Results for 'Analog representation'

968 found
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  1. 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 (...)
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  2.  68
    Analog representations and their users.Matthew Katz - 2016 - Synthese 193 (3):851-871.
    Characterizing different kinds of representation is of fundamental importance to cognitive science, and one traditional way of doing so is in terms of the analog–digital distinction. Indeed the distinction is often appealed to in ways both narrow and broad. In this paper I argue that the analog–digital distinction does not apply to representational schemes but only to representational systems, where a representational system is constituted by a representational scheme and its user, and that whether a representational system (...)
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  3. Analogue Computation and Representation.Corey J. Maley - 2023 - British Journal for the Philosophy of Science 74 (3):739-769.
    Relative to digital computation, analogue computation has been neglected in the philosophical literature. To the extent that attention has been paid to analogue computation, it has been misunderstood. The received view—that analogue computation has to do essentially with continuity—is simply wrong, as shown by careful attention to historical examples of discontinuous, discrete analogue computers. Instead of the received view, I develop an account of analogue computation in terms of a particular type of analogue representation that allows for discontinuity. This (...)
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  4. 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 (...)
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  5. Analog Representation Beyond Mental Imagery.James Blachowicz - 1997 - Journal of Philosophy 94 (2):55-84.
  6.  36
    Beyond format-specificity: Is analogue magnitude really the core abstract feature of the cultural number representation?Dénes Szűcs, Fruzsina Soltész & Usha Goswami - 2009 - Behavioral and Brain Sciences 32 (3-4):352-353.
    The issue of abstractness raises two distinct questions. First, is there a format-independent magnitude representation? Second, does analogue magnitude really play a crucial role in the development of human mathematics? We suggest that neither developmental nor cultural studies support this notion. The field needs to redefine the properties of the core number representation as used in human arithmetic.
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  7. Analog and digital representation.Matthew Katz - 2008 - Minds and Machines 18 (3):403-408.
    In this paper, I argue for three claims. The first is that the difference between analog and digital representation lies in the format and not the medium of representation. The second is that whether a given system is analog or digital will sometimes depend on facts about the user of that system. The third is that the first two claims are implicit in Haugeland's (1998) account of the distinction.
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  8. Analog Mental Representation.Jacob Beck - forthcoming - WIREs Cognitive Science.
    Over the past 50 years, philosophers and psychologists have perennially argued for the existence of analog mental representations of one type or another. This study critically reviews a number of these arguments as they pertain to three different types of mental representation: perceptual representations, imagery representations, and numerosity representations. Along the way, careful consideration is given to the meaning of “analog” presupposed by these arguments for analog mental representation, and to open avenues for future research.
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  9.  96
    Varieties of Analog and Digital Representation.Whit Schonbein - 2014 - Minds and Machines 24 (4):415-438.
    The ‘received view’ of the analog–digital distinction holds that analog representations are continuous while digital representations are discrete. In this paper I first provide support for the received view by showing how it (1) emerges from the theory of computation, and (2) explains engineering practices. Second, I critically assess several recently offered alternatives, arguing that to the degree they are justified they demonstrate not that the received view is incorrect, but rather that distinct senses of the terms have (...)
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  10. The effect of variations in analog representation on transfer between analogous stories.Ca Clement, Rw Mawby & De Giles - 1991 - Bulletin of the Psychonomic Society 29 (6):520-520.
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  11. Compositionality and constituent structure in the analogue mind.Sam Clarke - 2023 - Philosophical Perspectives 37 (1):90-118.
    I argue that analogue mental representations possess a canonical decomposition into privileged constituents from which they compose. I motivate this suggestion, and rebut arguments to the contrary, through reflection on the approximate number system, whose representations are widely expected to have an analogue format. I then argue that arguments for the compositionality and constituent structure of these analogue representations generalize to other analogue mental representations posited in the human mind, such as those in early vision and visual imagery.
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  12. Analog and digital, continuous and discrete.Corey J. Maley - 2011 - Philosophical Studies 155 (1):117-131.
