Results for 'Structure-preserving representation,'

989 found
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  1. Structure-preserving Representations, Constitution and the Relative A priori.Thomas Mormann - 2021 - Synthese 198 (Supplement 21):1-24.
    The aim of this paper is to show that a comprehensive account of the role of representations in science should reconsider some neglected theses of the classical philosophy of science proposed in the first decades of the 20th century. More precisely, it is argued that the accounts of Helmholtz and Hertz may be taken as prototypes of representational accounts in which structure preservation plays an essential role. Following Reichenbach, structure-preserving representations provide a useful device for formulating an (...)
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  2.  14
    From structure preserving representation to making worlds with symbols.In̄aki San Pedro - 2021 - Synthese 198 (21):5009-5013.
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  3.  23
    Representation in Biological Systems: Teleofunction, Etiology, and Structural Preservation.Michael Nair-Collins - 2013 - In Liz Swan (ed.), Origins of Mind. pp. 161--185.
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  4. Representation in biological systems : teleofunction, etiology, and structural preservation.Michael Nair-Collins - 2012 - In Liz Stillwaggon Swan (ed.), Origins of mind. Springer.
     
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  5.  67
    Sublexical modality and the structure of lexical semantic representations.Jean-Pierre Koenig & Anthony R. Davis - 2001 - Linguistics and Philosophy 24 (1):71-124.
    This paper argues for a largely unnoted distinction between relational and modal components in the lexical semantics of verbs. Wehypothesize that many verbs encode two kinds of semantic information:a relationship among participants in a situation and a subset ofcircumstances or time indices at which this relationship isevaluated. The latter we term sublexical modality.We show that linking regularities between semantic arguments andsyntactic functions provide corroborating evidence in favor of thissemantic distinction, noting cases in which the semantic groundingof linking through participant-role properties (...)
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  6. Analog Representation and the Parts Principle.John Kulvicki - 2015 - Review of Philosophy and Psychology 6 (1):165-180.
    Analog representation is often cast in terms of an engineering distinction between smooth and discrete systems. The engineering notion cuts across interesting representational categories, however, so it is poorly suited to thinking about kinds of representation. This paper suggests that analog representations support a pattern of interaction, specifically open-ended searches for content across levels of abstraction. They support the pattern by sharing a structure with what they represent. Continuous systems that satisfy the engineering notion are exemplars of this kind (...)
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  7.  15
    Further Correspondences and Similarities of Shamanism and Cognitive Science: Mental Representation, Implicit Processing, and Cognitive Structures.Timothy L. Hubbard - 2003 - Anthropology of Consciousness 14 (1):40-74.
    Properties of mental representation are related to findings in cognitive science and ideas in shamanism. A selective review of research in cognitive science suggests visual images and spatial memory preserve important functional information regarding physical principles and the behavior of objects in the natural world, and notions of second‐order isomorphism and the perceptual cycle developed to account for such findings are related to shamanic experience. Possible roles of implicit processes in shamanic cognition, and the idea that shamanic experience may involve (...)
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  8.  26
    Episodic representation: A mental models account.Nikola Andonovski - 2022 - Frontiers in Psychology 13:899371.
    This paper offers a modeling account of episodic representation. I argue that the episodic system constructsmental models: representations that preserve the spatiotemporal structure of represented domains. In prototypical cases, these domains are events: occurrences taken by subjects to have characteristic structures, dynamics and relatively determinate beginnings and ends. Due to their simplicity and manipulability, mental event models can be used in a variety of cognitive contexts: in remembering the personal past, but also in future-oriented and counterfactual imagination. As structural (...)
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  9.  58
    From representations in predictive processing to degrees of representational features.Danaja Rutar, Wanja Wiese & Johan Kwisthout - 2022 - Minds and Machines 32 (3):461-484.
    Whilst the topic of representations is one of the key topics in philosophy of mind, it has only occasionally been noted that representations and representational features may be gradual. Apart from vague allusions, little has been said on what representational gradation amounts to and why it could be explanatorily useful. The aim of this paper is to provide a novel take on gradation of representational features within the neuroscientific framework of predictive processing. More specifically, we provide a gradual account of (...)
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  10.  3
    Narrative Representation Theory: Identifying the human language with superstructure.Hirokuni Masuda - 2017 - Discourse Studies 19 (6):648-672.
