Results for 'Cognition Phenomena'

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  1. Patterns in Cognitive Phenomena and Pluralism of Explanatory Styles.Angela Potochnik & Guilherme Sanches de Oliveira - 2019 - Topics in Cognitive Science 12 (4):1306-1320.
    Debate about cognitive science explanations has been formulated in terms of identifying the proper level(s) of explanation. Views range from reductionist, favoring only neuroscience explanations, to mechanist, favoring the integration of multiple levels, to pluralist, favoring the preservation of even the most general, high-level explanations, such as those provided by embodied or dynamical approaches. In this paper, we challenge this framing. We suggest that these are not different levels of explanation at all but, rather, different styles of explanation that capture (...)
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  2.  54
    Explaining Cognitive Phenomena with Internal Representations: A Mechanistic Perspective.Paweł Gładziejewski - 2015 - Studies in Logic, Grammar and Rhetoric 40 (1):63-90.
    Despite the fact that the notion of internal representation has - at least according to some - a fundamental role to play in the sciences of the mind, not only has its explanatory utility been under attack for a while now, but it also remains unclear what criteria should an explanation of a given cognitive phenomenon meet to count as a representational explanation in the first place. The aim of this article is to propose a solution to this latter problem. (...)
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  3.  1
    Don't SNARC me now! Intraindividual variability of cognitive phenomena – Insights from the Ironman paradigm.Lilly Roth, Verena Jordan, Stefania Schwarz, Klaus Willmes, Hans-Christoph Nuerk, Jean-Philippe van Dijck & Krzysztof Cipora - 2024 - Cognition 248 (C):105781.
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    Contextual categorization and cognitive phenomena.Charles Tijus - 2001 - In P. Bouquet V. Akman (ed.), Modeling and Using Context. Springer. pp. 316--329.
  5. Cognitive Penetrability and High‐Level Properties in Perception: Unrelated Phenomena?Berit Brogaard & Bartek Chomanski - 2015 - Pacific Philosophical Quarterly 96 (4):469-486.
    There has been a recent surge in interest in two questions concerning the nature of perceptual experience; viz. the question of whether perceptual experience is sometimes cognitively penetrated and that of whether high-level properties are presented in perceptual experience. Only rarely have thinkers been concerned with the question of whether the two phenomena are interestingly related. Here we argue that the two phenomena are not related in any interesting way. We argue further that this lack of an interesting (...)
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  6.  51
    Issues in computer modeling of cognitive phenomena: An artificial intelligence perspective.Jaime G. Carbonell - 1981 - Behavioral and Brain Sciences 4 (4):536-537.
  7. Phenomena and Objects of Research in the Cognitive and Behavioral Sciences.Uljana Feest - 2017 - Philosophy of Science 84 (5):1165-1176.
    It is commonly held that research efforts in the cognitive and behavioral sciences are mainly directed toward providing explanations and that phenomena figure into scientific practice qua explananda. I contend that these assumptions convey a skewed picture of the research practices in question and of the role played by phenomena. I argue that experimental research often aims at exploring and describing “objects of research” and that phenomena can figure as components of, and as evidence for, such objects. (...)
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  8.  10
    Embodied cognition and the imaging of bio-pathologies: the question of experiential primacy in detecting diagnostic phenomena.Mindaugas Briedis - 2024 - History and Philosophy of the Life Sciences 46 (1):1-29.
    This article investigates the origins of the experiences involved in the diagnostics (detection and normative evaluation) of biological entities in image-based medical praxis. Our specific research aim presupposes a vast discussion regarding the origins of knowledge in general, but is narrowed down to the alternatives of anthropomorphism and biomorphism. Accordingly, in the subsequent chapters we will make an attempt to investigate and illustrate what holds the diagnostic experiential situation together—biological regularities, manifestation via movement, conscious synthesis, causal categories, or something else. (...)
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  9. Basic principles, systems, and phenomena. Cognition and action.Wolfgang Prinz, Gisa Aschersleben & Iring Koch - 2008 - In Ezequiel Morsella, John A. Bargh & Peter M. Gollwitzer (eds.), Oxford handbook of human action. New York: Oxford University Press.
