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Hyperproof: For Macintosh

Center for the Study of Language and Inf (1994)

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  1. The Iconic-Symbolic Spectrum.Gabriel Greenberg - 2023 - Philosophical Review 132 (4):579-627.
    It is common to distinguish two great families of representation. Symbolic representations include logical and mathematical symbols, words, and complex linguistic expressions. Iconic representations include dials, diagrams, maps, pictures, 3-dimensional models, and depictive gestures. This essay describes and motivates a new way of distinguishing iconic from symbolic representation. It locates the difference not in the signs themselves, nor in the contents they express, but in the semantic rules by which signs are associated with contents. The two kinds of rule have (...)
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  • Visualizando Signos.Priscila Farias & Joao Queiroz - 2017 - Sao Paulo: Blucher.
    Os signos e as classes dos signos estão entre os tópicos mais importantes do sistema filosófico de Charles S. Peirce. As 10, 28, e 66 classes de signos são classificações desenvolvidas especialmente a partir de 1903 e representam um grande refinamento da divisão fundamental de signos – ícone, índice, símbolo. Nossa abordagem aqui define uma estratégia de visualização das classificações dos signos, com especial atenção para as 10 e 66 classes de signos. O livro está dividido em duas partes: (i) (...)
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  • Diagrams.Sun-Joo Shin - 2008 - Stanford Encyclopedia of Philosophy.
  • A Cognitive Theory of Graphical and Linguistic Reasoning: Logic and Implementation.Keith Stenning & Jon Oberlander - 1995 - Cognitive Science 19 (1):97-140.
    We discuss external and internal graphical and linguistic representational systems. We argue that a cognitive theory of peoples' reasoning performance must account for (a) the logical equivalence of inferences expressed in graphical and linguistic form, and (b) the implementational differences that affect facility of inference. Our theory proposes that graphical representation limit abstraction and thereby aid “processibility”. We discuss the ideas of specificity and abstraction, and their cognitive relevance. Empirical support both comes from tasks which involve the manipulation of external (...)
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  • What Makes an Effective Representation of Information: A Formal Account of Observational Advantages.Gem Stapleton, Mateja Jamnik & Atsushi Shimojima - 2017 - Journal of Logic, Language and Information 26 (2):143-177.
    In order to effectively communicate information, the choice of representation is important. Ideally, a chosen representation will aid readers in making desired inferences. In this paper, we develop the theory of observation: what it means for one statement to be observable from another. Using observability, we give a formal characterization of the observational advantages of one representation of information over another. By considering observational advantages, people will be able to make better informed choices of representations of information. To demonstrate the (...)
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  • Advances in Experimental Philosophy of Logic and Mathematics: A. Aberdein and M. Inglis, editors, London: Bloomsbury Academic, 2019. 291 pp. $28.76. ISBN 978-1-3500-3902-5.Yuri Sato - 2021 - History and Philosophy of Logic 43 (3):305-307.
    This book is a collection of articles on research that attempts to connect logic and mathematics with empirical and cognition. There have been various such a...
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  • Unnatural language processing.J. Oberlander, P. Monaghan, R. Cox, K. Stenning & R. Tobin - 1999 - Journal of Logic, Language and Information 8 (3):363-384.
    Computer-based logic proofs are a form of unnatural language in which the process and structure of proof generation can be observed in considerable detail. We have been studying how students respond to multimodal logic teaching, and performance measures have already indicated that students' pre-existing cognitive styles have a significant impact on teaching outcome. Furthermore, a large corpus of proofs has been gathered via automatic logging of proof development. This paper applies a series of techniques, including corpus statistical methods, to the (...)
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  • Changing Philosophy Through Technology: Complexity and Computer-Supported Collaborative Argument Mapping.Michael H. G. Hoffmann - 2015 - Philosophy and Technology 28 (2):167-188.
    Technology is not only an object of philosophical reflection but also something that can change this reflection. This paper discusses the potential of computer-supported argument visualization tools for coping with the complexity of philosophical arguments. I will show, in particular, how the interactive and web-based argument mapping software “AGORA-net” can change the practice of philosophical reflection, communication, and collaboration. AGORA-net allows the graphical representation of complex argumentations in logical form and the synchronous and asynchronous collaboration on those “argument maps” on (...)
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  • What Are the Advantages of Hyperproof-like Reasoning Systems?Martin Frické - 1997 - British Journal for the Philosophy of Science 48 (3):397-410.
    Hyperproof is one of the first systems to permit and encourage reasoning across heterogeneous media. Its advocates argue that it has merits over and above the obvious pragmatic and cognitive ones. This paper suggests analysing Hyperproof-like systems in terms of languages interpreted over a common conceptual scheme and translation relations between logical expressions in such languages. This analysis shows that, despite initial appearances, Hyperproof has no real theoretical merits apart from its admittedly important pragmatic advantages.
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  • E-Science and the data deluge.David Casacuberta & Jordi Vallverdú - 2014 - Philosophical Psychology 27 (1):1-15.
    This paper attempts to show how the “big data” paradigm is changing science through offering access to millions of database elements in real time and the computational power to rapidly process those data in ways that are not initially obvious. In order to gain a proper understanding of these changes and their implications, we propose applying an extended cognition model to the novel scenario.
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  • Teoria pura da lógica.Frank Thomas Sautter - 2011 - Natureza Humana 13 (2):85-99.
  • In defense of logical minds.Selmer Bringsjord, E. Bringsjord & R. Noel - 1998 - In M. A. Gernsbacher & S. J. Derry (eds.), Proceedings of the 20th Annual Conference of the Cognitive Science Society. Lawerence Erlbaum. pp. 173--178.
  • A logical analysis of graphical consistency proofs.Atsushi Shimojima - 2002 - In L. Magnani, N. J. Nersessian & C. Pizzi (eds.), Logical and Computational Aspects of Model-Based Reasoning. Kluwer Academic Publishers. pp. 93--115.