    Representation is central to contemporary theorizing about the mind/brain. But the nature of representation--both in the mind/brain and more generally--is a source of ongoing controversy. One way of categorizing representational types is to distinguish between the analog and the digital: the received view is that analog representations vary smoothly, while digital representations vary in a step-wise manner. I argue that this characterization is inadequate to account for the ways in which representation is used in cognitive (...)
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  13.  11
    Analog-based modelling of meaning representations in English.Waldemar Skrzypczak - 2006 - Toruń: Nicolaus Copernicus University Press.
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  14.  28
    Do analog number representations underlie the meanings of young children’s verbal numerals?Susan Carey, Anna Shusterman, Paul Haward & Rebecca Distefano - 2017 - Cognition 168 (C):243-255.
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  15.  88
    Toward Analog Neural Computation.Corey J. Maley - 2018 - Minds and Machines 28 (1):77-91.
    Computationalism about the brain is the view that the brain literally performs computations. For the view to be interesting, we need an account of computation. The most well-developed account of computation is Turing Machine computation, the account provided by theoretical computer science which provides the basis for contemporary digital computers. Some have thought that, given the seemingly-close analogy between the all-or-nothing nature of neural spikes in brains and the binary nature of digital logic, neural computation could be a species of (...)
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  16. Epistemic Limitations and Precise Estimates in Analog Magnitude Representation.Justin Halberda - 2016 - In A. Baron & D. Barner (eds.), Core Knowledge and Conceptual Change. Oxford University Press. pp. 167-186.
    This chapter presents a re-understanding of the contents of our analog magnitude representations (e.g., approximate duration, distance, number). The approximate number system (ANS) is considered, which supports numerical representations that are widely described as fuzzy, noisy, and limited in their representational power. The contention is made that these characterizations are largely based on misunderstandings—that what has been called “noise” and “fuzziness” is actually an important epistemic signal of confidence in one’s estimate of the value. Rather than the ANS having (...)
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  17. An information-based treatment of punctuation in discourse representation theory.Bilge Say & Varol Akman - 1998 - In Carlos Martin-Vide (ed.), Mathematical and Computational Analysis of Natural Language: Selected papers from the 2nd International Conference on Mathematical Linguistics (ICML ’96), Tarragona, 1996. Amsterdam, The Netherlands: John Benjamins Publishing Company.
    Punctuation has so far attracted attention within the linguistics community mostly from a syntactic perspective. In this paper, we give a preliminary account of the information-based aspects of punctuation, drawing our points from assorted, naturally occurring sentences. We present our formal models of these sentences and the semantic contributions of punctuation marks. Our formalism is a simplified analogue of an extension --- due to Nicholas Asher --- of Discourse Representation Theory.
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  18. What is mental representation? And how does it relate to consciousness?Timothy L. Hubbard - 2007 - Journal of Consciousness Studies 14 (1):37-61.
    The relationship between mental representation and consciousness is considered. What it means to 'represent', and several types of representation (e.g., analogue, digital, spatial, linguistic, mathematical), are described. Concepts relevant to mental representation in general (e.g., multiple levels of processing, structure/process differences, mapping) and in specific domains (e.g., mental imagery, linguistic/propositional theories, production systems, connectionism, dynamics) are discussed. Similarities (e.g., using distinctions between different forms of representation to predict different forms of consciousness, parallels between digital architectures of (...)
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  19.  73
    Not all basic number representations are analog: Place coding as a precursor of the natural number system.Wim Fias & Tom Verguts - 2008 - Behavioral and Brain Sciences 31 (6):650-651.
    Rips et al.'s arguments for rejecting basic number representations as a precursor of the natural number system are exclusively based on analog number coding. We argue that these arguments do not apply to place coding, a type of basic number representation that is not considered by Rips et al.
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  20.  82
    Reasoning, rationality, and representation.Wade Munroe - 2020 - Synthese 198 (9):8323-8345.
