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Peter Gärdenfors [153]P. Gärdenfors [2]
  1. On the logic of theory change: Partial meet contraction and revision functions.Carlos E. Alchourrón, Peter Gärdenfors & David Makinson - 1985 - Journal of Symbolic Logic 50 (2):510-530.
    This paper extends earlier work by its authors on formal aspects of the processes of contracting a theory to eliminate a proposition and revising a theory to introduce a proposition. In the course of the earlier work, Gardenfors developed general postulates of a more or less equational nature for such processes, whilst Alchourron and Makinson studied the particular case of contraction functions that are maximal, in the sense of yielding a maximal subset of the theory (or alternatively, of one of (...)
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  2. Conceptual Spaces: The Geometry of Thought.Peter Gärdenfors - 2000 - Tijdschrift Voor Filosofie 64 (1):180-181.
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  3. Knowledge in Flux. Modeling the Dynamics of Epistemic States.Peter Gärdenfors - 1988 - Studia Logica 49 (3):421-424.
     
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  4. What are natural concepts? A design perspective.Igor Douven & Peter Gärdenfors - 2019 - Mind and Language (3):313-334.
    Conceptual spaces have become an increasingly popular modeling tool in cognitive psychology. The core idea of the conceptual spaces approach is that concepts can be represented as regions in similarity spaces. While it is generally acknowledged that not every region in such a space represents a natural concept, it is still an open question what distinguishes those regions that represent natural concepts from those that do not. The central claim of this paper is that natural concepts are represented by the (...)
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  5. Belief revisions and the Ramsey test for conditionals.Peter Gärdenfors - 1986 - Philosophical Review 95 (1):81-93.
  6. Category-based induction in conceptual spaces.Matías Osta-Vélez & Peter Gärdenfors - 2020 - Journal of Mathematical Psychology 96.
    Category-based induction is an inferential mechanism that uses knowledge of conceptual relations in order to estimate how likely is for a property to be projected from one category to another. During the last decades, psychologists have identified several features of this mechanism, and they have proposed different formal models of it. In this article; we propose a new mathematical model for category-based induction based on distances on conceptual spaces. We show how this model can predict most of the properties of (...)
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  7. Unreliable probabilities, risk taking, and decision making.Peter Gärdenfors & Nils-Eric Sahlin - 1982 - Synthese 53 (3):361-386.
  8.  54
    How Homo Became Sapiens: On the Evolution of Thinking.Peter Gärdenfors - 2003 - Oxford University Press.
    In this entertaining work, Peter Grdenfors embarks on an evolutionary detective story to try and solve one of the big mysteries surrounding human existence - how has the modern human being's way of thinking come into existence. Immensely readable and full of humorous insights, the book will be valuable for students in psychology and biology, and accessible to readers of popular science.
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  9.  29
    Nonmonotonic inference based on expectations.Peter Gärdenfors & David Makinson - 1994 - Artificial Intelligence 65 (2):197-245.
  10.  14
    Decision, Probability and Utility: Selected Readings.Peter Gärdenfors & Nils-Eric Sahlin (eds.) - 1988 - Cambridge University Press.
    Decision theory and the theory of rational choice have recently been the subjects of considerable research by philosophers and economists. However, no adequate anthology exists which can be used to introduce students to the field. This volume is designed to meet that need. The essays included are organized into five parts covering the foundations of decision theory, the conceptualization of probability and utility, pholosophical difficulties with the rules of rationality and with the assessment of probability, and causal decision theory. The (...)
  11. Induction, Conceptual Spaces and AI.Peter Gärdenfors - 1990 - Philosophy of Science 57 (1):78 - 95.
    A computational theory of induction must be able to identify the projectible predicates, that is to distinguish between which predicates can be used in inductive inferences and which cannot. The problems of projectibility are introduced by reviewing some of the stumbling blocks for the theory of induction that was developed by the logical empiricists. My diagnosis of these problems is that the traditional theory of induction, which started from a given (observational) language in relation to which all inductive rules are (...)
