Results for 'semantic system'

998 found
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  1.  4
    Semantic Systems After 30 Years.George Kampis - 2021 - In Judit Gervain, Gergely Csibra & Kristóf Kovács (eds.), A Life in Cognition: Studies in Cognitive Science in Honor of Csaba Pléh. Springer Verlag. pp. 209-217.
    Semantic systems are sytems with an inherent semantics. An example would be systems showing intrinsic intentionality: if a system is genuinely intentional, it must be able to define its own meanings. Searle was a forerunner of the modern idea of semantic systems in his oft-cited “Chinese Room” paper in 1980. The current author has approached the problem from a different angle 30 years ago in his book Self-Modifying Systems, claiming that minds can define their own meanings by (...)
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  2.  64
    On the Correspondence between Nested Calculi and Semantic Systems for Intuitionistic Logics.Tim Lyon - 2021 - Journal of Logic and Computation 31 (1):213-265.
    This paper studies the relationship between labelled and nested calculi for propositional intuitionistic logic, first-order intuitionistic logic with non-constant domains and first-order intuitionistic logic with constant domains. It is shown that Fitting’s nested calculi naturally arise from their corresponding labelled calculi—for each of the aforementioned logics—via the elimination of structural rules in labelled derivations. The translational correspondence between the two types of systems is leveraged to show that the nested calculi inherit proof-theoretic properties from their associated labelled calculi, such as (...)
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  3.  5
    Some Remarks on Semantic Systems.George D. W. Berry - 1954 - Journal of Symbolic Logic 19 (3):223-224.
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  4.  8
    Is there a semantic system for abstract words?Tim Shallice & Richard P. Cooper - 2013 - Frontiers in Human Neuroscience 7.
  5.  78
    On Deriving Nested Calculi for Intuitionistic Logics from Semantic Systems.Tim Lyon - 2013 - In Sergei Artemov & Anil Nerode (eds.), Logical Foundations of Computer Science (Lecture Notes in Computer Science 7734). Springer. pp. 177-194.
    This paper shows how to derive nested calculi from labelled calculi for propositional intuitionistic logic and first-order intuitionistic logic with constant domains, thus connecting the general results for labelled calculi with the more refined formalism of nested sequents. The extraction of nested calculi from labelled calculi obtains via considerations pertaining to the elimination of structural rules in labelled derivations. Each aspect of the extraction process is motivated and detailed, showing that each nested calculus inherits favorable proof-theoretic properties from its associated (...)
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  6.  8
    Validity, the Squeezing Argument and Alternative Semantic Systems: the Case of Aristotelian Syllogistic. [REVIEW]Catarina Dutilh Novaes & Edgar Andrade-Lotero - 2012 - Journal of Philosophical Logic 41 (2):387 - 418.
    We investigate the philosophical significance of the existence of different semantic systems with respect to which a given deductive system is sound and complete. Our case study will be Corcoran's deductive system D for Aristotelian syllogistic and some of the different semantic systems for syllogistic that have been proposed in the literature. We shall prove that they are not equivalent, in spite of D being sound and complete with respect to each of them. Beyond the specific (...)
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  7.  2
    Some remarks on semantic systems.B. L. Robbins - 1953 - Philosophical Studies 4 (2):24-28.
  8. A Semantics-Based Common Operational Command System for Multiagency Disaster Response.Linda Elmhadhbi, Mohamed-Hedi Karray, Bernard Archimède, J. Neil Otte & Barry Smith - 2022 - IEEE Transactions on Engineering Management 69 (6):3887 - 3901.
    Disaster response is a highly collaborative and critical process that requires the involvement of multiple emergency responders (ERs), ideally working together under a unified command, to enable a rapid and effective operational response. Following the 9/11 and 11/13 terrorist attacks and the devastation of hurricanes Katrina and Rita, it is apparent that inadequate communication and a lack of interoperability among the ERs engaged on-site can adversely affect disaster response efforts. Within this context, we present a scenario-based terrorism case study to (...)
