: one that avoids any reference to the causes of the (...)
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  • The Spirit of Cocktails: On the Conceptual Structure of Cocktail Recipes.Davide Serpico, M. Cristina Amoretti & Marcello Frixione - 2020 - Humana.Mente - Journal of Philosophical Studies 38 (13):37-59.
    In this paper, we discuss the conceptual structure of cocktail recipes. This topic involves engaging questions for philosophers and food theorists due to some peculiar characteristics of cocktail recipes, such as the fact that they are standardised by international associations but, nonetheless, vagueness in some elements of the recipes introduces a degree of variability between cocktails of the same type. Our proposal is that a classical theory of concepts is unable to account for such peculiar features. Thus, only a hybrid (...)
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  • Scientific Variables.Benjamin C. Jantzen - 2021 - Philosophies 6 (4):103.
    Despite their centrality to the scientific enterprise, both the nature of scientific variables and their relation to inductive inference remain obscure. I suggest that scientific variables should be viewed as equivalence classes of sets of physical states mapped to representations (often real numbers) in a structure preserving fashion, and argue that most scientific variables introduced to expand the degrees of freedom in terms of which we describe the world can be seen as products of an algorithmic inductive inference first identified (...)
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  • Ontology & Methodology.Benjamin C. Jantzen, Deborah G. Mayo & Lydia Patton - 2015 - Synthese 192 (11):3413-3423.
    Philosophers of science have long been concerned with the question of what a given scientific theory tells us about the contents of the world, but relatively little attention has been paid to how we set out to build theories and to the relevance of pre-theoretical methodology on a theory’s interpretation. In the traditional view, the form and content of a mature theory can be separated from any tentative ontological assumptions that went into its development. For this reason, the target of (...)
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  • The Compatibility of Differential Equations and Causal Models Reconsidered.Wes Anderson - 2020 - Erkenntnis 85 (2):317-332.
    Weber argues that causal modelers face a dilemma when they attempt to model systems in which the underlying mechanism operates according to some set of differential equations. The first horn is that causal models of these systems leave out certain causal effects. The second horn is that causal models of these systems leave out time-dependent derivatives, and doing so distorts reality. Either way causal models of these systems leave something important out. I argue that Weber’s reasons for thinking causal modeling (...)
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  • Kinds of process and the levels of selection.Benjamin C. Jantzen - 2019 - Synthese 196 (6):2407-2433.
    Most attempts to answer the question of whether populations of groups can undergo natural selection focus on properties of the groups themselves rather than the dynamics of the population of groups. Those approaches to group selection that do emphasize dynamics lack an account of the relevant notion of equivalent dynamics. I show that the theory of ‘dynamical kinds’ I proposed in Jantzen :3617–3646, 2014) can be used as a framework for assessing dynamical equivalence. That theory is based upon the notion (...)
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