     
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  10. Cognitive approaches for explaining the phenomena of second language acquisition and second language use in communication.E. Alcon - 1997 - Communication and Cognition. Monographies 30 (1-2):7-28.
     
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  11. Cognition of life phenomena.Vladimir Aleksandrovič Èngel'gardt - 1989 - Moscow: Nauka Publishers. Edited by A. A. Baev.
  12.  32
    Limits to attention: A cognitive theory of island phenomena.Paul Deane - 1991 - Cognitive Linguistics 2 (1):1-64.
  13. Self-perception: An alternative interpretation of cognitive dissonance phenomena.Daryl J. Bem - 1967 - Psychological Review 74 (3):183-200.
  14.  6
    Are language–cognition interactions bigger than a breadbox? Integrative modeling and design space thinking temper simplistic questions about causally dense phenomena.Debra Titone, Esteban Hernández-Rivera, Antonio Iniesta, Anne L. Beatty-Martínez & Jason W. Gullifer - 2024 - Behavioral and Brain Sciences 47:e60.
    We affirm the utility of integrative modeling, according to which it is advantageous to move beyond “one-at-a-time binary paradigms” through studies that position themselves within realistic multidimensional design spaces. We extend the integrative modeling approach to a target domain with which we are familiar, the consequences of bilingualism on mind and brain, often referred to as the “bilingual advantage.” In doing so, we highlight work from our group consistent with integrative modeling.
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  15. Grounded Cognition: Past, Present, and Future.Lawrence W. Barsalou - 2010 - Topics in Cognitive Science 2 (4):716-724.
    Thirty years ago, grounded cognition had roots in philosophy, perception, cognitive linguistics, psycholinguistics, cognitive psychology, and cognitive neuropsychology. During the next 20 years, grounded cognition continued developing in these areas, and it also took new forms in robotics, cognitive ecology, cognitive neuroscience, and developmental psychology. In the past 10 years, research on grounded cognition has grown rapidly, especially in cognitive neuroscience, social neuroscience, cognitive psychology, social psychology, and developmental psychology. Currently, grounded cognition appears to be achieving (...)
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  16.  14
    Schizophrenia-related phenomena that challenge prediction error as the basis of cognitive functioning.Steven M. Silverstein - 2013 - Behavioral and Brain Sciences 36 (3):229-230.
  17.  12
    Substance and Cognition of Biological Phenomena.Piotr Lenartowicz - 1970 - Forum Philosophicum: International Journal for Philosophy 4 (1):55-68.
    Biologists are not used to the term „substance". They prefer to say „a living being", „an organism", a „specimen of species Homo sapiens'' - for instance. Chemists, on the other hand, when they say „this is a new substance" they usually mean the same Aristotle would mean - I think. The chemical meaning of the term „substance" is closest to the one I am going to discuss in this paper. To know a substance, one has to accumulate and store a (...)
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    Substance and Cognition of Biological Phenomena.Piotr Lenartowicz - 1970 - Forum Philosophicum: International Journal for Philosophy 4 (1):55-71.
    Biologists are not used to the term „substance". They prefer to say „a living being", „an organism", a „specimen of species Homo sapiens'' - for instance. Chemists, on the other hand, when they say „this is a new substance" they usually mean the same Aristotle would mean - I think. The chemical meaning of the term „substance" is closest to the one I am going to discuss in this paper. To know a substance, one has to accumulate and store a (...)
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  19.  32
    Rethinking Complexity and Culture: Cognitive Science as Explanatory Framework for Cultural Phenomena.Justin E. Lane - 2015 - Journal of Cognition and Culture 15 (5):435-441.
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  20. A Cognitive Theory of Consciousness.Bernard J. Baars - 1988 - New York: Cambridge University Press.
    Conscious experience is one of the most difficult and thorny problems in psychological science. Its study has been neglected for many years, either because it was thought to be too difficult, or because the relevant evidence was thought to be poor. Bernard Baars suggests a way to specify empirical constraints on a theory of consciousness by contrasting well-established conscious phenomena - such as stimulus representations known to be attended, perceptual, and informative - with closely comparable unconscious ones - such (...)