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  9.  2
    On the conservative extensions of semantical systems: A contribution to the problem of analyticity.P. M. Williams - 1973 - Synthese 25 (3-4):398 - 416.
  10.  5
    Subformula semantics for strong negation systems.Seiki Akama - 1990 - Journal of Philosophical Logic 19 (2):217 - 226.
    We present a semantics for strong negation systems on the basis of the subformula property of the sequent calculus. The new models, called subformula models, are constructed as a special class of canonical Kripke models for providing the way from the cut-elimination theorem to model-theoretic results. This semantics is more intuitive than the standard Kripke semantics for strong negation systems.
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  11. Semantic tableau versions of some normal modal systems with propositional quantifiers.Daniel Rönnedal - 2019 - Organon F: Medzinárodný Časopis Pre Analytickú Filozofiu 47 (4):505–536.
    In Symbolic Logic (1932), C. I. Lewis developed five modal systems S1 − S5. S4 and S5 are so-called normal modal systems. Since Lewis and Langford’s pioneering work many other systems of this kind have been investigated, among them the 32 systems that can be generated by the five axioms T, D, B, 4 and 5. Lewis also discusses how his systems can be augmented by propositional quantifiers and how these augmented logics allow us to express some interesting ideas that (...)
     
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  12.  14
    Robbins B. L.. Some remarks on semantic systems. Philosophical studies, vol. 4 , pp. 24–28.George D. W. Berry - 1954 - Journal of Symbolic Logic 19 (3):223-224.
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  13.  11
    Repeating with the right hemisphere: reduced interactions between phonological and lexical-semantic systems in crossed aphasia?Irene De-Torres, Guadalupe Dávila, Marcelo L. Berthier, Seán Froudist Walsh, Ignacio Moreno-Torres & Rafael Ruiz-Cruces - 2013 - Frontiers in Human Neuroscience 7.
  14.  4
    Semantic uncertainty of the general theory of systems and problems of its interpretation and formalization.Andrei Armovich Gribkov - forthcoming - Philosophy and Culture (Russian Journal).
    The subject of research in this article is the question of the possibility of formalizing the general theory of systems, that is, turning it into a language for describing systems of any nature with unambiguously defined lexical units and rules. To answer this question, the author considers the phenomenon of semantic indeterminacy of languages, which ensures the flexibility of formed lexical constructions due to the multivalence of lexical units. Also the subject of the research is the practice of quoting (...)
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  15.  9
    Grounds of Semantic Normativity.Diego Marconi - 2022 - Philosophical Topics 50 (1):161-184.
    There are two prevalent accounts of semantic normativity: the prescriptive account, which can be found in some of Wittgenstein’s remarks, and the regularity account, which may have been Sellars’s view and is nowadays defended by some antinormativists. On the former account, meanings are norms that govern the use of words; on the latter, they are regularities of use which, in themselves, do not engender any prescriptions. I argue that only the prescriptive view can account for certain platitudes about meaning, (...)
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  16.  13
    Semantic Incompleteness of Hilbert system for a Combination of Classical and Intuitionistic Propositional Logic.Masanobu Toyooka & Katsuhiko Sano - 2023 - Australasian Journal of Logic 20 (3):397-411.
    This paper shows Hilbert system (C+J)-, given by del Cerro and Herzig (1996) is semantically incomplete. This system is proposed as a proof theory for Kripke semantics for a combination of intuitionistic and classical propositional logic, which is obtained by adding the natural semantic clause of classical implication into intuitionistic Kripke semantics. Although Hilbert system (C+J)- contains intuitionistic modus ponens as a rule, it does not contain classical modus ponens. This paper gives an argument ensuring that (...)
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  17.  3
    Comparing semantics of logics for multi-agent systems.Valentin Goranko & Wojciech Jamroga - 2004 - Synthese 139 (2):241 - 280.
    We draw parallels between several closely related logics that combine — in different proportions — elements of game theory, computation tree logics, and epistemic logics to reason about agents and their abilities. These are: the coalition game logics CL and ECL introduced by Pauly 2000, the alternating-time temporal logic ATL developed by Alur, Henzinger and Kupferman between 1997 and 2002, and the alternating-time temporal epistemic logic ATEL by van der Hoek and Wooldridge (2002). In particular, we establish some subsumption and (...)
