Results for 'Computational information'

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  1.  16
    Formalizing the Dynamics of Information.Martina Faller, Stefan C. Kaufmann, Marc Pauly & Center for the Study of Language and Information S.) - 2000 - Center for the Study of Language and Information Publications.
    The papers collected in this volume exemplify some of the trends in current approaches to logic, language and computation. Written by authors with varied academic backgrounds, the contributions are intended for an interdisciplinary audience. The first part of this volume addresses issues relevant for multi-agent systems: reasoning with incomplete information, reasoning about knowledge and beliefs, and reasoning about games. Proofs as formal objects form the subject of Part II. Topics covered include: contributions on logical frameworks, linear logic, and different (...)
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  2.  98
    Computation, Information, Cognition: The Nexus and the Liminal.f.Gordana Dodig Crnkovic & Susan Stuart (eds.) - 2007 - Cambridge Scholars Press.
    Written by world-leading experts, this book draws together a number of important strands in contemporary approaches to the philosophical and scientific questions that emerge when dealing with the issues of computing, information, cognition and the conceptual issues that arise at their intersections. It discovers and develops the connections at the borders and in the interstices of disciplines and debates. This volume presents a range of essays that deal with the currently vigorous concerns of the philosophy of information, ontology (...)
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  3.  57
    Computation, Information, and the Arrow of Time.Pieter Adriaans, Peter van Emde Boas & Fnwi Illc - 2011 - In S. B. Cooper & Andrea Sorbi (eds.), Computability in Context: Computation and Logic in the Real World. World Scientific.
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  4. Computation, Information, Meaning. Anticipation and Games.Mihai Nadin - 2011 - International Journal of Applied Research on Information Technology and Computing 2 (1).
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  5. Computers: information ethics and the foundation of computer ethics.Luciano Floridi - 2007 - In Jesper Ryberg, Thomas S. Petersen & Clark Wolf (eds.), New Waves in Applied Ethics. Palgrave-Macmillan.
  6. Computing, Information, Cognition.Barry Smith & Werner Ceusters - 2007 - Cambridge Scholars Press.
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  7.  6
    Uniform computer information transactions act.Paul Volken & Petar Sarcevic - 2009 - In Paul Volken & Petar Sarcevic (eds.), Yearbook of Private International Law: Volume Ii. Sellier de Gruyter.
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  8. Discussion on the Relationship between Computation, Information, Cognition, and Their Embodiment.Gordana Dodig-Crnkovic & Marcin Miłkowski - 2023 - Entropy 25 (2):310.
    Three special issues of Entropy journal have been dedicated to the topics of “InformationProcessing and Embodied, Embedded, Enactive Cognition”. They addressed morphological computing, cognitive agency, and the evolution of cognition. The contributions show the diversity of views present in the research community on the topic of computation and its relation to cognition. This paper is an attempt to elucidate current debates on computation that are central to cognitive science. It is written in the form of a dialog between two authors (...)
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  9.  33
    Computers, information and ethics: A review of issues and literature. [REVIEW]Dr Carl Mitcham - 1995 - Science and Engineering Ethics 1 (2):113-132.
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  10.  39
    Computers, information and ethics: A review of issues and literature. [REVIEW]Carl Mitcham - 1995 - Science and Engineering Ethics 1 (2):113-132.
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  11.  43
    Epistemology as Computation (Information Processing).Gordana Dodig-Crnkovic - 2007 - In Christian Calude (ed.), Randomness & Complexity, From Leibniz to Chaitin. World Scientific Pub Co.
    This essay presents arguments for the claim that in the best of all possible worlds (Leibniz) there are sources of unpredictability and creativity for us humans, even given a pancomputational stance. A suggested answer to Chaitin’s questions: “Where do new mathematical and biological ideas come from? How do they emerge?” is that they come from the world and emerge from basic physical (computational) laws. For humans as a tiny subset of the universe, a part of the new ideas comes (...)