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  21. Phenomena and mechanisms: Putting the symbolic, connectionist, and dynamical systems debate in broader perspective.Adele A. Abrahamsen & William P. Bechtel - 2006 - In Robert J. Stainton (ed.), Contemporary Debates in Cognitive Science. Oxford: Wiley-Blackwell.
    Cognitive science is, more than anything else, a pursuit of cognitive mechanisms. To make headway towards a mechanistic account of any particular cognitive phenomenon, a researcher must choose among the many architectures available to guide and constrain the account. It is thus fitting that this volume on contemporary debates in cognitive science includes two issues of architecture, each articulated in the 1980s but still unresolved: " • Just how modular is the mind? – a debate initially pitting encapsulated mechanisms against (...)
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  22.  42
    Cognition in Practice: Conceptual Development and Disagreement in Cognitive Science.Mikio Akagi - 2016 - Dissertation, University of Pittsburgh
    Cognitive science has been beset for thirty years by foundational disputes about the nature and extension of cognition—e.g. whether cognition is necessarily representational, whether cognitive processes extend outside the brain or body, and whether plants or microbes have them. Whereas previous philosophical work aimed to settle these disputes, I aim to understand what conception of cognition scientists could share given that they disagree so fundamentally. To this end, I develop a number of variations on traditional conceptual explication, (...)
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  23.  22
    A computational theory of executive cognitive processes and multiple-task performance: Part 2. Accounts of psychological refractory-period phenomena.David E. Meyer & David E. Kieras - 1997 - Psychological Review 104 (4):749-791.
  24. Multistable phenomena: Changing views in perception.N. K. Logothetis D. A. Leopold - 1999 - Trends in Cognitive Sciences 3:254-264.
    Traditional explanations of multistable visual phenomena (e.g. ambiguous figures, perceptual rivalry) suggest that the basis for spontaneous reversals in perception lies in antagonistic connectivity within the visual system. In this review, we suggest an alternative, albeit speculative. explanation for visual multistability - that spontaneous alternations reflect responses to active, programmed events initiated by brain areas that integrate sensory and non-sensory information to coordinate a diversity of behaviors. Much evidence suggests that perceptual reversals are themselves more closely related to the (...)
     
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  25. Cognitive Ecology.Edwin Hutchins - 2010 - Topics in Cognitive Science 2 (4):705-715.
    Cognitive ecology is the study of cognitive phenomena in context. In particular, it points to the web of mutual dependence among the elements of a cognitive ecosystem. At least three fields were taking a deeply ecological approach to cognition 30 years ago: Gibson’s ecological psychology, Bateson’s ecology of mind, and Soviet cultural-historical activity theory. The ideas developed in those projects have now found a place in modern views of embodied, situated, distributed cognition. As cognitive theory continues to (...)
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  26.  99
    Classical and Quantum Mechanics on Information Spaces with Applications to Cognitive, Psychological, Social, and Anomalous Phenomena.Andrei Khrennivov - 1999 - Foundations of Physics 29 (7):1065-1098.
    We use the system of p-adic numbers for the description of information processes. Basic objects of our models are so-called transformers of information, basic processes are information processes and statistics are information statistics (thus we present a model of information reality). The classical and quantum mechanical formalisms on information p-adic spaces are developed. It seems that classical and quantum mechanical models on p-adic information spaces can be applied for the investigation of flows of information in cognitive and social systems, since (...)
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  27.  6
    Multidimensional assessment of Game Transfer Phenomena: Intrusive cognitions, perceptual distortions, hallucinations and dissociations.Angelica B. Ortiz de Gortari & Åge Diseth - 2022 - Frontiers in Psychology 13.
    Game Transfer Phenomena refers to a cluster of involuntary phenomena related to playing videogames, including sensory and cognitive intrusions, transient changes in perception and self-agency. The Game Transfer Phenomena Scale has been used to measure the frequency of GTP with respect to five factors. The present study aimed to validate an instrument for assessing the multiple dimensions of GTP that helps clarify the distinction between GTP experiences. GTP were contextualized onto the spectrum of intrusive cognitions, perceptual distortions, (...)