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  18.  2
    Algebraic Semantics for Deductive Systems.W. Blok & J. Rebagliato - 2003 - Studia Logica 74 (1-2):153-180.
    The notion of an algebraic semantics of a deductive system was proposed in [3], and a preliminary study was begun. The focus of [3] was the definition and investigation of algebraizable deductive systems, i.e., the deductive systems that possess an equivalent algebraic semantics. The present paper explores the more general property of possessing an algebraic semantics. While a deductive system can have at most one equivalent algebraic semantics, it may have numerous different algebraic semantics. All of these give (...)
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  19.  19
    Denotational Semantics for Modal Systems S3–S5 Extended by Axioms for Propositional Quantifiers and Identity.Steffen Lewitzka - 2015 - Studia Logica 103 (3):507-544.
    There are logics where necessity is defined by means of a given identity connective: \ is a tautology). On the other hand, in many standard modal logics the concept of propositional identity \ can be defined by strict equivalence \}\). All these approaches to modality involve a principle that we call the Collapse Axiom : “There is only one necessary proposition.” In this paper, we consider a notion of PI which relies on the identity axioms of Suszko’s non-Fregean logic SCI. (...)
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  20.  13
    Semantic matching based legal information retrieval system for COVID-19 pandemic.Junlin Zhu, Jiaye Wu, Xudong Luo & Jie Liu - 2024 - Artificial Intelligence and Law 32 (2):397-426.
    Recently, the pandemic caused by COVID-19 is severe in the entire world. The prevention and control of crimes associated with COVID-19 are critical for controlling the pandemic. Therefore, to provide efficient and convenient intelligent legal knowledge services during the pandemic, we develop an intelligent system for legal information retrieval on the WeChat platform in this paper. The data source we used for training our system is “The typical cases of national procuratorial authorities handling crimes against the prevention and (...)
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  21.  2
    Semantics in an intelligent control system.A. Sloman - 1994 - Philosophical Transactions of the Royal Society: Physical Sciences and Engineering 349:43-58.
    Much research on intelligent systems has concentrated on low level mechanisms or sub-systems of restricted functionality. We need to understand how to put all the pieces together in an *architecture* for a complete agent with its own mind, driven by its own desires. A mind is a self-modifying control system, with a hierarchy of levels of control, and a different hierarchy of levels of implementation. AI needs to explore alternative control architectures and their implications for human, animal, and artificial (...)
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  22.  6
    Algebraic semantics for deductive systems.W. J. Blok & J. Rebagliato - 2003 - Studia Logica 74 (1-2):153 - 180.
    The notion of an algebraic semantics of a deductive system was proposed in [3], and a preliminary study was begun. The focus of [3] was the definition and investigation of algebraizable deductive systems, i.e., the deductive systems that possess an equivalent algebraic semantics. The present paper explores the more general property of possessing an algebraic semantics. While a deductive system can have at most one equivalent algebraic semantics, it may have numerous different algebraic semantics. All of these give (...)
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  23.  8
    Single-Assumption Systems in Proof-Theoretic Semantics.Leonardo Ceragioli - 2022 - Journal of Philosophical Logic 51 (5):1019-1054.
    Proof-theoretic semantics is an inferentialist theory of meaning, usually developed in a multiple-assumption and single-conclusion framework. In that framework, this theory seems unable to justify classical logic, so some authors have proposed a multiple-conclusion reformulation to accomplish this goal. In the first part of this paper, the debate originated by this proposal is briefly exposed and used to defend the diverging opinion that proof-theoretic semantics should always endorse a single-assumption and single-conclusion framework. In order to adopt this approach some of (...)
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  24.  17
    Relational semantics and a relational proof system for full Lambek calculus.Wendy MacCaull - 1998 - Journal of Symbolic Logic 63 (2):623-637.
