Results for ' combinatory logic'

973 found
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  1.  96
    Combinatory logic.Haskell Brooks Curry - 1958 - Amsterdam,: North-Holland Pub. Co..
    CHAPTER Addenda to Pure Combinatory Logic This chapter will treat various additions to, and modifications of, the subject matter of Chapters-7. ...
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  2.  21
    Combinatory Logic: Pure, Applied and Typed.Katalin Bimbó - 2011 - Taylor & Francis.
    Reader-friendly without compromising the precision of exposition, the book includes many new research results not found in the available literature.
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  3.  29
    Combinatory Logic.Haskell B. Curry, J. Roger Hindley & Jonathan P. Seldin - 1977 - Journal of Symbolic Logic 42 (1):109-110.
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  4.  37
    Combinatory Logic Vol. 1.Haskell Brooks Curry & Robert M. Feys - 1958 - Amsterdam, Netherlands: North-Holland Publishing Company.
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  5.  17
    Polytime, combinatory logic and positive safe induction.Cantini Andrea - 2002 - Archive for Mathematical Logic 41 (2):169-189.
    We characterize the polynomial time operations as those which are provably total in a first order system, which comprises (untyped) combinatory logic with extensionality, together with positive “safe induction” on the set of binary strings. The formalization of safe induction is inspired by Leivants idea of ramification. We also show how to replace ramification by means of modal logic.
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  6. Combinatory Logic, Volume I.Haskell B. Curry, Robert Feys & William Craig - 1959 - Philosophical Review 68 (4):548-550.
  7. Combinatory Logic.CURRY & FEYS - 1958
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  8.  99
    Combinatory logic.Katalin Bimbó - 2009 - Stanford Encyclopedia of Philosophy.
  9.  61
    An abstraction algorithm for combinatory logic.S. Kamal Abdali - 1976 - Journal of Symbolic Logic 41 (1):222-224.
  10.  55
    Introduction to combinatory logic.J. Roger Hindley - 1972 - Cambridge [Eng.]: University Press. Edited by B. Lercher & J. P. Seldin.
    Introduction Combinatory logic deals with a class of formal systems designed for studying certain primitive ways in which functions can be combined to form ...
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  11.  26
    Paraconsistent Combinatory Logic,„.M. W. Bunder - 1979 - Bulletin of the Section of Logic 8 (4):177-180.
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  12.  36
    Combinatory logic with discriminators.John T. Kearns - 1969 - Journal of Symbolic Logic 34 (4):561-575.
    In this paper, I present a modified and extended version of combinatory logic. Schönfinkel originated the study of combinatory logic (in [2]), but its development is primarily due to H. B. Curry. In the present paper, I will make use of both the symbolism (with some modification) and the results of Curry, as found in [1].What is novel about my version of combinatory logic is a kind of combinators which I call discriminators. These combinators (...)
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  13.  89
    Combinatory Logic and the Semantics of Substructural Logics.Lou Goble - 2007 - Studia Logica 85 (2):171-197.
    The results of this paper extend some of the intimate relations that are known to obtain between combinatory logic and certain substructural logics to establish a general characterization theorem that applies to a very broad family of such logics. In particular, I demonstrate that, for every combinator X, if LX is the logic that results by adding the set of types assigned to X (in an appropriate type assignment system, TAS) as axioms to the basic positive relevant (...)
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  14.  70
    Systems of illative combinatory logic complete for first-order propositional and predicate calculus.Henk Barendregt, Martin Bunder & Wil Dekkers - 1993 - Journal of Symbolic Logic 58 (3):769-788.
    Illative combinatory logic consists of the theory of combinators or lambda calculus extended by extra constants (and corresponding axioms and rules) intended to capture inference. The paper considers systems of illative combinatory logic that are sound for first-order propositional and predicate calculus. The interpretation from ordinary logic into the illative systems can be done in two ways: following the propositions-as-types paradigm, in which derivations become combinators or, in a more direct way, in which derivations are (...)
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  15. Set theory based on combinatory logic.Maarten Wicher Visser Bunder - 1969 - Groningen,: V. R. B. --Offsetdrukkerij (Kleine der A 3-4).
     
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  16.  12
    Combinatory logic with polymorphic types.William R. Stirton - 2022 - Archive for Mathematical Logic 61 (3):317-343.
    Sections 1 through 4 define, in the usual inductive style, various classes of object including one which is called the “combinatory terms of polymorphic type”. Section 5 defines a reduction relation on these terms. Section 6 shows that the weak normalizability of the combinatory terms of polymorphic type entails the weak normalizability of the lambda terms of polymorphic type. The entailment is not vacuous, because the combinatory terms of polymorphic type are indeed weakly normalizable, as is proven (...)
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  17.  3
    Combinatory Logic with Discriminators.John T. Kearns - 1973 - Journal of Symbolic Logic 38 (2):339-340.