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  28.  23
    Primary error detection and minimization (PEDMIN) strategies in social cognition: A reinterpretation of confirmation bias phenomena.James Friedrich - 1993 - Psychological Review 100 (2):298-319.
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  29.  12
    Selectivity in associative learning: a cognitive stage framework for blocking and cue competition phenomena.Yannick Boddez, Kim Haesen, Frank Baeyens & Tom Beckers - 2014 - Frontiers in Psychology 5.
  30. Understanding phenomena: From social to collective?Federica Isabella Malfatti - 2022 - Philosophical Issues (1):253-267.
    In making sense of the world, we typically cooperate, join forces, and draw on one another’s competence and expertise. A group or community in which there is a well-functioning division of cognitive-epistemic labor can achieve levels of understanding that a single agent who relies exclusively on her own capacities would probably never achieve. However, is understanding also collective? I.e., is understanding something that can be possessed by a group or community rather than by individuals? In this paper, I develop an (...)
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    Social phenomena as a challenge to the scaling-up problem.Enrico Petracca - forthcoming - Phenomenology and the Cognitive Sciences:1-19.
    The “scaling-up” problem concerns radical embodied cognition’s (REC) supposed inability to extend its explanatory reach beyond simple cognitive phenomena. This paper questions the problem’s main assumption, that is, the possibility of sorting phenomena according to their inherent cognitive complexity or representation-hunger. To do so, I focus on a class of phenomena whose degree of representation-hunger has been much debated: social phenomena (and their cognitive correlates). Some, like Clark and Toribio (1994), consider social phenomena the (...)
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    The phenomena of inner experience.Christopher L. Heavey & Russell T. Hurlburt - 2008 - Consciousness and Cognition 17 (3):798-810.
    This study provides a survey of phenomena that present themselves during moments of naturally occurring inner experience. In our previous studies using Descriptive Experience Sampling we have discovered five frequently occurring phenomena—inner speech, inner seeing, unsymbolized thinking, feelings, and sensory awareness. Here we quantify the relative frequency of these phenomena. We used DES to describe 10 randomly identified moments of inner experience from each of 30 participants selected from a stratified sample of college students. We found that (...)
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  33. Embodied cognition.A. Wilson Robert & Foglia Lucia - 2011 - Stanford Encyclopedia of Philosophy.
    Cognition is embodied when it is deeply dependent upon features of the physical body of an agent, that is, when aspects of the agent's body beyond the brain play a significant causal or physically constitutive role in cognitive processing. In general, dominant views in the philosophy of mind and cognitive science have considered the body as peripheral to understanding the nature of mind and cognition. Proponents of embodied cognitive science view this as a serious mistake. Sometimes the nature (...)
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  34. Experimental phenomena of consciousness: a brief dictionary.T. Bakhman - 2007 - New York: Oxford University Press. Edited by Bruno G. Breitmeyer & Haluk Öğmen.
    Experimental Phenomena of Consciousness is the definitive collection of consciousness phenomena in which awareness emerges as an experimental variable. With its comprehensive yet succinct entries, arranged alphabetically, this dictionary will be a valuable reference tool for libraries and researchers at all levels in psychology, neuroscience, and philosophy, who are investigating consciousness, cognition, perception, and attention. It will also be an important addition to the reading lists of courses on consciousness and cognition. Most entries include illustrations and (...)
     
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  35.  11
    Quantum Models of Cognition and Decision.Jerome R. Busemeyer & Peter D. Bruza - 2012 - Cambridge University Press.
    Much of our understanding of human thinking is based on probabilistic models. This innovative book by Jerome R. Busemeyer and Peter D. Bruza argues that, actually, the underlying mathematical structures from quantum theory provide a much better account of human thinking than traditional models. They introduce the foundations for modelling probabilistic-dynamic systems using two aspects of quantum theory. The first, 'contextuality', is a way to understand interference effects found with inferences and decisions under conditions of uncertainty. The second, 'quantum entanglement', (...)
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  36. Multistable phenomena: Changing views in perception.David A. Leopold & Nikos K. Logothetis - 1999 - Trends in Cognitive Sciences 3 (7):254-264.
