Results for 'A.-V. Pietarinen'

94 found
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  1. On Peirce's late proof of pragmaticism.A. Pietarinen & Lauri Snellman - 2006 - Acta Philosophica Fennica 78:275.
     
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  2.  21
    Partiality and games: propositional logic.G. Sandu & A. Pietarinen - 2001 - Logic Journal of the IGPL 9 (1):101-121.
    We study partiality in propositional logics containing formulas with either undefined or over-defined truth-values. Undefined values are created by adding a four-place connective W termed transjunction to complete models which, together with the usual Boolean connectives is shown to be functionally complete for all partial functions. Transjunction is seen to be motivated from a game-theoretic perspective, emerging from a two-stage extensive form semantic game of imperfect information between two players. This game-theoretic approach yields an interpretation where partiality is generated as (...)
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  3. Brill Online Books and Journals.Gianni Paganini, Martin A. Bertman, Bernard Gert, Brian Trainor & Juhani Pietarinen - 2001 - Hobbes Studies 14 (1).
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  4. Comments on Hookway: The pragmatic maxim and the proof of pragmatism.A. Pietarinen - 2008 - Cognitio 9 (1):85-92.
     
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  5. Logic and coherence in the light of competitive games, to appear in.A. Pietarinen - forthcoming - Logique Et Analyse.
     