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  12. Books etcetera-biophysics of computation: Information processing in single neurons.Alain Destexhe - 1999 - Trends in Cognitive Sciences 3 (11):443.
  13.  8
    Default extensions: dealing with computer information.M. Freund - 1997 - Artificial Intelligence 92 (1-2):277-288.
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  14.  30
    What Can We Know of Computational Information? Measuring, Quantity, and Quality at Work in Programmable Artifacts.Federico Gobbo & Marco Benini - 2016 - Topoi 35 (1):203-212.
    This paper explores the problem of knowledge in computational informational organisms, i.e. organisms that include a computing machinery at the artifact side. Although information can be understood in many ways, from the second half of the past century information is getting more and more digitised, von Neumann machines becoming dominant. Computational information is a challenge for the act of measuring, as neither purely quantitative nor totally qualitative approaches satisfy the need to explain the interplay among (...)
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  15. Information processing, computation, and cognition.Gualtiero Piccinini & Andrea Scarantino - 2011 - Journal of Biological Physics 37 (1):1-38.
    Computation and information processing are among the most fundamental notions in cognitive science. They are also among the most imprecisely discussed. Many cognitive scientists take it for granted that cognition involves computation, information processing, or both – although others disagree vehemently. Yet different cognitive scientists use ‘computation’ and ‘information processing’ to mean different things, sometimes without realizing that they do. In addition, computation and information processing are surrounded by several myths; first and foremost, that they are (...)
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  16. Computation vs. information processing: why their difference matters to cognitive science.Gualtiero Piccinini & Andrea Scarantino - 2010 - Studies in History and Philosophy of Science Part A 41 (3):237-246.
    Since the cognitive revolution, it has become commonplace that cognition involves both computation and information processing. Is this one claim or two? Is computation the same as information processing? The two terms are often used interchangeably, but this usage masks important differences. In this paper, we distinguish information processing from computation and examine some of their mutual relations, shedding light on the role each can play in a theory of cognition. We recommend that theorists of cognition be (...)
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  17.  18
    F. C. Hennie. One-tape, off-line Turing machine computations. Information and control, vol. 8 , pp. 553–578.Jiří Bečvář - 1968 - Journal of Symbolic Logic 33 (1):119-120.
  18.  26
    Quantum Computation and Quantum Information.Michael A. Nielsen & Isaac L. Chuang - 2000 - Cambridge University Press.
    First-ever comprehensive introduction to the major new subject of quantum computing and quantum information.
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  19. Information ethics: on the philosophical foundation of computer ethics.Luciano Floridi - 1999 - Ethics and Information Technology 1 (1):33–52.
    The essential difficulty about Computer Ethics' (CE) philosophical status is a methodological problem: standard ethical theories cannot easily be adapted to deal with CE-problems, which appear to strain their conceptual resources, and CE requires a conceptual foundation as an ethical theory. Information Ethics (IE), the philosophical foundational counterpart of CE, can be seen as a particular case of environmental ethics or ethics of the infosphere. What is good for an information entity and the infosphere in general? This is (...)
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  20. Susan Stuart & Gordana Dodig Crnkovic : 'Computation, Information, Cognition: The Nexus and the Liminal'. [REVIEW]Vincent C. Müller - 2009 - Cybernetics and Human Knowing 16 (3-4):201-203.
    Review of: "Computation, Information, Cognition: The Nexus and the Liminal", Ed. Susan Stuart & Gordana Dodig Crnkovic, Newcastle: Cambridge Scholars Publishing, September 2007, xxiv+340pp, ISBN: 9781847180902, Hardback: £39.99, $79.99 ---- Are you a computer? Is your cat a computer? A single biological cell in your stomach, perhaps? And your desk? You do not think so? Well, the authors of this book suggest that you think again. They propose a computational turn, a turn towards computational explanation and towards (...)