    Traditional explanations of multistable visual phenomena (e.g. ambiguous figures, perceptual rivalry) suggest that the basis for spontaneous reversals in perception lies in antagonistic connectivity within the visual system. In this review, we suggest an alternative, albeit speculative, explanation for visual multistability – that spontaneous alternations reflect responses to active, programmed events initiated by brain areas that integrate sensory and non-sensory information to coordinate a diversity of behaviors. Much evidence suggests that perceptual reversals are themselves more closely related to the (...)
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  37.  21
    Philosophy of Cognitive Neuroscience: Causal Explanations, Mechanisms and Experimental Manipulations.Lena Kästner - 2017 - Boston: De Gruyter.
    How do cognitive neuroscientists explain phenomena like memory or language processing? This book examines the different kinds of experiments and manipulative research strategies involved in understanding and eventually explaining such phenomena. Against this background, it evaluates contemporary accounts of scientific explanation, specifically the mechanistic and interventionist accounts, and finds them to be crucially incomplete. Besides, mechanisms and interventions cannot actually be combined in the way usually done in the literature. This book offers solutions to both these problems based (...)
  38. Cognitive Integration How Culture Transforms Us and Extends Our Cognitive Capabilities.Richard Menary - 2018 - In Albert Newen, Leon De Bruin & Shaun Gallagher (eds.), The Oxford Handbook of 4E Cognition. Oxford: Oxford University Press. pp. 187-215.
    Cognitive integration is a contribution to the embodied, embedded, and extended cognition movement in philosophy and cognitive science and the extended synthesis movement in evolutionary biology— particularly cultural evolution and niche construction. It is a framework for understanding and studying cognition and the mind that draws on several sources: empirical research in embodied cognition, arguments for extended cognition, distributed cognition, niche construction and cultural inheritance, developmental psychology, social learning, and cognitive neuroscience. Its uniqueness rests in (...)
     
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  39.  81
    Bayesian Cognitive Science, Monopoly, and Neglected Frameworks.Matteo Colombo & Stephan Hartmann - 2015 - British Journal for the Philosophy of Science 68 (2):451–484.
    A widely shared view in the cognitive sciences is that discovering and assessing explanations of cognitive phenomena whose production involves uncertainty should be done in a Bayesian framework. One assumption supporting this modelling choice is that Bayes provides the best approach for representing uncertainty. However, it is unclear that Bayes possesses special epistemic virtues over alternative modelling frameworks, since a systematic comparison has yet to be attempted. Currently, it is then premature to assert that cognitive phenomena involving uncertainty (...)
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  40. Cognition in the Wild.Edwin Hutchins - 1995 - MIT Press.
    Hutchins examines a set of phenomena that have fallen between the established disciplines of psychology and anthropology, bringing to light a new set of relationships between culture and cognition.
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  41.  28
    Viewpoint phenomena in multimodal communication.Barbara Dancygier & Lieven Vandelanotte - 2017 - Cognitive Linguistics 28 (3):371-380.
    Journal Name: Cognitive Linguistics Issue: Ahead of print.
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  42.  19
    GANEing traction: The broad applicability of NE hotspots to diverse cognitive and arousal phenomena.Mara Mather, David Clewett, Michiko Sakaki & Carolyn W. Harley - 2016 - Behavioral and Brain Sciences 39.
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  43.  23
    Chasing Phenomena. Studies on classification and conceptual change in the social and behavioral sciences.Samuli Pöyhönen - 2013 - Dissertation, University of Helsinki
    The articles comprising this dissertation concern classification and concept formation in the social and behavioral sciences. In particular, the emphasis in the study is on the philosophical analysis of interdisciplinary settings created by the recent intellectual developments on the interfaces between the social sciences, psychology, and neuroscience. The need for a systematic examination of the problems of conceptual coordination and integration across disciplinary boundaries is illustrated by focusing on phenomena whose satisfactory explanation requires drawing together the theoretical resources from (...)
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  44. Towards a cognitive robotics.Andy Clark & Rick Grush - 1999 - Adaptive Behavior 7 (1):5-16.