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  12. Theory change as dimensional change: conceptual spaces applied to the dynamics of empirical theories.Peter Gärdenfors & Frank Zenker - 2013 - Synthese 190 (6):1039-1058.
    This paper offers a novel way of reconstructing conceptual change in empirical theories. Changes occur in terms of the structure of the dimensions—that is to say, the conceptual spaces—underlying the conceptual framework within which a given theory is formulated. Five types of changes are identified: (1) addition or deletion of special laws, (2) change in scale or metric, (3) change in the importance of dimensions, (4) change in the separability of dimensions, and (5) addition or deletion of dimensions. Given this (...)
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  13. Imaging and conditionalization.Peter Gärdenfors - 1982 - Journal of Philosophy 79 (12):747-760.
  14.  39
    Technology led to more abstract causal reasoning.Peter Gärdenfors & Marlize Lombard - 2020 - Biology and Philosophy 35 (4):1-23.
    Many animal species use tools, but human technical engagement is more complex. We argue that there is coevolution between technical engagement and advanced forms of causal cognition in the human lineage. As an analytic tool, we present a classification of different forms of causal thinking. Human causal thinking has become detached from space and time, so that instead of just reacting to perceptual input, our minds can simulate actions and forces and their causal consequences. Our main thesis is that, unlike (...)
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  15.  35
    Relations between the logic of theory change and nonmonotonic logic.David Makinson & Peter Gärdenfors - 1991 - In André Fuhrmann & Michael Morreau (eds.), The Logic of Theory Change. Springer. pp. 183--205.
    Examines the link between nonmonotonic inference relations and theory revision operations, focusing on the correspondence between abstract properties which each may satisfy.
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  16.  68
    Epistemic importance and minimal changes of belief.Peter Gärdenfors - 1984 - Australasian Journal of Philosophy 62 (2):136 – 157.
  17.  37
    Knowledge in Flux: Modeling the Dynamics of Epistemic States.Peter Menzies & Peter Gardenfors - 1994 - Philosophical Review 103 (1):159.
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  18.  58
    From Sensations to Concepts: a Proposal for Two Learning Processes.Peter Gärdenfors - 2019 - Review of Philosophy and Psychology 10 (3):441-464.
    This article presents two learning processes in order to explain how children at an early age can transform a complex sensory input to concepts and categories. The first process constructs the perceptual structures that emerge in children’s cognitive development by detecting invariants in the sensory input. The invariant structures involve a reduction in dimensionality of the sensory information. It is argued that this process generates the primary domains of space, objects and actions and that these domains can be represented as (...)
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  19. Analogy as a search procedure: A dimensional view.Matías Osta-Vélez & Peter Gärdenfors - 2022 - Journal of Experimental and Theoretical Artificial Intelligence 1.
    In this paper, we outline a comprehensive approach to composed analogies based on the theory of conceptual spaces. Our algorithmic model understands analogy as a search procedure and builds upon the idea that analogical similarity depends on a conceptual phenomena called ‘dimensional salience.’ We distinguish between category-based, property-based, event-based, and part-whole analogies, and propose computationally-oriented methods for explicating them in terms of conceptual spaces.
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  20.  28
    Conceptual Spaces: Elaborations and Applications.Peter Gärdenfors, Antti Hautamäki, Frank Zenker & Mauri Kaipainen (eds.) - 2019 - Cham, Switzerland: Springer Verlag.
    This edited book focuses on concepts and their applications using the theory of conceptual spaces, one of today’s most central tracks of cognitive science discourse. It features 15 papers based on topics presented at the Conceptual Spaces @ Work 2016 conference. The contributors interweave both theory and applications in their papers. Among the first mentioned are studies on metatheories, logical and systemic implications of the theory, as well as relations between concepts and language. Examples of the latter include explanatory models (...)