    Narrative Representation Theory, an evolved framework of Verse Analysis, has come into existence with the mission of explaining the operation of macro-systemic structure that could be hardwired in the brain. Based on the analyses of creoles or archetypal human languages, the theory puts forward the premise stating that the fundamental design of the human language faculty possesses the computational system for internalized discourse. The theory preserves the principles of Quint-patterning, Idea-formatting, N-ary-branching and X-numbering, complying respectively with the hierarchical orderings (...)
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  11.  52
    How Do Mental Processes Preserve Truth? Husserl’s Discovery of the Computational Theory of Mind.Jesse Daniel Lopes - 2020 - Husserl Studies 36 (1):25-45.
    Hubert Dreyfus once noted that it would be difficult to ascertain whether Edmund Husserl had a computational theory of mind. I provide evidence that he had one. Both Steven Pinker and Steven Horst think that the computational theory of mind must have two components: a representational-symbolic component and a causal component. Bearing this in mind, we proceed to a close-reading of the sections of “On the Logic of Signs” wherein Husserl presents, if I’m correct, his computational theory of mind embedded (...)
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  12. The Nature and Implementation of Representation in Biological Systems.Mike Collins - 2009 - Dissertation, City University of New York
    I defend a theory of mental representation that satisfies naturalistic constraints. Briefly, we begin by distinguishing (i) what makes something a representation from (ii) given that a thing is a representation, what determines what it represents. Representations are states of biological organisms, so we should expect a unified theoretical framework for explaining both what it is to be a representation as well as what it is to be a heart or a kidney. I follow Millikan in explaining (i) in terms (...)
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  13.  9
    Semisupervised Community Preserving Network Embedding with Pairwise Constraints.Dong Liu, Yan Ru, Qinpeng Li, Shibin Wang & Jianwei Niu - 2020 - Complexity 2020:1-14.
    Network embedding aims to learn the low-dimensional representations of nodes in networks. It preserves the structure and internal attributes of the networks while representing nodes as low-dimensional dense real-valued vectors. These vectors are used as inputs of machine learning algorithms for network analysis tasks such as node clustering, classification, link prediction, and network visualization. The network embedding algorithms, which considered the community structure, impose a higher level of constraint on the similarity of nodes, and they make the learned (...)
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  14. Belief Structures and Sequences: Relevance-Sensitive, Inconsistency-Tolerant Models for Belief Revision.Samir Chopra - 2000 - Dissertation, City University of New York
    This thesis proposes and presents two new models for belief representation and belief revision. The first model is the B-structures model which relies on a notion of partial language splitting and tolerates some amount of inconsistency while retaining classical logic. The model preserves an agent's ability to answer queries in a coherent way using Belnap's four-valued logic. Axioms analogous to the AGM axioms hold for this new model. The distinction between implicit and explicit beliefs is represented and psychologically plausible, computationally (...)
     
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  15.  35
    Biologically Plausible, Human‐Scale Knowledge Representation.Eric Crawford, Matthew Gingerich & Chris Eliasmith - 2016 - Cognitive Science 40 (4):782-821.
    Several approaches to implementing symbol-like representations in neurally plausible models have been proposed. These approaches include binding through synchrony, “mesh” binding, and conjunctive binding. Recent theoretical work has suggested that most of these methods will not scale well, that is, that they cannot encode structured representations using any of the tens of thousands of terms in the adult lexicon without making implausible resource assumptions. Here, we empirically demonstrate that the biologically plausible structured representations employed in the Semantic Pointer Architecture approach (...)
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  16.  41
    A sheaf representation and duality for finitely presented Heyting algebras.Silvio Ghilardi & Marek Zawadowski - 1995 - Journal of Symbolic Logic 60 (3):911-939.
    A. M. Pitts in [Pi] proved that HA op fp is a bi-Heyting category satisfying the Lawrence condition. We show that the embedding $\Phi: HA^\mathrm{op}_\mathrm{fp} \longrightarrow Sh(\mathbf{P_0,J_0})$ into the topos of sheaves, (P 0 is the category of finite rooted posets and open maps, J 0 the canonical topology on P 0 ) given by $H \longmapsto HA(H,\mathscr{D}(-)): \mathbf{P_0} \longrightarrow \text{Set}$ preserves the structure mentioned above, finite coproducts, and subobject classifier, it is also conservative. This whole structure on (...)