    There is a definite challenge in the air regarding the pivotal notion of internal representation. This challenge is explicit in, e.g., van Gelder, 1995; Beer, 1995; Thelen & Smith, 1994; Wheeler, 1994; and elsewhere. We think it is a challenge that can be met and that (importantly) can be met by arguing from within a general framework that accepts many of the basic premises of the work (in new robotics and in dynamical systems theory) that motivates such scepticism in the (...)
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  45. Is human cognition adaptive?John R. Anderson - 1991 - Behavioral and Brain Sciences 14 (3):471-485.
    Can the output of human cognition be predicted from the assumption that it is an optimal response to the information-processing demands of the environment? A methodology called rational analysis is described for deriving predictions about cognitive phenomena using optimization assumptions. The predictions flow from the statistical structure of the environment and not the assumed structure of the mind. Bayesian inference is used, assuming that people start with a weak prior model of the world which they integrate with experience (...)
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  46. Mechanisms in cognitive psychology: What are the operations?William Bechtel - 2008 - Philosophy of Science 75 (5):983-994.
    Cognitive psychologists, like biologists, frequently describe mechanisms when explaining phenomena. Unlike biologists, who can often trace material transformations to identify operations, psychologists face a more daunting task in identifying operations that transform information. Behavior provides little guidance as to the nature of the operations involved. While not itself revealing the operations, identification of brain areas involved in psychological mechanisms can help constrain attempts to characterize the operations. In current memory research, evidence that the same brain areas are involved in (...)
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  47. Cognition according to Quantum Information: Three Epistemological Puzzles Solved.Vasil Penchev - 2020 - Epistemology eJournal (Elsevier: SSRN) 13 (20):1-15.
    The cognition of quantum processes raises a series of questions about ordering and information connecting the states of one and the same system before and after measurement: Quantum measurement, quantum in-variance and the non-locality of quantum information are considered in the paper from an epistemological viewpoint. The adequate generalization of ‘measurement’ is discussed to involve the discrepancy, due to the fundamental Planck constant, between any quantum coherent state and its statistical representation as a statistical ensemble after measurement. Quantum in-variance (...)
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  48.  12
    Comments on Bem's "Self-perception: An alternative interpretation of cognitive dissonance phenomena.".Judson Mills - 1967 - Psychological Review 74 (6):535-535.
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  49. Animal Minds, Cognitive Ethology, and Ethics.Colin Allen & Marc Bekoff - 2007 - The Journal of Ethics 11 (3):299-317.
    Our goal in this paper is to provide enough of an account of the origins of cognitive ethology and the controversy surrounding it to help ethicists to gauge for themselves how to balance skepticism and credulity about animal minds when communicating with scientists. We believe that ethicists’ arguments would benefit from better understanding of the historical roots of ongoing controversies. It is not appropriate to treat some widely reported results in animal cognition as if their interpretations are a matter (...)
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  50.  42
    Cognition” and Dynamical Cognitive Science.Luis H. Favela & Jonathan Martin - 2017 - Minds and Machines 27 (2):331-355.
    Several philosophers have expressed concerns with some recent uses of the term ‘cognition’. Underlying a number of these concerns are claims that cognition is only located in the brain and that no compelling case has been made to use ‘cognition’ in any way other than as a cause of behavior that is representational in nature. These concerns center on two primary misapprehensions: First, that some adherents of dynamical cognitive science think DCS implies the thesis of extended (...) and the rejection of representation, and second, that cognition is mistakenly equated with behavior. We make three points in response to these claims: First, there is no thoroughly entrenched conception of cognition as distinct from behavior that is being illegitimately disregarded. Second, we present Shapiro’s exposition of dynamical systems theory as revealing a misunderstanding of the way that dynamical models are used in explanations of cognition and related phenomena. Accordingly, a proper conception of DCS’s methods facilitates an appreciation of extended cognition as a legitimate phenomenon of scientific investigation. Finally, we demonstrate that practicing cognitive scientists and psychologists are far more pluralistic in the phenomena they apply ‘cognition’ to than is suggested by some. At the heart of our disagreement with these concerned folks is that although we think it likely that some cognitive phenomena are representational, non-extended, and only in-between the ears, we also think there are good conceptual and empirical reasons to believe that many cognitive phenomena are non-representational, extended, and not confined to the brain. (shrink)
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