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  21.  68
    Relevance and redundancy in deductive explanations.Peter Gärdenfors - 1976 - Philosophy of Science 43 (3):420-431.
  22. Co–operation and communication in apes and humans.Ingar Brinck & Peter Gardenfors - 2003 - Mind and Language 18 (5):484–501.
    We trace the difference between the ways in which apes and humans co–operate to differences in communicative abilities, claiming that the pressure for future–directed co–operation was a major force behind the evolution of language. Competitive co–operation concerns goals that are present in the environment and have stable values. It relies on either signalling or joint attention. Future–directed co–operation concerns new goals that lack fixed values. It requires symbolic communication and context–independent representations of means and goals. We analyse these ways of (...)
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  23. The Dynamics of Belief Systems: Foundations vs. Coherence Theories.Peter GÄrdenfors - 1990 - Revue Internationale de Philosophie 44 (172):24.
     
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  24.  19
    Demonstration and Pantomime in the Evolution of Teaching.Peter Gärdenfors - 2017 - Frontiers in Psychology 8.
  25.  24
    Unreliable probabilities, risk taking and decision making.Peter Gärdenfors & Nils-Eric Sahlin - 1988 - In Peter Gärdenfors & Nils-Eric Sahlin (eds.), Decision, Probability and Utility. Cambridge University Press. pp. 313-334.
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  26.  20
    Conceptual spaces and the strength of similarity-based arguments.Igor Douven, Shira Elqayam, Peter Gärdenfors & Patricia Mirabile - 2022 - Cognition 218 (C):104951.
  27.  45
    An Epistemic Approach to Conditionals.Peter Gärdenfors - 1981 - American Philosophical Quarterly 18 (3):203 - 211.
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  28.  49
    Using conceptual spaces to model the dynamics of empirical theories.Peter Gärdenfors & Frank Zenker - 2011 - In Erik J. Olson Sebastian Enqvist (ed.), Belief Revision Meets Philosophy of Science. Springer. pp. 137--153.
  29.  57
    Qualitative probability as an intensional logic.Peter Gärdenfors - 1975 - Journal of Philosophical Logic 4 (2):171 - 185.
  30.  65
    A pragmatic approach to explanations.Peter Gärdenfors - 1980 - Philosophy of Science 47 (3):404-423.
    It is argued that it is not sufficient to consider only the sentences included in the explanans and explanandum when determining whether they constitute an explanation, but these sentences must always be evaluated relative to a knowledge situation. The central criterion on an explanation is that the explanans in a non-trivial way increases the belief value of the explanandum, where the belief value of a sentence is determined from the given knowledge situation. The outlined theory of explanations is applied to (...)
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  31.  23
    Causal Cognition, Force Dynamics and Early Hunting Technologies.Peter Gärdenfors & Marlize Lombard - 2018 - Frontiers in Psychology 9.
  32.  47
    From Actions to Effects: Three Constraints on Event Mappings.Peter Gärdenfors, Jürgen Jost & Massimo Warglien - 2018 - Frontiers in Psychology 9.
  33. Semantics, conceptual spaces, and the meeting of minds.Massimo Warglien & Peter Gärdenfors - 2013 - Synthese 190 (12):2165-2193.
    We present an account of semantics that is not construed as a mapping of language to the world but rather as a mapping between individual meaning spaces. The meanings of linguistic entities are established via a “meeting of minds.” The concepts in the minds of communicating individuals are modeled as convex regions in conceptual spaces. We outline a mathematical framework, based on fixpoints in continuous mappings between conceptual spaces, that can be used to model such a semantics. If concepts are (...)
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  34.  99
    Rights, games and social choice.Peter Gardenfors - 1981 - Noûs 15 (3):341-356.
  35. A representation theorem for voting with logical consequences.Peter Gärdenfors - 2006 - Economics and Philosophy 22 (2):181-190.