    In this paper we give relational semantics and an accompanying relational proof theory for full Lambek calculus (a sequent calculus which we denote by FL). We start with the Kripke semantics for FL as discussed in [11] and develop a second Kripke-style semantics, RelKripke semantics, as a bridge to relational semantics. The RelKripke semantics consists of a set with two distinguished elements, two ternary relations and a list of conditions on the relations. It is accompanied by a Kripke-style valuation (...) analogous to that in [11]. Soundness and completeness theorems with respect to FL hold for RelKripke models. Then, in the spirit of the work of Orlowska [14], [15], and Buszkowski and Orlowska [3], we develop relational logic RFL. The adjective relational is used to emphasize the fact that RFL has a semantics wherein formulas are interpreted as relations. We prove that a sequent Γ → α in FL is provable if and only if a translation, t( $\gamma_1 \bullet \cdots \bullet \gamma_n \supset \alpha)\varepsilon \upsilon u$ , has a cut-complete fundamental proof tree. This result is constructive: that is, if a cut-complete proof tree for $t(\gamma_1 \bullet \cdots \bullet \gamma_n \supset \alpha)\varepsilon \upsilon u$ is not fundamental, we can use the failed proof search to build a relational countermodel for $t(\gamma_1 \bullet \cdots \bullet \gamma_n \supset \alpha)\varepsilon \upsilon u$ and from this, build a RelKripke countermodel for $\gamma_1 \bullet \cdots \bullet \gamma_n \supset \alpha$ . These results allow us to add FL, the basic substructural logic, to the list of those logies of importance in computer science with a relational proof theory. (shrink)
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  25.  4
    Proof Systems for Planning Under Cautious Semantics.Yuping Shen & Xishun Zhao - 2013 - Minds and Machines 23 (1):5-45.
    Planning with incomplete knowledge becomes a very active research area since late 1990s. Many logical formalisms introduce sensing actions and conditional plans to address the problem. The action language $\mathcal{A}_{K}$ invented by Son and Baral is a well-known framework for this purpose. In this paper, we propose so-called cautious and weakly cautious semantics for $\mathcal{A}_{K}$ , in order to allow an agent to generate and execute reliable plans in safety-critical environments. Intuitively speaking, cautious and weakly cautious semantics enable the agent (...)
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  26. Atomic Systems in Proof-Theoretic Semantics: Two Approaches.Peter Schroeder-Heister & Thomas Piecha - 2016 - In Ángel Nepomuceno Fernández, Olga Pombo Martins & Juan Redmond (eds.), Epistemology, Knowledge and the Impact of Interaction. Cham, Switzerland: Springer Verlag.
     
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  27.  8
    Weaver George. Logical consequence in modal logic: alternative semantic systems for normal modal logics. Truth, syntax and modality, Proceedings of the Temple University Conference on Alternative Semantics, edited by Leblanc Hugues, Studies in logic and the foundations of mathematics, vol. 68, North-Holland Publishing Company, Amsterdam and London 1973, pp. 308–317. [REVIEW]Melvin Fitting - 1977 - Journal of Symbolic Logic 42 (2):317-317.
  28.  2
    A semantic backward chaining proof system.Xumin Nie & David A. Plaisted - 1992 - Artificial Intelligence 55 (1):109-128.
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  29.  8
    Kripke semantics and proof systems for combining intuitionistic logic and classical logic.Chuck Liang & Dale Miller - 2013 - Annals of Pure and Applied Logic 164 (2):86-111.
    We combine intuitionistic logic and classical logic into a new, first-order logic called polarized intuitionistic logic. This logic is based on a distinction between two dual polarities which we call red and green to distinguish them from other forms of polarization. The meaning of these polarities is defined model-theoretically by a Kripke-style semantics for the logic. Two proof systems are also formulated. The first system extends Gentzenʼs intuitionistic sequent calculus LJ. In addition, this system also bears essential similarities (...)
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  30.  6
    Review: B. L. Robbins, Some Remarks on Semantic Systems. [REVIEW]George D. W. Berry - 1954 - Journal of Symbolic Logic 19 (3):223-224.