    Recently, a cottage industry has formed with the goal of analyzing reasoning. The relevant notion of reasoning in which philosophers are expressly interested is fixed through an epistemic functional description: reasoning—whatever it is—is our personal-level, rationally evaluable means of meeting our rational requirements through managing and updating our attitudes. Roughly, the dominant view in the extant literature as developed by Paul Boghossian, John Broome, and others is that reasoning is a rule-governed operation over propositional attitudes that results in a change (...)
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  21.  11
    Computation without Representation: Nonsymbolic-Analog Processing.M. Gams - 1997 - In Matjaz Gams (ed.), Mind Versus Computer: Were Dreyfus and Winograd Right? Amsterdam: IOS Press. pp. 43--171.
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  22.  44
    The Typic in Kant’s "Critique of Practical Reason": Moral Judgment and Symbolic Representation.Adam Westra - 2016 - Boston: De Gruyter. Edited by Immanuel Kant.
    In the Typic chapter of the Critique of Practical Reason, Kant aims to enable moral judgment by means of the law of nature, which serves as the ‘type’, or formal analogue, of moral law. The present monograph is the first comprehensive study of this key text. It provides a detailed commentary on the Typic, situates it within Kant’s ethics and his theory of symbolic representation, and critically engages with the relevant secondary literature.
  23. How graphs mediate analog and symbolic representation.M. Gattis & K. J. Holyoak - 1994 - In Ashwin Ram & Kurt Eiselt (eds.), Proceedings of the Sixteenth Annual Conference of the Cognitive Science Society: August 13 to 16, 1994, Georgia Institute of Technology. Erlbaum.
     
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  24.  62
    Computing and modelling: Analog vs. Analogue.Philippos Papayannopoulos - 2020 - Studies in History and Philosophy of Science Part A 83:103-120.
    We examine the interrelationships between analog computational modelling and analogue (physical) modelling. To this end, we attempt a regimentation of the informal distinction between analog and digital, which turns on the consideration of computing in a broader context. We argue that in doing so one comes to see that (scientific) computation is better conceptualised as an epistemic process relative to agents, wherein representations play a key role. We distinguish between two, conceptually distinct, kinds of representation that, we (...)
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  25. Perception is Analog: The Argument from Weber's Law.Jacob Beck - 2019 - Journal of Philosophy 116 (6):319-349.
    In the 1980s, a number of philosophers argued that perception is analog. In the ensuing years, these arguments were forcefully criticized, leaving the thesis in doubt. This paper draws on Weber’s Law, a well-entrenched finding from psychophysics, to advance a new argument that perception is analog. This new argument is an adaptation of an argument that cognitive scientists have leveraged in support of the contention that primitive numerical representations are analog. But the argument here is extended to (...)
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  26. Analog simulation.Russell Trenholme - 1994 - Philosophy of Science 61 (1):115-131.
    The distinction between analog and digital representation is reexamined; it emerges that a more fundamental distinction is that between symbolic and analog simulation. Analog simulation is analyzed in terms of a (near) isomorphism of causal structures between a simulating and a simulated process. It is then argued that a core concept, naturalistic analog simulation, may play a role in a bottom-up theory of adaptive behavior which provides an alternative to representational analyses. The appendix discusses some (...)
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  27.  61
    Realism and Representation: The Case of Rembrandt's Hat.Michael Morris - 2015 - European Journal of Philosophy 23 (4):909-932.
    Some artistic representations—the painting of a hat in a famous picture by Rembrandt is an example—are able to present vividly the character of what they represent precisely by calling attention to their medium of representation. There is a puzzle about this whose structure, I argue, is analogous to that of a familiar Kantian problem for traditional realism. I offer a precise characterization of the puzzle, before arguing that an analogue for the case of representation to the Kantian solution (...)
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  28.  27
    Primitive recursive analogues of regular cardinals based on ordinal representation systems for KPi and KPM.Osamu Takaki - 2005 - Archive for Mathematical Logic 44 (6):689-709.