    This paper concerns voting with logical consequences, which means that anybody voting for an alternative x should vote for the logical consequences of x as well. Similarly, the social choice set is also supposed to be closed under logical consequences. The central result of the paper is that, given a set of fairly natural conditions, the only social choice functions that satisfy social logical closure are oligarchic (where a subset of the voters are decisive for the social choice). The set (...)
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  36.  22
    Events and Causal Mappings Modeled in Conceptual Spaces.Peter Gärdenfors - 2020 - Frontiers in Psychology 11.
  37.  17
    Nonmonotonic Reasoning, Expectations Orderings, and Conceptual Spaces.Matías Osta-Vélez & Peter Gärdenfors - 2021 - Journal of Logic, Language and Information 31 (1):77-97.
    In Gärdenfors and Makinson :197–245, 1994) and Gärdenfors it was shown that it is possible to model nonmonotonic inference using a classical consequence relation plus an expectation-based ordering of formulas. In this article, we argue that this framework can be significantly enriched by adopting a conceptual spaces-based analysis of the role of expectations in reasoning. In particular, we show that this can solve various epistemological issues that surround nonmonotonic and default logics. We propose some formal criteria for constructing and updating (...)
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  38.  54
    Locative and Directional Prepositions in Conceptual Spaces: The Role of Polar Convexity.Joost Zwarts & Peter Gärdenfors - 2016 - Journal of Logic, Language and Information 25 (1):109-138.
    We approach the semantics of prepositions from the perspective of conceptual spaces. Focusing on purely spatial locative and directional prepositions, we analyze both types of prepositions in terms of polar coordinates instead of Cartesian coordinates. This makes it possible to demonstrate that the property of convexity holds quite generally in the domain of prepositions of location and direction, supporting the important role that this property plays in conceptual spaces.
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  39. Conceptual spaces as a framework for knowledge representation.Peter Gardenfors - 2004 - Mind and Matter 2 (2):9-27.
    The dominating models of information processes have been based on symbolic representations of information and knowledge. During the last decades, a variety of non-symbolic models have been proposed as superior. The prime examples of models within the non-symbolic approach are neural networks. However, to a large extent they lack a higher-level theory of representation. In this paper, conceptual spaces are suggested as an appropriate framework for non- symbolic models. Conceptual spaces consist of a number of 'quality dimensions' that often are (...)
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  40.  94
    The dynamics of belief: Contractions and revisions of probability functions.Peter Gärdenfors - 1986 - Topoi 5 (1):29-37.
    Using probability functions defined over a simple language as models of states of belief, my goal in this article has been to analyse contractions and revisions of beliefs. My first strategy was to formulate postulates for these processes. Close parallels between the postulates for contractions and the postulates for revisions have been established - the results in Section 5 show that contractions and revisions are interchangeable. As a second strategy, some suggestions for more or less explicit constructive definitions of the (...)
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  41.  81
    Variations on the Ramsey test: More triviality results.Peter Gärdenfors - 1987 - Studia Logica 46 (4):319-325.
    The purpose of this note is to formulate some weaker versions of the so called Ramsey test that do not entail the following unacceptable consequenceIf A and C are already accepted in K, then if A, then C is also accepted in K. and to show that these versions still lead to the same triviality result when combined with a preservation criterion.
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  42.  62
    Communication, Rationality, and Conceptual Changes in Scientific Theories.Peter Gärdenfors & Frank Zenker - 2015 - In Peter Gärdenfors & Frank Zenker (eds.), Applications of Conceptual Spaces : the Case for Geometric Knowledge Representation. Cham: Springer Verlag.
    This article outlines how conceptual spaces theory applies to modeling changes of scientific frameworks when these are treated as spatial structures rather than as linguistic entities. The theory is briefly introduced and five types of changes are presented. It is then contrasted with Michael Friedman’s neo-Kantian account that seeks to render Kuhn’s “paradigm shift” as a communicatively rational historical event of conceptual development in the sciences. Like Friedman, we refer to the transition from Newtonian to relativistic mechanics as an example (...)