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  17.  76
    The logical structure of linguistic commitment III Brandomian scorekeeping and incompatibility.Mark Lance - 2001 - Journal of Philosophical Logic 30 (5):439-464.
    Curiously, though he provides in Making It Explicit (MIE) elaborate accounts of various representational idioms, of anaphora and deixis, and of quantification, Robert Brandom nowhere attempts to lay out how his understanding of content and his view of the role of logical idioms combine in even the simplest cases of what he calls paradigmatic logical vocabulary. That is, Brandom has a philosophical account of content as updating potential - as inferential potential understood in the sense of commitment or entitlement preservation (...)
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  18.  29
    Metamorphosed Characters in Dreams: Constraints of Conceptual Structure and Amount of Theory of Mind.Richard Schweickert & Zhuangzhuang Xi - 2010 - Cognitive Science 34 (4):665-684.
    Dream reports from 21 dreamers in which a metamorphosis of a person-like entity or animal occurred were coded for characters and animals and for inner states attributed to them (Theory of Mind). In myths and fairy tales, Kelly and Keil (1985) found that conscious beings (people, gods) tend to be transformed into entities nearby in the conceptual structure of Keil (1979). This also occurred in dream reports, but perceptual nearness seemed more important than conceptual nearness. In dream reports, most (...)
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  19.  49
    Relativistic hadronic mechanics: Nonunitary, axiom-preserving completion of relativistic quantum mechanics.Ruggero Maria Santilli - 1997 - Foundations of Physics 27 (5):625-729.
    The most majestic scientific achievement, of this century in mathematical beauty, axiomatic consistency, and experimental verifications has been special relativity with its unitary structure at the operator level, and canonical structure at the classical levels, which has turned out to be exactly valid for point particles moving in the homogenenous and isotropic vacuum (exterior dynamical problems). In recent decades a number of authors have studied nonunitary and noncanonical theories, here generally calleddeformations for the representation of broader conditions, such (...)
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  20.  33
    Hermann Weyls Analysis of the Problem of Space and the Origin of Gauge Structures.Erhard Scholz - 2004 - Science in Context 17 (1-2):165-197.
    Hermann Weyl was one of the early contributors to the mathematics of general relativity. This article argues that in 1929, for the formulation of a general relativistic framework of the Dirac equation, he both abolished and preserved in modified form the conceptual perspective that he had developed earlier in his “analysis of the problem of space.” The ideas of infinitesimal congruence from the early 1920s were aufgehoben in the general relativistic framework for the Dirac equation. He preserved the central idea (...)
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  21. Evidence for preserved representations in change blindness.Daniel J. Simons, Christopher Chabris & Tatiana Schnur - 2002 - Consciousness and Cognition 11 (1):78-97.
    People often fail to detect large changes to scenes, provided that the changes occur during a visual disruption. This phenomenon, known as ''change blindness,'' occurs both in the laboratory and in real-world situations in which changes occur unexpectedly. The pervasiveness of the inability to detect changes is consistent with the theoretical notion that we internally represent relatively little information from our visual world from one glance at a scene to the next. However, evidence for change blindness does not necessarily imply (...)
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  22.  16
    Structure and representation of semimodules over inclines.Ruiqi Bai & Yichuan Yang - 2020 - Annals of Pure and Applied Logic 171 (10):102844.
    An incline S is a commutative semiring where r+1=1 for any r \in S . We note that the ideal lattice of an S-semimodule is naturally an S-semimodule and so is its congruence lattice when S is transitive. We prove that the categories of complete S-semimodules, together with dual functor, internal hom and tensor product, is a ⋆-autonomous category. We define the locally and globally maximal congruences which are related to Birkhoff subdirect product decomposition. We show that the categories of (...)
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  23.  72
    Structuralist reduction concepts as structure-preserving maps.Thomas Mormann - 1988 - Synthese 77 (2):215 - 250.
    The aim of this paper is to characterize the various structuralist reduction concepts as structure-preserving maps in a succinct and unifying way. To begin with, some important intuitive adequacy conditions are discussed that a good (structuralist) reduction concept should satisfy. Having reconstructed these intuitive conditions in the structuralist framework, it turns out that they divide into two mutually incompatible sets of requirements. Accordingly there exist (at least) two essentially different types of structuralist reduction concepts: the first type stresses (...)