    In this paper, we develop primitive recursive analogues of regular cardinals by using ordinal representation systems for KPi and KPM. We also define primitive recursive analogues of inaccessible and hyperinaccessible cardinals. Moreover, we characterize the primitive recursive analogue of the least (uncountable) regular cardinal.
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  29.  38
    Object individuation by iconic content: How is numerosity represented in iconic representation?Athanasios Raftopoulos - 2020 - Rivista Internazionale di Filosofia e Psicologia 11 (1):42-70.
    : Fodor argues that perceptual representations are a subset of iconic representations, which are distinguished from symbolic/discursive representations. Iconic representations are nonconceptual and they do not support the abilities afforded by concepts. Iconic representations, for example, cannot support object individuation. If someone thinks that perception or some of its parts has imagistic NCC, they face the following dilemma. Either they will have to accept that this NCC does not allow for object individuation, but it represents instead conglomerations of properties and (...)
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  30. Brains as analog-model computers.Oron Shagrir - 2010 - Studies in History and Philosophy of Science Part A 41 (3):271-279.
    Computational neuroscientists not only employ computer models and simulations in studying brain functions. They also view the modeled nervous system itself as computing. What does it mean to say that the brain computes? And what is the utility of the ‘brain-as-computer’ assumption in studying brain functions? In previous work, I have argued that a structural conception of computation is not adequate to address these questions. Here I outline an alternative conception of computation, which I call the analog-model. The term (...)
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  31.  50
    An association between understanding cardinality and analog magnitude representations in preschoolers.Jennifer B. Wagner & Susan C. Johnson - 2011 - Cognition 119 (1):10-22.
  32.  70
    Intentionality Lite or Analog Content?: A Response to Hutto and Satne.Gerard O’Brien & Jon Opie - 2015 - Philosophia 43 (3):723-729.
    In their target article, Hutto and Satne eloquently articulate the failings of most current attempts to naturalize mental content. Furthermore, we think they are correct in their insistence that the only way forward is by drawing a distinction between two kinds of intentionality, one of which is considerably weaker than—and should be deployed to explain—the propositional variety most philosophers take for granted. The problem is that their own rendering of this weaker form of intentionality—contentless intentionality—is too weak. What’s needed is (...)
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  33. Development in the Estimation of Degree Measure: Integrating Analog and Discrete Representations.Jonathan Michael Vitale, John B. Black, Eric O. Carson & Chun-Hao Chang - 2010 - In S. Ohlsson & R. Catrambone (eds.), Proceedings of the 32nd Annual Conference of the Cognitive Science Society. Cognitive Science Society.
     
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  34.  47
    Representation of time.John Gibbon & Russell M. Church - 1990 - Cognition 37 (1-2):23-54.
    Memory representation for time was studied in two settings. First, an analysis of timing in a laboratory analog of a foraging situation revealed that departure times from a patchy resource followed a Weber Law-like property implied by scalar timing. A trial-by-trial analysis was then pursued in a similar but more structured experimental paradigm, the Peak procedure. Study of covariance structures in the data implicated scalar variance in the memory for time as well as in the decision process, but (...)
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  35. The physicality of representation.Corey J. Maley - 2021 - Synthese 199 (5-6):14725-14750.
    Representation is typically taken to be importantly separate from its physical implementation. This is exemplified in Marr’s three-level framework, widely cited and often adopted in neuroscience. However, the separation between representation and physical implementation is not a necessary feature of information-processing systems. In particular, when it comes to analog computational systems, Marr’s representational/algorithmic level and implementational level collapse into a single level. Insofar as analog computation is a better way of understanding neural computation than other notions, (...)
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  36. The Formats of Cognitive Representation: A Computational Account.Dimitri Coelho Mollo & Alfredo Vernazzani - 2023 - Philosophy of Science (3):682-701.