  31.  1
    Science and sanity: an introduction to non-Aristotelian systems and general semantics.Alfred Korzybski - 2023 - New York, New York, USA: Institute of General Semantics. Edited by Lance Strate.
    The fundamental, irreplaceable exposition of general semantics. In this work Korzybski developed important lines of formulating neglected by subsequent authors. A must-have for the student of general semantics interested in the original formulations of Alfred Korzybski. The sixth edition of Science and Sanity: An Introduction to Non-Aristotelian Systems and General Semantics includes a new preface by Lance Strate, President of the Institute of General Semantics.
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  32.  27
    Semantics for Two Second-Order Logical Systems: $\equiv$ RRC* and Cocchiarella's RRC.Max A. Freund - 1996 - Notre Dame Journal of Formal Logic 37 (3):483-505.
    We develop a set-theoretic semantics for Cocchiarella's second-order logical system . Such a semantics is a modification of the nonstandard sort of second-order semantics described, firstly, by Simms and later extended by Cocchiarella. We formulate a new second order logical system and prove its relative consistency. We call such a system and construct its set-theoretic semantics. Finally, we prove completeness theorems for proper normal extensions of the two systems with respect to certain notions of validity provided by (...)
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  33.  3
    The semantics of induction and the possibility of complete systems of inductive inference.B. Meltzer - 1970 - Artificial Intelligence 1 (3-4):189-192.
  34. Semantic information and the correctness theory of truth.Luciano Floridi - 2011 - Erkenntnis 74 (2):147-175.
    Semantic information is usually supposed to satisfy the veridicality thesis: p qualifies as semantic information only if p is true. However, what it means for semantic information to be true is often left implicit, with correspondentist interpretations representing the most popular, default option. The article develops an alternative approach, namely a correctness theory of truth (CTT) for semantic information. This is meant as a contribution not only to the philosophy of information but also to the philosophical (...)
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  35. Semantics without semantic content.Daniel W. Harris - 2020 - Mind and Language 37 (3):304-328.
    I argue that semantics is the study of the proprietary database of a centrally inaccessible and informationally encapsulated input–output system. This system’s role is to encode and decode partial and defeasible evidence of what speakers are saying. Since information about nonlinguistic context is therefore outside the purview of semantic processing, a sentence’s semantic value is not its content but a partial and defeasible constraint on what it can be used to say. I show how to translate (...)
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  36.  1
    Semantical study of some systems of vagueness logic.A. Arruda & E. Alves - 1979 - Bulletin of the Section of Logic 8 (3):139-144.
    In [1] we have characterized four types vagueness related to negation, and constructed the corresponding propositional calculi adequate to formalize each type of vagueness. The calculi obtained were named V0; V1; V2 and C1 . The relations among these calculi and the classical propositional calculus C0 can be represented in the following diagram, where the arrows indicate that a system is a proper subsystem of the other V0 V1 C0 V2 C1 6 1 PP PP PP PiP 1 PP (...)
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  37. Semantic Transparency in User Assistance Systems.Michael Kohlhase - unknown
    transparency as a user interface property that enables giving appropriate help. We explicate this notion in document player applications found in office suites, for example. Moreover, we show how semantic transparency can be strengthened when the underlying software is complemented by a semantic ally system. The approach consists in illustrating existing software semantically. We present some semantic extensions of office applications as examples. We also deaction task. scribe how the semantic transparency approach allows the..
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  38.  16
    Semantical analyses of propositional systems of Fitch and Nelson.Richard Routley - 1974 - Studia Logica 33 (3):283 - 298.
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  39.  16
    Semantics for contingent identity systems.Zane Parks - 1974 - Notre Dame Journal of Formal Logic 15 (2):333-334.
  40.  24
    Systems of substitutional semantics.Daniel Bonevac - 1984 - Philosophy of Science 51 (4):631-656.