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  24.  44
    Users, Structures, and Representation.Mathias Frisch - 2015 - British Journal for the Philosophy of Science 66 (2):285-306.
    This article defends a pragmatic and structuralist account of scientific representation of the kind recently proposed by Bas van Fraassen against criticisms of both the structuralist and the pragmatist plank of the account. I argue that the account appears to have the unacceptable consequence that the domain of a theory is restricted to phenomena for which we actually have constructed a model—a worry arising from the account’s pragmatism, which is exacerbated by its structuralism. Yet, the account has the resources, at (...)
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  25. The function of structure preservation: Derived environments.Keren Rice - 1987 - In Joyce McDunough & Bernadette Plunkett (eds.), Proceedings of the North East Linguistic Society. pp. 17--501.
     
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  26.  17
    Mathematical Structures as Representations of Intellectual Structures.W. Baker - 1980 - Dialectica 34 (4):247-262.
    SummaryIn this paper we develop a general concept of a theory analogous to that of an empirical theory. It is shown that axioms can be regarded as rules for performing operations. Using this connection we give a definition of an intellectual structure, and it turns out that mathematical theories represent intellectual structures in a natural way.RésuméCet article développe un concept général de théorie analogue à celui de théorie empirique. II montre que les axiomes peuvent être considérés comme des régles (...)
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  27. Propositions, Structure and Representation.Thomas Hodgson - 2012 - Proceedings of the Aristotelian Society 112 (3pt3):339-349.
    Neo-Russellian theories of structured propositions face challenges to do with both representation and structure which are sometimes called the problem of unity and the Benacerraf problem. In §i, I set out the problems and Jeffrey King's solution, which I take to be the best of its type, as well as an unfortunate consequence for that solution. In §§ii–iii, I diagnose what is going wrong with this line of thought. If I am right, it follows that the Benacerraf problem cannot (...)
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  28. Implicit Bias: from social structure to representational format.Josefa Toribio - 2018 - Theoria : An International Journal for Theory, History and Fundations of Science 33 (1):41-60.
    In this paper, I argue against the view that the representational structure of the implicit attitudes responsible for implicitly biased behaviour is propositional—as opposed to associationist. The proposal under criticism moves from the claim that implicit biased behaviour can occasionally be modulated by logical and evidential considerations to the view that the structure of the implicit attitudes responsible for such biased behaviour is propositional. I argue, in particular, against the truth of this conditional. Sensitivity to logical and evidential (...)
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  29.  53
    Cognitive/affective processes, social interaction, and social structure as representational re-descriptions: their contrastive bandwidths and spatio-temporal foci.Aaron V. Cicourel - 2006 - Mind and Society 5 (1):39-70.
    Research on brain or cognitive/affective processes, culture, social interaction, and structural analysis are overlapping but often independent ways humans have attempted to understand the origins of their evolution, historical, and contemporary development. Each level seeks to employ its own theoretical concepts and methods for depicting human nature and categorizing objects and events in the world, and often relies on different sources of evidence to support theoretical claims. Each level makes reference to different temporal bandwidths (milliseconds, seconds, minutes, hours, days, months, (...)
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  30. Implicit Bias: From Social Structure to Representational Format.Josefa Toribio - 2018 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 33 (1):41-60.
    In this paper, I argue against the view that the representational structure of the implicit attitudes responsible for implicitly biased behaviour is propositional—as opposed to associationist. The proposal under criticism moves from the claim that implicit biased behaviour can occasionally be modulated by logical and evidential considerations to the view that the structure of the implicit attitudes responsible for such biased behaviour is propositional. I argue, in particular, against the truth of this conditional. Sensitivity to logical and evidential (...)
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  31.  7
    Conceptual Structures: Knowledge Representations as Interlingua: 4th International Conference on Conceptual Structures, Iccs'96, Sydney, Australia, August 19 - 22, 1996, Proceedings.Peter W. Eklund, Gerard Ellis & Graham Mann - 1996 - Springer Verlag.
    This volume constitutes the refereed proceedings of the Fourth International Conference on Conceptual Structures, ICCS '96, held in Sydney, Australia, in August 1996. The book presents five full papers by the invited speakers together with 15 revised full papers selected for presentation at the conference from a respectable number of submissions. The issues addressed are natural language processing, information retrieval, graph operations, conceptual graph and Peirce theory, knowledge acquisition, theorem proving and CG programming, and order-based organisation and encoding.