    Cognitive representations are typically analysed in terms of content, vehicle and format. While current work on formats appeals to intuitions about external representations, such as words and maps, in this paper we develop a computational view of formats that does not rely on intuitions. In our view, formats are individuated by the computational profiles of vehicles, i.e., the set of constraints that fix the computational transformations vehicles can undergo. The resulting picture is strongly pluralistic, it makes space for a variety (...)
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  37.  85
    Set representations required for the acquisition of the “natural number” concept.Justin Halberda & Lisa Feigenson - 2008 - Behavioral and Brain Sciences 31 (6):655-656.
    Rips et al. consider whether representations of individual objects or analog magnitudes are building blocks for the concept natural number. We argue for a third core capacity – the ability to bind representations of individuals into sets. However, even with this addition to the list of starting materials, we agree that a significant acquisition story is needed to capture natural number.
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  38.  72
    On representational content and format in core numerical cognition.Brian Ball - 2017 - Philosophical Psychology 30 (1-2):119-139.
    Carey has argued that there is a system of core numerical cognition – the analog magnitude system – in which cardinal numbers are explicitly represented in iconic format. While the existence of this system is beyond doubt, this paper aims to show that its representations cannot have the combination of features attributed to them by Carey. According to the argument from abstractness, the representation of the cardinal number of a collection of individuals as such requires the representation (...)
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  39. Expectation, Representation,and Enactivism.Jean-Charles Pelland - 2023 - Proceedings of the Annual Meeting of the Cognitive Science Society 45.
    This paper presents a challenge to enactivist approaches to cognition (e.g. Ward, D., Silverman, D. & Villalobos, M. 2017) that is based on the theoretical commitments behind forms of looking time studies that have been extensively used to probe into the cognitive abilities of infants and nonhuman animals. I briefly summarize the Violation of Expectation (VoE) paradigm (Ginnobili & Olmos 2021) to illustrate why such methods might pose a problem for enactivists and their conception of cognition as a largely (...)-free dynamic coupling between organism and environment. I argue that despite the lack of clarity regarding how the notion of expectation should be applied to the minds of neonates and nonhuman animals, there is an inherently representational aspect to expectation, given that it embodies satisfaction conditions. The challenge is, then: given that many forms of enactivism seem to reject the notion of representationas it is used in the VoE literature, how can enactivists make sense of data and results obtained using such research methods? (shrink)
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  40. Representation and a science of consciousness.Andrew R. Bailey - 2007 - Journal of Consciousness Studies 14 (1):62-76.
    The first part of this paper defends a 'two-factor' approach to mental representation by moving through various choice-points that map out the main peaks in the landscape of philosophical debate about representation. The choice-points considered are: (1) whether representations are conceptual or non-conceptual; (2) given that mental representation is conceptual, whether conscious perceptual representations are analog or digital; (3) given that the content of a representation is the concept it expresses, whether that content is individuated (...)
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  41. Analogue Magnitude Representations: A Philosophical Introduction.Jacob Beck - 2015 - British Journal for the Philosophy of Science 66 (4):829-855.
    Empirical discussions of mental representation appeal to a wide variety of representational kinds. Some of these kinds, such as the sentential representations underlying language use and the pictorial representations of visual imagery, are thoroughly familiar to philosophers. Others have received almost no philosophical attention at all. Included in this latter category are analogue magnitude representations, which enable a wide range of organisms to primitively represent spatial, temporal, numerical, and related magnitudes. This article aims to introduce analogue magnitude representations to (...)
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  42.  67
    The role of representation in computation.Gerard O'Brien & Jon Opie - 2009 - Cognitive Processing 10 (1):53-62.
    Reformers urge that representation no longer earns its explanatory keep in cognitive science, and that it is time to discard this troublesome concept. In contrast, we hold that without representation cognitive science is utterly bereft of tools for explaining natural intelligence. In order to defend the latter position, we focus on the explanatory role of representation in computation. We examine how the methods of digital and analog computation are used to model a relatively simple target system, (...)