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  21. Information, Computation, Cognition. Agency-Based Hierarchies of Levels.Gordana Dodig-Crnkovic - 2016 - In Vincent C. Müller (ed.), Fundamental Issues of Artificial Intelligence. Cham: Springer. pp. 139-159.
    This paper connects information with computation and cognition via concept of agents that appear at variety of levels of organization of physical/chemical/cognitive systems – from elementary particles to atoms, molecules, life-like chemical systems, to cognitive systems starting with living cells, up to organisms and ecologies. In order to obtain this generalized framework, concepts of information, computation and cognition are generalized. In this framework, nature can be seen as informational structure with computational dynamics, where an (info-computational) agent (...)
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  22. Information-oriented computation with BABY-SIT.Erkan Tin & Varol Akman - 1996 - In Jerry Seligman & Dag Westerståhl (eds.), Logic, Language and Computation, Volume 1. Stanford, CA: Center for the Study of Language and Information Publications. pp. 19-34.
    While situation theory and situation semantics provide an appropriate framework for a realistic model-theoretic treatment of natural language, serious thinking on their 'computational' aspects has only recently started. Existing proposals mainly offer a Prolog- or Lisp-like programming environment with varying degrees of divergence from the ontology of situation theory. In this paper, we introduce a computational medium (called BABY-SIT) based on situations. The primary motivation underlying BABY-SIT is to facilitate the development and testing of programs in domains ranging (...)
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  23. Computational Dynamics of Natural Information Morphology, Discretely Continuous.Gordana Dodig-Crnkovic - 2017 - Philosophies 2 (4):23.
    This paper presents a theoretical study of the binary oppositions underlying the mechanisms of natural computation understood as dynamical processes on natural information morphologies. Of special interest are the oppositions of discrete vs. continuous, structure vs. process, and differentiation vs. integration. The framework used is that of computing nature, where all natural processes at different levels of organisation are computations over informational structures. The interactions at different levels of granularity/organisation in nature, and the character of the phenomena that unfold (...)
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  24.  51
    Can Computational Goals Inform Theories of Vision?Barton L. Anderson - 2015 - Topics in Cognitive Science 7 (2):274-286.
    One of the most lasting contributions of Marr's posthumous book is his articulation of the different “levels of analysis” that are needed to understand vision. Although a variety of work has examined how these different levels are related, there is comparatively little examination of the assumptions on which his proposed levels rest, or the plausibility of the approach Marr articulated given those assumptions. Marr placed particular significance on computational level theory, which specifies the “goal” of a computation, its appropriateness (...)
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  25. Information theory, evolutionary computation, and Dembski’s “complex specified information”.Wesley Elsberry & Jeffrey Shallit - 2011 - Synthese 178 (2):237 - 270.
    Intelligent design advocate William Dembski has introduced a measure of information called "complex specified information", or CSI. He claims that CSI is a reliable marker of design by intelligent agents. He puts forth a "Law of Conservation of Information" which states that chance and natural laws are incapable of generating CSI. In particular, CSI cannot be generated by evolutionary computation. Dembski asserts that CSI is present in intelligent causes and in the flagellum of Escherichia coli, and concludes (...)
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  26. Information and computation: Essays on scientific and philosophical understanding of foundations of information and computation.Gordana Dodig Crnkovic & Mark Burgin (eds.) - 2011 - World Scientific.
    Information is a basic structure of the world, while computation is a process of the dynamic change of information. This book provides a cutting-edge view of world's leading authorities in fields where information and computation play a central role. It sketches the contours of the future landscape for the development of our understanding of information and computation, their mutual relationship and the role in cognition, informatics, biology, artificial intelligence, and information technology. -/- This book is (...)
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  27. Information, Causation and Computation.John Collier - unknown
    Causation can be understood as a computational process once we understand causation in informational terms. I argue that if we see processes as information channels, then causal processes are most readily interpreted as the transfer of information from one state to another. This directly implies that the later state is a computation from the earlier state, given causal laws, which can also be interpreted computationally. This approach unifies the ideas of causation and computation.