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  32. The Structure of Analog Representation.Andrew Y. Lee, Joshua Myers & Gabriel Oak Rabin - 2023 - Noûs 57 (1):209-237.
    This paper develops a theory of analog representation. We first argue that the mark of the analog is to be found in the nature of a representational system’s interpretation function, rather than in its vehicles or contents alone. We then develop the rulebound structure theory of analog representation, according to which analog systems are those that use interpretive rules to map syntactic structural features onto semantic structural features. The theory involves three degree-theoretic measures that capture three independent ways in (...)
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  33.  92
    On Internal Structure, Categorical Structure, and Representation.Neil Dewar - 2023 - Philosophy of Science 90 (1):188-195.
    If categorical equivalence is a good criterion of theoretical equivalence, then it would seem that if some class of mathematical structures is represented as a category, then any other class of structures categorically equivalent to it will have the same representational capacities. Hudetz (2019a) has presented an apparent counterexample to this claim; in this note, I argue that the counterexample fails.
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  34.  16
    A generic method for measuring the potential number of structurepreserving transformations.Yair Neuman, Yohai Cohen, Zvi Bekerman & Ophir Nave - 2013 - Complexity 18 (1):26-37.
  35.  11
    Evidence That Indirect Object Movement Is a Structure-Preserving Rule.Joseph Emonds - 1972 - Foundations of Language 8 (4):546-561.
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  36. Minisymposia-IV Substructuring, Dimension Reduction and Applications-Structure-Preserving Model Reduction.Ren-Cang Li & Zhaojun Bai - 2006 - In O. Stock & M. Schaerf (eds.), Lecture Notes in Computer Science. Springer Verlag. pp. 3732--323.
  37. Structural representations do not meet the job description challenge.Marco Facchin - 2021 - Synthese 199 (3-4):5479-5508.
    Structural representations are increasingly popular in philosophy of cognitive science. A key virtue they seemingly boast is that of meeting Ramsey's job description challenge. For this reason, structural representations appear tailored to play a clear representational role within cognitive architectures. Here, however, I claim that structural representations do not meet the job description challenge. This is because even our most demanding account of their functional profile is satisfied by at least some receptors, which paradigmatically fail the job description challenge. Hence, (...)
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  38.  7
    Probing the Representational Structure of Regular Polysemy via Sense Analogy Questions: Insights from Contextual Word Vectors.Jiangtian Li & Blair C. Armstrong - 2024 - Cognitive Science 48 (3):e13416.
    Regular polysemes are sets of ambiguous words that all share the same relationship between their meanings, such as CHICKEN and LOBSTER both referring to an animal or its meat. To probe how a distributional semantic model, here exemplified by bidirectional encoder representations from transformers (BERT), represents regular polysemy, we analyzed whether its embeddings support answering sense analogy questions similar to “is the mapping between CHICKEN (as an animal) and CHICKEN (as a meat) similar to that which maps between LOBSTER (as (...)
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  39. Open Form and the Shape of Ideas: Literary Structures as Representations of Philosophical Concepts in the Seventeenth and Eighteenth Centuries.Oscar Kenshur - 1991 - Diderot Studies 24:204-205.
     
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  40.  11
    The nature of concepts: evolution, structure, and representation.Philip R. Loockvane (ed.) - 1999 - New York: Routledge.
    The Nature of Concepts examines a central issue for all the main disciplines in cognitive science: how the human mind creates and passes on to other human minds a concept. An excellent cross-disciplinary collection with contributors including Steven Pinker, Andy Clarke and Henry Plotkin.
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  41.  12
    Web Ontologies to Categorialy Structure Reality: Representations of Human Emotional, Cognitive, and Motivational Processes.Juan-Miguel López-Gil, Rosa Gil & Roberto García - 2016 - Frontiers in Psychology 7.
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  42. Representation and Invariance of Scientific Structures.Patrick Suppes - 2002 - CSLI Publications (distributed by Chicago University Press).
