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  1. Causal discovery using adaptive logics. Towards a more realistic heuristics for human causal learning.Maarten Van Dyck - 2004 - Logique Et Analyse 185 (188):5-32.
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  • Constraints for Input/Output Logics.David Makinson & Leendert van der Torre - 2001 - Journal of Philosophical Logic 30 (2):155 - 185.
    In a previous paper we developed a general theory of input/output logics. These are operations resembling inference, but where inputs need not be included among outputs, and outputs need not be reusable as inputs. In the present paper we study what happens when they are constrained to render output consistent with input. This is of interest for deontic logic, where it provides a manner of handling contrary-to-duty obligations. Our procedure is to constrain the set of generators of the input/output system, (...)
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  • Circumscription — A Form of Non-Monotonic Reasoning.John McCarthy - 1980 - Artificial Intelligence 13 (1-2):27–39.
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  • (4 other versions)Is Justified True Belief Knowledge?Edmund L. Gettier - 1963 - Analysis 23 (6):121-123.
    Edmund Gettier is Professor Emeritus at the University of Massachusetts, Amherst. This short piece, published in 1963, seemed to many decisively to refute an otherwise attractive analysis of knowledge. It stimulated a renewed effort, still ongoing, to clarify exactly what knowledge comprises.
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  • Contrary-to-Duty Imperatives and Deontic Logic.R. M. Chisholm - 1963 - Analysis 24 (2):33-36.
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  • Theory of knowledge.Roderick M. Chisholm - 1966 - Englewood Cliffs, N.J.,: Prentice-Hall.
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  • Majority merging by adaptive counting.Giuseppe Primiero & Joke Meheus - 2008 - Synthese 165 (2):203 - 223.
    The present paper introduces a belief merging procedure by majority using the standard format of Adaptive Logics. The core structure of the logic ADM c (Adaptive Doxastic Merging by Counting) consists in the formulation of the conflicts arising from the belief bases of the agents involved in the procedure. A strategy is then defined both semantically and proof-theoretically which selects the consistent contents answering to a majority principle. The results obtained are proven to be equivalent to a standard majority operator (...)
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  • (1 other version)Deontic logic.Paul McNamara - 2010 - Stanford Encyclopedia of Philosophy.
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  • (1 other version)Knowledge: Undefeated justified true belief.Keith Lehrer & Thomas Paxson - 1969 - Journal of Philosophy 66 (8):225-237.
    The recently offered, Purported counter-Examples to justified, True belief analyses of knowledge are looked at with some care and all found to be either incoherent or inconclusive. It is argued that justified, True belief analyses are based on sound insight into the concept of knowledge. The distinction between having been justified in claiming to know something and actually having known it is used in an effort to get the discussion of knowledge back on the right track.
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  • A proposed definition of propositional knowledge.Peter D. Klein - 1971 - Journal of Philosophy 68 (16):471-482.
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  • Gentle murder, or the adverbial samaritan.James Forrester - 1984 - Journal of Philosophy 81 (4):193-197.
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  • A theory of diagnosis from first principles.Raymond Reiter - 1987 - Artificial Intelligence 32 (1):57-95.
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  • Nonmonotonic reasoning, preferential models and cumulative logics.Sarit Kraus, Daniel Lehmann & Menachem Magidor - 1990 - Artificial Intelligence 44 (1-2):167-207.
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  • Which style of reasoning to choose in the face of conflicting information?Joke Meheus, Peter Verdée & Christian Straßer - 2013 - Journal of Logic and Computation 26 (1):361–380.
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  • A general characterization of adaptive logics.Diderik Batens - 2001 - Logique Et Analyse 173 (175):45-68.
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  • Defeasible Reasoning.John L. Pollock - 1987 - Cognitive Science 11 (4):481-518.
    There was a long tradition in philosophy according to which good reasoning had to be deductively valid. However, that tradition began to be questioned in the 1960’s, and is now thoroughly discredited. What caused its downfall was the recognition that many familiar kinds of reasoning are not deductively valid, but clearly confer justification on their conclusions. Here are some simple examples.