    I investigate substitutional interpretations of quantifiers that count existential sentences true just in case they have true instances in a parametric extension of the language. I devise a semantics meeting four criteria: (1) it accounts adequately for natural language quantification; (2) it provides an account of justification in abstract sciences; (3) it constitutes a continuous semantics for natural and formal languages; and (4) it is purely substitutional, containing no appeal to referential interpretations. The prospects for a purely substitutional theory of (...)
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  41. A New Semantics for Systems of Logic of Essence.Alessandro Giordani - 2014 - Studia Logica 102 (3):411-440.
    The purpose of the present paper is to provide a way of understanding systems of logic of essence by introducing a new semantic framework for them. Three central results are achieved: first, the now standard Fitting semantics for the propositional logic of evidence is adapted in order to provide a new, simplified semantics for the propositional logic of essence; secondly, we show how it is possible to construe the concept of necessary truth explicitly by using the concept of essential (...)
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  42.  10
    Finite non-deterministic semantics for some modal systems.Marcelo E. Coniglio, Luis Fariñas del Cerro & Newton M. Peron - 2015 - Journal of Applied Non-Classical Logics 25 (1):20-45.
    Trying to overcome Dugundji’s result on uncharacterisability of modal logics by finite logical matrices, Kearns and Ivlev proposed, independently, a characterisation of some modal systems by means of four-valued multivalued truth-functions , as an alternative to Kripke semantics. This constitutes an antecedent of the non-deterministic matrices introduced by Avron and Lev . In this paper we propose a reconstruction of Kearns’s and Ivlev’s results in a uniform way, obtaining an extension to another modal systems. The first part of the paper (...)
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  43.  5
    Semantical analysis of Arruda da costap systems and adjacent non-replacement relevant systems.Richard Routley & Andréa Loparić - 1978 - Studia Logica 37 (4):301 - 320.
  44.  10
    Spatial Semantics, Cognition, and Their Interaction: A Comparative Study of Spatial Categorization in English and Korean.Hongoak Yun & Soonja Choi - 2018 - Cognitive Science 42 (6):1736-1776.
    This study has two goals. First, we present much‐needed empirical linguistic data and systematic analyses on the spatial semantic systems in English and Korean, two languages that have been extensively compared to date in the debate on spatial language and spatial cognition. We conduct our linguistic investigation comprehensively, encompassing the domains of tight‐ and loose‐fit as well as containment and support relations. The current analysis reveals both cross‐linguistic commonalities and differences: From a common set of spatial features, each language (...)
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  45.  6
    Open Information Systems Semantics for distributed artificial intelligence.Carl Hewitt - 1991 - Artificial Intelligence 47 (1-3):79-106.
  46.  7
    Quasi-canonical systems and their semantics.Arnon Avron - 2018 - Synthese 198 (S22):5353-5371.
    A canonical Gentzen-type system is a system in which every rule has the subformula property, it introduces exactly one occurrence of a connective, and it imposes no restrictions on the contexts of its applications. A larger class of Gentzen-type systems which is also extensively in use is that of quasi-canonical systems. In such systems a special role is given to a unary connective \ of the language. Accordingly, each application of a logical rule in such systems introduces either (...)
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  47.  1
    Semantic control systems.Cliff Joslyn - 1995 - World Futures 45 (1):87-123.
  48.  4
    Smolensky, semantics, and the sensorimotor system.George Lakoff - 1988 - Behavioral and Brain Sciences 11 (1):39-40.
  49.  12
    Simplicity and informativeness in semantic category systems.Jon W. Carr, Kenny Smith, Jennifer Culbertson & Simon Kirby - 2020 - Cognition 202 (C):104289.
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  50.  6
    Paraconsistency, paracompleteness, Gentzen systems, and trivalent semantics.Arnon Avron - 2014 - Journal of Applied Non-Classical Logics 24 (1-2):12-34.
    A quasi-canonical Gentzen-type system is a Gentzen-type system in which each logical rule introduces either a formula of the form , or of the form , and all the active formulas of its premises belong to the set . In this paper we investigate quasi-canonical systems in which exactly one of the two classical rules for negation is included, turning the induced logic into either a paraconsistent logic or a paracomplete logic, but not both. We provide a constructive (...)
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