    An early, very preliminary edition of this book was circulated in 1962 under the title Set-theoretical Structures in Science. There are many reasons for maintaining that such structures play a role in the philosophy of science. Perhaps the best is that they provide the right setting for investigating problems of representation and invariance in any systematic part of science, past or present. Examples are easy to cite. Sophisticated analysis of the nature of representation in perception is to be found already (...)
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  43.  95
    Representing the World with Inconsistent Mathematics.Colin McCullough-Benner - 2019 - British Journal for the Philosophy of Science 71 (4):1331-1358.
    According to standard accounts of mathematical representations of physical phenomena, positing structure-preserving mappings between a physical target system and the structure picked out by a mathematical theory is essential to such representations. In this paper, I argue that these accounts fail to give a satisfactory explanation of scientific representations that make use of inconsistent mathematical theories and present an alternative, robustly inferential account of mathematical representation that provides not just a better explanation of applications of inconsistent mathematics, (...)
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  44. The Structure of the World: Metaphysics and Representation.Steven French - 2014 - New York: Oxford University Press.
    Steven French articulates and defends the bold claim that there are no objects in the world. He draws on metaphysics and philosophy of science to argue for structural realism--the position that we live in a world of structures--and defends a form of eliminativism about objects that sets laws and symmetry principles at the heart of ontology.
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  45. Structural representation and surrogative reasoning.Chris Swoyer - 1991 - Synthese 87 (3):449 - 508.
    It is argued that a number of important, and seemingly disparate, types of representation are species of a single relation, here called structural representation, that can be described in detail and studied in a way that is of considerable philosophical interest. A structural representation depends on the existence of a common structure between a representation and that which it represents, and it is important because it allows us to reason directly about the representation in order to draw conclusions about (...)
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  46. Structural Representations and the Brain.Oron Shagrir - 2012 - British Journal for the Philosophy of Science 63 (3):519-545.
    In Representation Reconsidered , William Ramsey suggests that the notion of structural representation is posited by classical theories of cognition, but not by the ‘newer accounts’ (e.g. connectionist modeling). I challenge the assertion about the newer accounts. I argue that the newer accounts also posit structural representations; in fact, the notion plays a key theoretical role in the current computational approaches in cognitive neuroscience. The argument rests on a close examination of computational work on the oculomotor system.
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  47. Structural representations: causally relevant and different from detectors.Paweł Gładziejewski & Marcin Miłkowski - 2017 - Biology and Philosophy 32 (3):337-355.
    This paper centers around the notion that internal, mental representations are grounded in structural similarity, i.e., that they are so-called S-representations. We show how S-representations may be causally relevant and argue that they are distinct from mere detectors. First, using the neomechanist theory of explanation and the interventionist account of causal relevance, we provide a precise interpretation of the claim that in S-representations, structural similarity serves as a “fuel of success”, i.e., a relation that is exploitable for the representation using (...)
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  48.  49
    Argument structure: representation and theory.James B. Freeman - 2011 - New York: Springer.
    An approach to argument macrostructure -- The dialectical nature of argument -- Toulmin's problematic notion of warrant -- The linked-convergent distinction, a first approximation -- Argument structure and disciplinary perspective : the linked-convergent versus multiple-co-ordinatively compound distinctions -- The linked-convergent distinction, refining the criterion -- Argument structure and enthymemes -- From analysis to evaluation.
  49.  89
    Structural representation and the two problems of content.Jonny Lee - 2019 - Mind and Language 34 (5):606-626.
    A promising strategy for defending the role that representation plays in explanations of cognition frames the concept in terms of internal models or map‐like mechanisms. “Structural representation” offers an account of representation that is grounded in well‐specified, empirical criteria. However, anti‐representationalists continue to press the issue of how to account for the paradigmatic semantic properties of representation at the subpersonal level. In this paper, I offer an account of how the proponent of structural representation should think about content. There are (...)
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  50.  50
    Structural and indicator representations: a difference in degree, not kind.Gregory Nirshberg & Lawrence Shapiro - 2020 - Synthese 198 (8):7647-7664.
    Some philosophers have offered structural representations as an alternative to indicator-based representations. Motivating these philosophers is the belief that an indication-based analysis of representation exhibits two fatal inadequacies from which structural representations are spared: such an analysis cannot account for the causal role of representational content and cannot explain how representational content can be made determinate. In fact, we argue, indicator and structural representations are on a par with respect to these two problems. This should not be surprising, we contend, (...)
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