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  • Reasoning about preferences in argumentation frameworks.Sanjay Modgil - 2009 - Artificial Intelligence 173 (9-10):901-934.
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  • The New Rhetoric: A Treatise on Argumentation.Ch Perelman, L. Olbrechts-Tyteca, John Wilkinson & Purcell Weaver - 1969 - Philosophy and Rhetoric 3 (4):249-254.
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  • Multiplex semantics for deontic logic.Lou Goble - 2000 - Nordic Journal of Philosophical Logic 5 (2):113-134.
    This multiplex semantics incorporates multiple relations of deontic accessibility or multiple preference rankings on alternative worlds to represent distinct normative standards. This provides a convenient framework for deontic logic that allows conflicts of obligation, due either to conflicts between normative standards or to incoherence within a single standard. With the multiplex structures, two general senses of "ought" may be distinguished, an indefinite sense under which something is obligatory when it is enjoined by some normative standard and a core sense for (...)
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  • General Patterns in Nonmonotonic Reasoning.David Makinson - 1994 - In Handbook of Logic in Artificial Intelligence Nad Logic Programming, Vol. Iii. Clarendon Press. pp. 35-110.
    An extended review of what is known about the formal behaviour of nonmonotonic inference operations, including those generated by the principal systems in the artificial intelligence literature. Directed towards computer scientists and others with some background in logic.
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  • Challenge and response.Carl Wellman - 1971 - Carbondale,: Southern Illinois University Press.
    Mr. Wellman’s highly original contribution to the relatively new field of justification in ethics consists of characterizing the different ways in which ethical statements can be challenged and showing how each sort of challenge can be met by an appropriate response, enabling reasonable men to appropriately discuss or reflect on ethical issues. In developing his unique, systematic, methodology of ethics, Mr. Wellman has, first, rigorously reviewed and refuted the main arguments for the view of the nature of all reasoning as (...)
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  • The ascription of responsibility and rights.H. L. A. Hart - 1951 - In Gilbert Ryle & Antony Flew (eds.), Logic and language (first series): essays. Oxford: Blackwell. pp. 171 - 194.
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  • Defeasible reasoning.Robert C. Koons - 2008 - Stanford Encyclopedia of Philosophy.
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  • Dyadic deontic detachment.Barry Loewer & Marvin Belzer - 1983 - Synthese 54 (2):295 - 318.
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  • Two party immediate response disputes: Properties and efficiency.Paul E. Dunne & T. J. M. Bench-Capon - 2003 - Artificial Intelligence 149 (2):221-250.
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  • The effect of knowledge on belief.David Poole - 1991 - Artificial Intelligence 49 (1-3):281-307.
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  • (1 other version)Tolerating Deontic Conflicts by Adaptively Restricting Inheritance.Christian Straßer, Joke Meheus & Mathieu Beirlaen - 2012 - Logique Et Analyse 219:477--506.
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  • A deontic logic framework allowing for factual detachment.Christian Straßer - 2011 - Journal of Applied Logic 9 (1):61-80.
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  • From Instrumentalism to Constructive Realism: On Some Relations Between Confirmation, Empirical Progress, and Truth Approximation.Theodorus Antonius Franciscus Kuipers - 2000 - Dordrecht, Netherland: Springer.
    Surprisingly, modified versions of the confirmation theory (Carnap and Hempel) and truth approximation theory (Popper) turn out to be smoothly sythesizable. The glue between the two appears to be the instrumentalist methodology, rather than that of the falsificationalist. The instrumentalist methodology, used in the separate, comparative evaluation of theories in terms of their successes and problems (hence, even if already falsified), provides in theory and practice the straight road to short-term empirical progress in science ( à la Laudan). It is (...)
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  • Direct Dynamic Proofs for the Rescher–Manor Consequence Relations: The Flat Case.Diderik Batens & Timothy Vermeir - 2002 - Journal of Applied Non-Classical Logics 12 (1):63-84.