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  43. Mental Representation, Conceptual Spaces and Metaphors.Peter Gärdenfors - 1996 - Synthese 106 (1):21 - 47.
  44.  43
    Induction and knowledge-what.Peter Gärdenfors & Andreas Stephens - 2017 - European Journal for Philosophy of Science 8 (3):1-21.
    Within analytic philosophy, induction has been seen as a problem concerning inferences that have been analysed as relations between sentences. In this article, we argue that induction does not primarily concern relations between sentences, but between properties and categories. We outline a new approach to induction that is based on two theses. The first thesis is epistemological. We submit that there is not only knowledge-how and knowledge-that, but also knowledge-what. Knowledge-what concerns relations between properties and categories and we argue that (...)
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  45.  35
    Induction and knowledge-what.Peter Gärdenfors & Andreas Stephens - 2017 - European Journal for Philosophy of Science 8 (3):471-491.
    Within analytic philosophy, induction has been seen as a problem concerning inferences that have been analysed as relations between sentences. In this article, we argue that induction does not primarily concern relations between sentences, but between properties and categories. We outline a new approach to induction that is based on two theses. The first thesis is epistemological. We submit that there is not only knowledge-how and knowledge-that, but also knowledge-what. Knowledge-what concerns relations between properties and categories and we argue that (...)
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  46.  58
    Modeling Diachronic Changes in Structuralism and in Conceptual Spaces.Frank Zenker & Peter Gärdenfors - 2014 - Erkenntnis 79 (S8):1-15.
    Our aim in this article is to show how the theory of conceptual spaces can be useful in describing diachronic changes to conceptual frameworks, and thus useful in understanding conceptual change in the empirical sciences. We also compare the conceptual space approach to Moulines’s typology of intertheoretical relations in the structuralist tradition. Unlike structuralist reconstructions, those based on conceptual spaces yield a natural way of modeling the changes of a conceptual framework, including noncumulative changes, by tracing the changes to the (...)
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  47.  15
    Generalized Quantifiers.Peter Gärdenfors (ed.) - 1987 - Reidel Publishing Company.
    Some fifteen years ago, research on generalized quantifiers was con sidered to be a branch of mathematical logic, mainly carried out by mathematicians. Since then an increasing number of linguists and philosophers have become interested in exploring the relevance of general quantifiers for natural language as shown by the bibliography compiled for this volume. To a large extent, the new research has been inspired by Jon Barwise and Robin Cooper's path-breaking article "Generalized Quantifiers and Natural Language" from 1981. A concrete (...)
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  48.  63
    Spaces in the Brain: From Neurons to Meanings.Christian Balkenius & Peter Gärdenfors - 2016 - Frontiers in Psychology 7.
    Spaces in the brain can refer either to psychological spaces, which are derived from similarity judgments, or to neurocognitive spaces, which are based on the activities of neural structures. We want to show how psychological spaces naturally emerge from the underlying neural spaces by dimension reductions that preserve similarity structures and the relevant categorizations. Some neuronal representational formats that may generate the psychological spaces are presented, compared and discussed in relation to the mathematical principles of monotonicity, continuity and convexity. In (...)
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  49.  42
    Forecasts, decisions and uncertain probabilities.Peter Gärdenfors - 1979 - Erkenntnis 14 (2):159 - 181.
    In the traditional decision theories the role of forecasts is to a large extent swept under the carpet. I believe that a recognition of the connections between forecasts and decisions will be of benefit both for decision theory and for the art of forecasting.In this paper I have tried to analyse which factors, apart from the utilities of the outcomes of the decision alternatives, determine the value of a decision. I have outlined two answers to the question why a decision (...)
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  50.  57
    On the logic of relevance.Peter Gärdenfors - 1978 - Synthese 37 (3):351 - 367.
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