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  18.  8
    Combinatory Logic.Sören Stenlund - 1995 - In Audi Robert (ed.), The Ruffin Series in Business Ethics. Cambridge University Press. pp. 137--138.
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  19.  50
    Illative combinatory logic without equality as a primitive predicate.M. W. Bunder - 1982 - Notre Dame Journal of Formal Logic 23 (1):62-70.
  20.  14
    A Combinatory Logic.William C. Frederick - 1995 - The Ruffin Series in Business Ethics:187-188.
  21.  25
    Combinatory logic and Whitehead's theory of prehensions.Frederic B. Fitch - 1957 - Philosophy of Science 24 (4):331-335.
    In this paper I wish to reformulate in my own way some parts of Whitehead's theory of prehensions. This reformulation will deviate in various respects from Whitehead's own detailed views and terminology, but the main inspiration is from Whitehead.
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  22.  10
    Elements of Combinatory Logic.Bruce Lercher - 1974 - Journal of Symbolic Logic 41 (4):789-790.
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  23. Substructural Logics, Combinatory Logic, and Lambda-Calculus.Katalin Bimbo - 1999 - Dissertation, Indiana University
    The dissertation deals with problems in "logic", more precisely, it deals with particular formal systems aiming at capturing patterns of valid reasoning. Sequent calculi were proposed to characterize logical connectives via introduction rules. These systems customarily also have structural rules which allow one to rearrange the set of premises and conclusions. In the "structurally free logic" of Dunn and Meyer the structural rules are replaced by combinatory rules which allow the same reshuffling of formulae, and additionally introduce (...)
     
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  24.  32
    Elements of combinatory logic.Frederic Brenton Fitch - 1974 - New Haven,: Yale University Press.
  25.  18
    Modified basic functionality in combinatory logic.Haskell B. Curry - 1969 - Dialectica 23 (2):83-92.
  26.  22
    Combinatory logic. Haskell B. Curry, J. Roger Hindley, and Jonathan P. Seldin. Combinatory logic. Volume II. Studies in logic and the foundations of mathematics, vol. 65. North-Holland Publishing Company, Amsterdam and London 1972, XIV + 520 pp. [REVIEW]Henk Barendregt - 1977 - Journal of Symbolic Logic 42 (1):109-110.
  27.  75
    Compact bracket abstraction in combinatory logic.Sabine Broda & Luís Damas - 1997 - Journal of Symbolic Logic 62 (3):729-740.
    Translations from Lambda calculi into combinatory logics can be used to avoid some implementational problems of the former systems. However, this scheme can only be efficient if the translation produces short output with a small number of combinators, in order to reduce the time and transient storage space spent during reduction of combinatory terms. In this paper we present a combinatory system and an abstraction algorithm, based on the original bracket abstraction operator of Schonfinkel [9]. The algorithm (...)
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  28.  27
    Systems of combinatory logic related to Quine's ‘New Foundations’.M. Randall Holmes - 1991 - Annals of Pure and Applied Logic 53 (2):103-133.
    Systems TRC and TRCU of illative combinatory logic are introduced and shown to be equivalent in consistency strength and expressive power to Quine's set theory ‘New Foundations’ and the fragment NFU + Infinity of NF described by Jensen, respectively. Jensen demonstrated the consistency of NFU + Infinity relative to ZFC; the question of the consistency of NF remains open. TRC and TRCU are presented here as classical first-order theories, although they can be presented as equational theories; they are (...)
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  29. Category theory based on combinatory logic.M. W. Bunder - 1984 - Archive for Mathematical Logic 24 (1):1-16.
     
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  30.  12
    Introduction to combinatory logic.Sören Stenlund - 1971 - Uppsala,: Uppsala universitetet, Filosofiska föreningen och Filosofiska institutionen.
  31.  36
    Some Inconsistencies in Illative Combinatory Logic.M. W. Bunder - 1974 - Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 20 (13-18):199-201.
  32.  25
    Normal Forms in Combinatory Logic.Patricia Johann - 1994 - Notre Dame Journal of Formal Logic 35 (4):573-594.
    Let $R$ be a convergent term rewriting system, and let $CR$-equality on combinatory logic terms be the equality induced by $\beta \eta R$-equality on terms of the lambda calculus under any of the standard translations between these two frameworks for higher-order reasoning. We generalize the classical notion of strong reduction to a reduction relation which generates $CR$-equality and whose irreducibles are exactly the translates of long $\beta R$-normal forms. The classical notion of strong normal form in combinatory (...)
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  33.  24
    Systems of combinatory logic related to predicative and ‘mildly impredicative’ fragments of Quine's ‘New Foundations’.M. Randall Holmes - 1993 - Annals of Pure and Applied Logic 59 (1):45-53.