     
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  28.  22
    Balancing information-structure and semantic constraints on construction choice: building a computational model of passive and passive-like constructions in Mandarin Chinese.Ben Ambridge & Li Liu - 2021 - Cognitive Linguistics 32 (3):349-388.
    A central tenet of cognitive linguistics is that adults’ knowledge of language consists of a structured inventory of constructions, including various two-argument constructions such as the active, the passive and “fronting” constructions. But how do speakers choose which construction to use for a particular utterance, given constraints such as discourse/information structure and the semantic fit between verb and construction? The goal of the present study was to build a computational model of this phenomenon for two-argument constructions in Mandarin. (...)
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  29. Information ethics: on the philosophical foundation of computer ethics.Luciano Floridi - 2007 - In John Weckert (ed.), Computer Ethics. Routledge. pp. 63–82.
    The essential difficulty about Computer Ethics’ (CE) philosophical status is a methodological problem: standard ethical theories cannot easily be adapted to deal with CE-problems, which appear to strain their conceptual resources, and CE requires a conceptual foundation as an ethical theory. Information Ethics (IE), the philosophical foundational counterpart of CE, can be seen as a particular case of ‘environmental’ ethics or ethics of the infosphere. What is good for an information entity and the infosphere in general? This is (...)
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  30.  44
    Information and Computation Nets. Investigations Into Info-Computational World.Gordana Dodig-Crnkovic - 2009 - Vdm.
    The book presents investigations into the world of info-computational nature, in which information constitutes the structure, while computational process amounts to its change. Information and computation are inextricably bound: There is no computation without informational structure, and there is no information without computational process. Those two complementary ideas are used to build a conceptual net, which according to Novalis is a theoretical way of capturing reality. We apprehend the reality within a framework known as (...)
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  31. Information Processing as an Account of Concrete Digital Computation.Nir Fresco - 2013 - Philosophy and Technology 26 (1):31-60.
    It is common in cognitive science to equate computation (and in particular digital computation) with information processing. Yet, it is hard to find a comprehensive explicit account of concrete digital computation in information processing terms. An information processing account seems like a natural candidate to explain digital computation. But when ‘information’ comes under scrutiny, this account becomes a less obvious candidate. Four interpretations of information are examined here as the basis for an information processing (...)
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  32.  38
    Informational Equivalence but Computational Differences? Herbert Simon on Representations in Scientific Practice.David Waszek - 2024 - Minds and Machines 34 (1):93-116.
    To explain why, in scientific problem solving, a diagram can be “worth ten thousand words,” Jill Larkin and Herbert Simon (1987) relied on a computer model: two representations can be “informationally” equivalent but differ “computationally,” just as the same data can be encoded in a computer in multiple ways, more or less suited to different kinds of processing. The roots of this proposal lay in cognitive psychology, more precisely in the “imagery debate” of the 1970s on whether there are image-like (...)
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  33. Informed Consent in Computed Tomography: A Case for Standardization.Casey Rentmeester - 2019 - Radiologic Technology 90 (3):300-306.
    Informed consent has become the most obvious instantiation of patient autonomy in contemporary medicine, though as a practice it does not encompass all spheres of medicine. While diagnostic radiological procedures carry some risk due to the use of radiation, there is no standardized practice of informed consent in the United States. The authors describe the ethical justification of informed consent, the legal background surrounding it, and a brief history of radiology and radiological protection. They ultimately argue that informed consent should (...)
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  34.  21
    2. Information Processing Systems Which Embody Computational Rules: The Connectionist Approach.Glyn W. Humphreys - 1986 - Mind and Language 1 (3):201-12.