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  43. Representation in digital systems.Vincent C. Müller - 2008 - In P. Brey, A. Briggle & K. Waelbers (eds.), Current Issues in Computing and Philosophy. IOS Press. pp. 116-121.
    Cognition is commonly taken to be computational manipulation of representations. These representations are assumed to be digital, but it is not usually specified what that means and what relevance it has for the theory. I propose a specification for being a digital state in a digital system, especially a digital computational system. The specification shows that identification of digital states requires functional directedness, either for someone or for the system of which it is a part. In the case or digital (...)
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  44. Discrete thoughts: Why cognition must use discrete representations.Eric Dietrich & Arthur B. Markman - 2003 - Mind and Language 18 (1):95-119.
    Advocates of dynamic systems have suggested that higher mental processes are based on continuous representations. In order to evaluate this claim, we first define the concept of representation, and rigorously distinguish between discrete representations and continuous representations. We also explore two important bases of representational content. Then, we present seven arguments that discrete representations are necessary for any system that must discriminate between two or more states. It follows that higher mental processes require discrete representations. We also argue that (...)
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  45. How Imagination Informs.Joshua Myers - 2025 - Philosophical Quarterly 75 (1):167-189.
    An influential objection to the epistemic power of the imagination holds that it is uninformative. You cannot get more out of the imagination than you put into it, and therefore learning from the imagination is impossible. This paper argues, against this view, that the imagination is robustly informative. Moreover, it defends a novel account of how the imagination informs, according to which the imagination is informative in virtue of its analog representational format. The core idea is that analog (...)
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  46.  79
    Symbolic, numeric, and magnitude representations in the parietal cortex.Miriam Rosenberg-Lee, Jessica M. Tsang, Vinod Menon, Roi Cohen Kadosh & Vincent Walsh - 2009 - Behavioral and Brain Sciences 32 (3-4):350.
    We concur with Cohen Kadosh & Walsh (CK&W) that representation of numbers in the parietal cortex is format dependent. In addition, we suggest that all formats do not automatically, and equally, access analog magnitude representation in the intraparietal sulcus (IPS). Understanding how development, learning, and context lead to differential access of analog magnitude representation is a key question for future research.
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  47.  51
    Perceptual awareness and categorical representation of faces: Evidence from masked priming.Vincent de Gardelle, Lucie Charles & Sid Kouider - 2011 - Consciousness and Cognition 20 (4):1272-1281.
    How internal categories influence how we perceive the world is a fundamental question in cognitive sciences. Yet, the relation between perceptual awareness and perceptual categorization has remained largely uncovered so far. Here, we addressed this question by focusing on face perception during subliminal and conscious perception. We used morphed continua between two face identities and we assessed, through a masked priming paradigm, the perceptual processing of these morphed faces under subliminal and supraliminal conditions. We found that priming from subliminal faces (...)
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  48.  54
    “Presentation” and “representation” of contents as principles of media convergence: A model of rhetorical narrativity of interactive multimedia design in mass communication with a case study of the digital edition of the New York Times.Fee-Alexandra Haase - 2019 - Semiotica 2019 (226):89-106.
    This article presents a model and a case study of the narrative structures that are present in the interactive media design of multimedia applications in the mass media. As basic categories for the history and structure of media, we employ the model of the modes of the physical, analog, and digital presentation/representation. In this case study of the online edition of the New York Times, we have the case of a newspaper that in the digital edition employs multi-media (...)
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  49.  22
    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 pour (...)
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  50.  75
    Determinability of Perception as Homogeneity of Representation.Víctor M. Verdejo - 2018 - Review of Philosophy and Psychology 9 (1):33-47.
    Recent philosophical and empirical contributions strongly suggest that perception attributes determinable properties to its objects. But a characterisation of determinability via attributed properties is restricted to the level of content and does not capture the difference between perceptual belief and perception on this score. In this paper, I propose a formal way of cashing out the difference between determinable belief and perception. On the view presented here, determinability in perception distinctively involves homogeneous representation or representation that exhibits special (...)
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