    This paper extends the results of an earlier paper by the author . New subsystems of the combinatory logic TRC shown in that paper to be equivalent to NF are introduced; these systems are analogous to subsystems of NF with predicativity restrictions on set comprehension introduced and shown to be consistent by Crabbé. For one of these systems, an exact equivalence in consistency strength and expressive power with the analogous subsystem of NF is established.
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  34.  21
    Higher-order illative combinatory logic.Łukasz Czajka - 2013 - Journal of Symbolic Logic 78 (3):837-872.
  35.  8
    Typing in reflective combinatory logic.Nikolai Krupski - 2006 - Annals of Pure and Applied Logic 141 (1):243-256.
    We study Artemov’s Reflective Combinatory Logic . We provide the explicit definition of types for and prove that every well-formed term has a unique type. We establish that the typability testing and detailed type restoration can be done in polynomial time and that the derivability relation for is decidable and PSPACE-complete. These results also formalize the intended semantics of the type t:F in . Terms store the complete information about the judgment “t is a term of type F”, (...)
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  36.  40
    The system cδ of combinatory logic.Frederic B. Fitch - 1963 - Journal of Symbolic Logic 28 (1):87-97.
  37.  46
    Combinatory Logic[REVIEW]K. B. L. - 1959 - Review of Metaphysics 13 (1):187-187.
    The first volume of a projected two-volume treatise which will provide for the first time a systematic and comprehensive exposition of an important branch of mathematical logic. Previously published research is integrated and revised in the light of later results, and much new material is presented. Highly technical and, even in introductory sections, extraordinarily dense in style, this is a work for specialists. An important contribution.--L. K. B.
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  38.  27
    A paradox in illative combinatory logic.M. W. Bunder - 1970 - Notre Dame Journal of Formal Logic 11 (4):467-470.
  39.  17
    The Church-Rosser property in symmetric combinatory logic.Katalin Bimbó - 2005 - Journal of Symbolic Logic 70 (2):536-556.
    Symmetic combinatory logic with the symmetric analogue of a combinatorially complete base (in the form of symmetric λ-calculus) is known to lack the Church-Rosser property. We prove a muchstrongertheorem that no symmetric combinatory logic that containsat least two proper symmetric combinatoryhas the Church-Rosser property. Although the statement of the result looks similar to an earlier one concerning dual combinatory logic,the proof is differentbecause symmetric combinators may form redexes in both left and right associated terms. (...)
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  40.  6
    Combinatory Logic, Vol. I. [REVIEW]Charles D. Parsons - 1959 - Philosophical Review 68 (4):548-550.
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  41.  50
    The Church-Rosser Property in Symmetric Combinatory Logic.Katalin Bimbó - 2005 - Journal of Symbolic Logic 70 (2):536 - 556.
    Symmetic combinatory logic with the symmetric analogue of a combinatorially complete base (in the form of symmetric λ-calculus) is known to lack the Church-Rosser property. We prove a much stronger theorem that no symmetric combinatory logic that contains at least two proper symmetric combinators has the Church-Rosser property. Although the statement of the result looks similar to an earlier one concerning dual combinatory logic, the proof is different because symmetric combinators may form redexes in (...)
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  42.  18
    The completeness of combinatory logic with discriminators.John T. Kearns - 1973 - Notre Dame Journal of Formal Logic 14 (3):323-330.
  43.  22
    The System CΔ of Combinatory Logic.Frederic B. Fitch - 1964 - Journal of Symbolic Logic 29 (4):198-199.
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  44.  50
    Completeness of two systems of illative combinatory logic for first-order propositional and predicate calculus.Wil Dekkers, Martin Bunder & Henk Barendregt - 1998 - Archive for Mathematical Logic 37 (5-6):327-341.
    Illative combinatory logic consists of the theory of combinators or lambda calculus extended by extra constants (and corresponding axioms and rules) intended to capture inference. The paper considers 4 systems of illative combinatory logic that are sound for first-order propositional and predicate calculus. The interpretation from ordinary logic into the illative systems can be done in two ways: following the propositions-as-types paradigm, in which derivations become combinators, or in a more direct way, in which derivations (...)
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  45.  11
    Types in combinatory logic.Luis E. Sanchis - 1964 - Notre Dame Journal of Formal Logic 5 (3):161-180.
  46.  26
    A simplification of combinatory logic.Nicolas D. Goodman - 1972 - Journal of Symbolic Logic 37 (2):225-246.
  47.  8
    Types in Combinatory Logic.Jean Ladrière - 1967 - Journal of Symbolic Logic 32 (3):420-421.
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  48.  8
    Modified strong reduction in combinatory logic.Kenneth Loewen - 1968 - Notre Dame Journal of Formal Logic 9 (3):265-270.
  49.  43
    $\Lambda$-elimination in illative combinatory logic.M. W. Bunder - 1979 - Notre Dame Journal of Formal Logic 20 (3):628-630.
  50.  39
    Significance and illative combinatory logics.M. W. Bunder - 1980 - Notre Dame Journal of Formal Logic 21 (2):380-384.
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