  35.  32
    Information theory, evolutionary computation, and Dembski’s “complex specified information”.Wesley Elsberry & Jeffrey Shallit - 2011 - Synthese 178 (2):237-270.
    Intelligent design advocate William Dembski has introduced a measure of information called “complex specified information”, or CSI. He claims that CSI is a reliable marker of design by intelligent agents. He puts forth a “Law of Conservation of Information” which states that chance and natural laws are incapable of generating CSI. In particular, CSI cannot be generated by evolutionary computation. Dembski asserts that CSI is present in intelligent causes and in the flagellum of Escherichia coli, and concludes (...)
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  36.  35
    Computing Nature–A Network of Networks of Concurrent Information Processes.Gordana Dodig-Crnkovic & Raffaela Giovagnoli - 2013 - In Gordana Dodig-Crnkovic Raffaela Giovagnoli (ed.), Computing Nature. pp. 1--22.
    This text presents the research field of natural/unconventional computing as it appears in the book COMPUTING NATURE. The articles discussed consist a selection of works from the Symposium on Natural Computing at AISB-IACAP (British Society for the Study of Artificial Intelligence and the Simulation of Behaviour and The International Association for Computing and Philosophy) World Congress 2012, held at the University of Birmingham, celebrating Turing centenary. The COMPUTING NATURE is about nature considered as the totality of physical existence, the universe. (...)
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  37.  55
    McCarthy J.. Towards a mathematical science of computation. Information processing 1962, Proceedings oflFIP Congress 62, organized by the International Federation for Information Processing, Munich, 27 August-1 September 1962, edited by Popplewell Cicely M., North-Holland Publishing Company, Amsterdam 1963, pp. 21–28.McCarthy John. Problems in the theory of computation. Information processing 1965, Proceedings of IFIP Congress 65, organized by the International Federation for Information Processing, New York City, May 24–29, 1965, Volume I, edited by Kalenich Wayne A., Spartan Books, Inc., Washington, D.C., and Macmillan and Co., Ltd., London, 1965, pp. 219–222. [REVIEW]Richard J. Orgass - 1971 - Journal of Symbolic Logic 36 (2):346-347.
  38.  38
    The substantive impact of computers on philosophy: Prolegomena to a computational and information-theoretic metaphysics.Randall R. Dipert - 2002 - In James Moor & Terrell Ward Bynum (eds.), Cyberphilosophy: the intersection of philosophy and computing. Malden, MA: Blackwell. pp. 146-157.
  39. Information, ethics, and computers. the problem of autonomous moral agent.C. B. Cartesin-Stahl - 2004 - Minds and Machines 14:67-83.
     
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  40.  34
    Intuition, Computation, and Information.Ken Herold - 2014 - Minds and Machines 24 (1):85-88.
    Bynum (Putting information first: Luciano Floridi and the philosophy of information. NY: Wiley-Blackwell, 2010) identifies Floridi’s focus in the philosophy of information (PI) on entities both as data structures and as information objects. One suggestion for examining the association between the former and the latter stems from Floridi’s Herbert A. Simon Lecture in Computing and Philosophy given at Carnegie Mellon University in 2001, open problems in the PI: the transduction or transception, and how we gain knowledge (...)
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  41.  11
    Computer science and information vision of the world from the standpoint of the principle of materialistic monism.Nikolai Andreevich Popov - 2022 - Философия И Культура 2:47-72.
    The subject of this study is the problem of the failure of attempts by the scientific community to come to a common understanding of what exactly information can be as something encoded into material structures and moved along with them. At the same time, the following aspects of this problem are considered in detail: what is the immediate cause of the information problem; what are the objective and subjective prerequisites for its appearance; why the unresolved nature of this (...)
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  42. Information-seeking, curiosity, and attention: computational and neural mechanisms.Jacqueline Gottlieb, Pierre-Yves Oudeyer, Manuel Lopes & Adrien Baranes - 2013 - Trends in Cognitive Sciences 17 (11):585-593.