    In [BAT 00b], the flat Rescher–Manor consequence relations — the Free, Strong, Argued, C-Based, andWeak consequence relation—were shown to be characterized by inconsistency-adaptive logics defined from the paraconsistent logic CLuN. This provided these consequence relations with a dynamic proof theory. In the present paper we show that the detour via an inconsistency-adaptive logic is not necessary. We present a direct dynamic proof theory, formulated in the language of Classical Logic, and prove its adequacy. The present paper contains the first direct (...)
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  • Adaptively applying modus ponens in conditional logics of normality.Christian Straßer - 2012 - Journal of Applied Non-Classical Logics 22 (1):125-148.
    This paper presents an adaptive logic enhancement of conditional logics of normality that allows for defeasible applications of Modus Ponens to conditionals. In addition to the possibilities these logics already offer in terms of reasoning about conditionals, this way they are enriched by the ability to perform default inferencing. The idea is to apply Modus Ponens defeasibly to a conditional and a fact on the condition that it is ‘safe' to do so concerning the factual and conditional knowledge at hand. (...)
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  • On Inferences from Inconsistent Premises.Nicholas Rescher & Ruth Manor - 1970 - Theory and Decision 1 (2):179-217, 1970-1971.
    The main object of this paper is to provide the logical machinery needed for a viable basis for talking of the ‘consequences’, the ‘content’, or of ‘equivalences’ between inconsistent sets of premisses.With reference to its maximal consistent subsets (m.c.s.), two kinds of ‘consequences’ of a propositional set S are defined. A proposition P is a weak consequence (W-consequence) of S if it is a logical consequence of at least one m.c.s. of S, and P is an inevitable consequence (I-consequence) of (...)
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  • Inconsistency-Adaptive Logics.Diderik Batens - 1999 - In Logic at Work. Essays Dedicated to the Memory of Helena Rasiowa. Springer. pp. 445-472.
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  • Contrary-to-duty obligations.Henry Prakken & Marek Sergot - 1996 - Studia Logica 57 (1):91 - 115.
    We investigate under what conditions contrary-to-duty (CTD) structures lacking temporal and action elements can be given a coherent reading. We argue, contrary to some recent proposals, that CTD is not an instance of defeasible reasoning, and that methods of nonmonotonic logics are inadequate since they are unable to distinguish between defeasibility and violation of primary obligations. We propose a semantic framework based on the idea that primary and CTD obligations are obligations of different kinds: a CTD obligation pertains to, or (...)
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  • (1 other version)Moral realism and moral dilemma.Philippa Foot - 1983 - Journal of Philosophy 80 (7):379-398.
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  • Floating conclusions and zombie paths: Two deep difficulties in the “directly skeptical” approach to defeasible inheritance nets.David Makinson & Karl Schlechta - 1991 - Artificial Intelligence 48 (2):199-209.
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  • On the transparency of defeasible logics: Equivalent premise sets, equivalence of their extensions, and maximality of the lower limit.Diderik Batens, Christian Straßer & Peter Verdée - 2009 - Logique Et Analyse 52 (207):281-304.
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  • Causal Discovery and the Problem of Ignorance. An Adaptive Logic Approach.Bert Leuridan - 2009 - Journal of Applied Logic 7 (2):188-205.
    In this paper, I want to substantiate three related claims regarding causal discovery from non-experimental data. Firstly, in scientific practice, the problem of ignorance is ubiquitous, persistent, and far-reaching. Intuitively, the problem of ignorance bears upon the following situation. A set of random variables V is studied but only partly tested for (conditional) independencies; i.e. for some variables A and B it is not known whether they are (conditionally) independent. Secondly, Judea Pearl’s most meritorious and influential algorithm for causal discovery (...)
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  • Abstract argumentation and explanation applied to scientific debates.Dunja Šešelja & Christian Straßer - 2013 - Synthese 190 (12):2195-2217.
    argumentation has been shown to be a powerful tool within many fields such as artificial intelligence, logic and legal reasoning. In this paper we enhance Dung’s well-known abstract argumentation framework with explanatory capabilities. We show that an explanatory argumentation framework (EAF) obtained in this way is a useful tool for the modeling of scientific debates. On the one hand, EAFs allow for the representation of explanatory and justificatory arguments constituting rivaling scientific views. On the other hand, different procedures for selecting (...)