  43.  35
    Investigations into Information Semantics and Ethics of Computing.Gordana Dodig-Crnkovic - 2005 - Dissertation, Mälardalen
    The recent development of the research field of Computing and Philosophy has triggered investigations into the theoretical foundations of computing and information. This thesis consists of two parts which are the result of studies in two areas of Philosophy of Computing and Philosophy of Information regarding the production of meaning and the value system with applications. The first part develops a unified dual-aspect theory of information and computation, in which information is characterized as structure, and computation (...)
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  44.  38
    Emergence, Computation and the Freedom Degree Loss Information Principle in Complex Systems.Ignazio Licata & Gianfranco Minati - 2017 - Foundations of Science 22 (4):863-881.
    We consider processes of emergence within the conceptual framework of the Information Loss principle and the concepts of systems conserving information; systems compressing information; and systems amplifying information. We deal with the supposed incompatibility between emergence and computability tout-court. We distinguish between computational emergence, when computation acquires properties, and emergent computation, when computation emerges as a property. The focus is on emergence processes occurring within computational processes. Violations of Turing-computability such as non-explicitness and incompleteness (...)
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  45.  32
    What information is necessary for speech categorization? Harnessing variability in the speech signal by integrating cues computed relative to expectations.Bob McMurray & Allard Jongman - 2011 - Psychological Review 118 (2):219-246.
  46.  40
    How Computational Tools Can Help Rhetoric and Informal Logic with Argument Invention.Douglas Walton & Thomas F. Gordon - 2019 - Argumentation 33 (2):269-295.
    This paper compares the features and methods of the two leading implemented systems that offer a tool for helping a user to find or invent arguments to support or attack a designated conclusion, the Carneades Argumentation System and the IBM Watson Debater tool. The central aim is to contribute to the understanding of scholars in informal logic, rhetoric and argumentation on how these two software systems can be useful for them. One contribution of the paper is to explain to these (...)
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  47. The Cambridge handbook of information and computer ethics.Luciano Floridi (ed.) - 2010 - Cambridge University Press.
    Information and Communication Technologies have profoundly changed many aspects of life, including the nature of entertainment, work, communication, education, healthcare, industrial production and business, social relations and conflicts. They have had a radical and widespread impact on our moral lives and hence on contemporary ethical debates. The Cambridge Handbook of Information and Computer Ethics, first published in 2010, provides an ambitious and authoritative introduction to the field, with discussions of a range of topics including privacy, ownership, freedom of (...)
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  48. Hybrid Information Technology Using Computational Intelligence-Security Intelligence: Web Contents Security System for Semantic Web.Nam-Deok Cho, Eun-ser Lee & Hyun-gun Park - 2006 - In O. Stock & M. Schaerf (eds.), Lecture Notes in Computer Science. Springer Verlag. pp. 4252--819.
     
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  49.  21
    Understanding Computer-based ?Informated? Environments.Niki Pantelli - 1994 - AI and Society 8 (4):326-340.
    The paper introduces the concept of Computer-based Informated Environments (CBIEs) to indicate an emergent form of work organisation facilitated by information technology. It first addresses the problem of inconsistent meanings of the informate concept in the literature, and it then focuses on those cases which, it is believed, show conditions of plausible informated environments. Finally, the paper looks at those factors that when found together contribute to building a CBIE. It makes reference to CBIEs as workplaces that comprise a (...)
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  50.  47
    All information processing entails computation, or, if R. A. Fisher had been a cognitive scientist . .Eric Dietrich & Arthur B. Markman - 1998 - Behavioral and Brain Sciences 21 (5):637-638.
    We argue that the dynamical and computational hypotheses are compatible and in fact need each other: they are about different aspects of cognition. However, only computationalism is about the information-processing aspect. We then argue that any form of information processing relying on matching and comparing, as cognition does, must use discrete representations and computations defined over them.
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