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  • Minimally abnormal models in some adaptive logics.Diderik Batens - 2000 - Synthese 125 (1-2):5-18.
    In an adaptive logic APL, based on a (monotonic) non-standardlogic PL the consequences of can be defined in terms ofa selection of the PL-models of . An important property ofthe adaptive logics ACLuN1, ACLuN2, ACLuNs1, andACLuNs2 logics is proved: whenever a model is not selected, this isjustified in terms of a selected model (Strong Reassurance). Theproperty fails for Priest's LP m because its way of measuring thedegree of abnormality of a model is incoherent – correcting thisdelivers the property.
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  • Deontic logic for normative conflicts.L. Goble - 2014 - Logic Journal of the IGPL 22 (2):206-235.
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  • An adaptive logic framework for conditional obligations and deontic dilemmas.Christian Straßer - 2010 - Logic and Logical Philosophy 19 (1-2):95-128.
    Lou Goble proposed powerful conditional deontic logics (CDPM) that are able to deal with deontic conflicts by means of restricting the inheritance principle. One of the central problems for dyadic deontic logics is to properly treat the restricted applicability of the principle “strengthening the antecedent”. In most cases it is desirable to derive from an obligation A under condition B, that A is also obliged under condition B and C. However, there are important counterexamples. Goble proposed a weakened rational monotonicity (...)
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  • (1 other version)What does a conditional knowledge base entail?Daniel Lehmann & Menachem Magidor - 1992 - Artificial Intelligence 55 (1):1-60.
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  • Preference semantics for deontic logic. Part I: Simple models.Lou Goble - 2003 - Logique Et Analyse 46:383-418.
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  • Epistemic Defeasibility.Marshall Swain - 1974 - American Philosophical Quarterly 11 (1):15 - 25.
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  • General patterns for nonmonotonic reasoning: from basic entailments to plausible relations.O. Arieli & A. Avron - 2000 - Logic Journal of the IGPL 8 (2):119-148.
    This paper has two goals. First, we develop frameworks for logical systems which are able to reflect not only non-monotonic patterns of reasoning, but also paraconsistent reasoning. Our second goal is to have a better understanding of the conditions that a useful relation for nonmonotonic reasoning should satisfy. For this we consider a sequence of generalizations of the pioneering works of Gabbay, Kraus, Lehmann, Magidor and Makinson. These generalizations allow the use of monotonic nonclassical logics as the underlying logic upon (...)
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  • (1 other version)Skepticism and floating conclusions.John Horty - manuscript
    The purpose of this paper is to question some commonly accepted patterns of reasoning involving nonmonotonic logics that generate multiple extensions. In particular, I argue that the phenomenon of floating conclusions indicates a problem with the view that the skeptical consequences of such theories should be identified with the statements that are supported by each of their various extensions.
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  • Argument based machine learning.Martin Možina, Jure Žabkar & Ivan Bratko - 2007 - Artificial Intelligence 171 (10-15):922-937.
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  • A note on the rational closure of knowledge bases with both positive and negative knowledge.R. Booth & J. B. Paris - 1998 - Journal of Logic, Language and Information 7 (2):165-190.
    The notion of the rational closure of a positive knowledge base K of conditional assertions θ\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document} $$i$$ \end{document} |∼ φ\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document} $$i$$ \end{document} (standing for if θ\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document} $$i$$ \end{document} then normally φ\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document} $$i$$ \end{document}) was first introduced by Lehmann (1989) and developed by Lehmann and Magidor (...)
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  • Empirical progress and ampliative adaptive logics.Joke Meheus - 2005 - Poznan Studies in the Philosophy of the Sciences and the Humanities 83 (1):193-217.
    In this paper, I present two ampliative adaptive logics: LA and LAk. LA is an adaptive logic for abduction that enables one to generate explanatory hypotheses from a set of observational statements and a set of background assumptions. LAk is based on LA and has the peculiar property that it selects those explanatory hypotheses that are empirically most successful. The aim of LAk is to capture the notion of empirical progress as studied by Theo Kuipers.
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