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  6.  33
    Peirce’s Contributions to Possible-Worlds Semantics.Ahti-Veikko Pietarinen - 2006 - Studia Logica 82 (3):345-369.
    A century ago, Charles S. Peirce proposed a logical approach to modalities that came close to possible-worlds semantics. This paper investigates his views on modalities through his diagrammatic logic of Existential Graphs. The contribution of the GAMMA part of EGs to the study of modalities is examined. Some ramifications of Peirce's remarks are presented and placed into a contemporary perspective. An appendix is included that provides a transcription with commentary of Peirce's unpublished manuscript on modality from 1901.
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  7.  9
    Interdisciplinarity and Peirce's classification of the sciences: A centennial reassessment.Ahti-Veikko Pietarinen - 2006 - Perspectives on Science 14 (2):127-152.
    : This paper discusses the American scientist and philosopher Charles S. Peirce's (1839–1914) classification of the sciences from the contemporary perspective of interdisciplinary studies. Three theses are defended: (1) Studies on interdisciplinarity pertain to the intermediate class of Peirce's classification of all science, the sciences of review (retrospective science), ranking below the sciences of discovery (heuretic sciences) and above practical science (the arts). (2) Scientific research methods adopted by interdisciplinary inquiries are cross-categorial. Making them converge to an increasing extent with (...)
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  8.  18
    Peirce’s Contributions to Possible-Worlds Semantics.Ahti-Veikko Pietarinen - 2006 - Studia Logica 82 (3):345 - 369.
    A century ago, Charles S. Peirce proposed a logical approach to modalities that came close to possible-worlds semantics. This paper investigates his views on modalities through his diagrammatic logic of Existential Graphs (EGs). The contribution of the gamma part of EGs to the study of modalities is examined. Some ramifications of Peirce’s remarks are presented and placed into a contemporary perspective. An appendix is included that provides a transcription with commentary of Peirce’s unpublished manuscript on modality from 1901.
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  9.  27
    Assertion and denial: A contribution from logical notations.Ahti-Veikko Pietarinen & Francesco Bellucci - 2017 - Journal of Applied Logic 25:1-22.
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  10.  17
    Games as formal tools versus games as explanations in logic and science.Ahti-Veikko Pietarinen - 2003 - Foundations of Science 8 (4):317-364.
    This paper addresses the theoretical notion of a game as it arisesacross scientific inquiries, exploring its uses as a technical andformal asset in logic and science versus an explanatory mechanism. Whilegames comprise a widely used method in a broad intellectual realm(including, but not limited to, philosophy, logic, mathematics,cognitive science, artificial intelligence, computation, linguistics,physics, economics), each discipline advocates its own methodology and aunified understanding is lacking. In the first part of this paper, anumber of game theories in formal studies are critically (...)
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  11.  22
    A Scholastic-Realist Modal-Structuralism.Ahti-Veikko Pietarinen - 2014 - Philosophia Scientiae 18:127-138.
    How are we to understand the talk about properties of structures the existence of which is conditional upon the assumption of the reality of those structures? Mathematics is not about abstract objects, yet unlike fictionalism, modal-structuralism respects the truth of theorems and proofs. But it is nominalistic with respect to possibilia. The problem is that, for fear of reducing possibilia to actualities, the second-order modal logic that claims to axiomatise modal existence has no real semantics. There is no cross-identification of (...)
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  12.  28
    A Scholastic-Realist Modal-Structuralism.Ahti-Veikko Pietarinen - 2014 - Philosophia Scientiae 18:127-138.
    How are we to understand the talk about properties of structures the existence of which is conditional upon the assumption of the reality of those structures? Mathematics is not about abstract objects, yet unlike fictionalism, modal-structuralism respects the truth of theorems and proofs. But it is nominalistic with respect to possibilia. The problem is that, for fear of reducing possibilia to actualities, the second-order modal logic that claims to axiomatise modal existence has no real semantics. There is no cross-identification of (...)
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  13.  73
    The world as active power: studies in the history of European reason.Juhani Pietarinen & Valtteri Viljanen (eds.) - 2009 - Leiden: Brill.
    This collection of essays discusses a central feature of European philosophy: the idea of a universal active power as the ultimate world-explanation.
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  14.  68
    Abstraction and Generalization in the Logic of Science: Cases from Nineteenth-Century Scientific Practice.Claudia Cristalli & Ahti-Veikko Pietarinen - 2021 - Hopos: The Journal of the International Society for the History of Philosophy of Science 11 (1):93-121.
    Abstraction and generalization are two processes of reasoning that have a special role in the construction of scientific theories and models. They have been important parts of the scientific method ever since the nineteenth century. A philosophical and historical analysis of scientific practices shows how abstraction and generalization found their way into the theory of the logic of science of the nineteenth-century philosopher Charles S. Peirce. Our case studies include the scientific practices of Francis Galton and John Herschel, who introduced (...)
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  15. The Iconic Moment. Towards a Peircean Theory of Diagrammatic Imagination.Francesco Bellucci & Ahti-Veikko Pietarinen - 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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  16. Why Images Cannot be Arguments, But Moving Ones Might.Marc Champagne & Ahti-Veikko Pietarinen - 2020 - Argumentation 34 (2):207-236.
    Some have suggested that images can be arguments. Images can certainly bolster the acceptability of individual premises. We worry, though, that the static nature of images prevents them from ever playing a genuinely argumentative role. To show this, we call attention to a dilemma. The conclusion of a visual argument will either be explicit or implicit. If a visual argument includes its conclusion, then that conclusion must be demarcated from the premise or otherwise the argument will beg the question. If (...)
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  17.  59
    On Explainable AI and Abductive Inference.Kyrylo Medianovskyi & Ahti-Veikko Pietarinen - 2022 - Philosophies 7 (2):35.
    Modern explainable AI methods remain far from providing human-like answers to ‘why’ questions, let alone those that satisfactorily agree with human-level understanding. Instead, the results that such methods provide boil down to sets of causal attributions. Currently, the choice of accepted attributions rests largely, if not solely, on the explainee’s understanding of the quality of explanations. The paper argues that such decisions may be transferred from a human to an XAI agent, provided that its machine-learning algorithms perform genuinely abductive inferences. (...)
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  18.  89
    Existential Graphs: What a Diagrammatic Logic of Cognition Might Look Like.Ahti-Veikko Pietarinen - 2011 - History and Philosophy of Logic 32 (3):265-281.
    This paper examines the contemporary philosophical and cognitive relevance of Charles Peirce's diagrammatic logic of existential graphs (EGs), the ‘moving pictures of thought’. The first part brings to the fore some hitherto unknown details about the reception of EGs in the early 1900s that took place amidst the emergence of modern conceptions of symbolic logic. In the second part, philosophical aspects of EGs and their contributions to contemporary logical theory are pointed out, including the relationship between iconic logic and images, (...)
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  19.  31
    Active Inference and Abduction.Ahti-Veikko Pietarinen & Majid D. Beni - 2021 - Biosemiotics 14 (2):499-517.
    The background target of the research going into the present article is to forge an intellectual alliance between, on the one hand, active inference and the free-energy principle (FEP), and on the other, Charles S. Peirce’s theory of semiotics and pragmatism. In the present paper, the focus is on the allegiance between the nomenclatures of active and abductive inferences as the proper place to begin reaching at that wider target. The paper outlines the key conceptual elements involved in a naturalistic (...)
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  20.  71
    Abductive inference within a pragmatic framework.Daniele Chiffi & Ahti-Veikko Pietarinen - 2020 - Synthese 197 (6):2507-2523.
    This paper presents an enrichment of the Gabbay–Woods schema of Peirce’s 1903 logical form of abduction with illocutionary acts, drawing from logic for pragmatics and its resources to model justified assertions. It analyses the enriched schema and puts it into the perspective of Peirce’s logic and philosophy.
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  21.  40
    Reprint of: Assertion and denial: A contribution from logical notations.Ahti-Veikko Pietarinen & Francesco Bellucci - 2017 - Journal of Applied Logic 25:S3-S24.
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  22.  28
    Abduction and diagrams.Ahti-Veikko Pietarinen - forthcoming - Logic Journal of the IGPL.
    Abductive conclusions are drawn in a special, co-hortative mood. Abductive conclusions are representative interpretants that represent abduction as a form of reasoning that can convey a general conception of the truth. The truth is not asserted; abduction merely delivers the idea of a matter of course, rendering that idea comparatively simple and natural, hence assuring us of its justified assertibility. Hence abductive reasoning is at home in addressing ‘How Possible’-questions in science. Abductive reasoning concerns the question of how things might, (...)
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  23.  24
    Inductive immodesty and lawlikeness.Juhani Pietarinen - 1974 - Philosophy of Science 41 (2):196-198.
    David Lewis [2] suggests that an adequate inductive method should be immodest, i.e. recommend itself as at least as accurate as any of its rivals. On this basis he works out a solution to the intricate problem of choosing among Carnap's λ-methods. Lewis himself points out certain undesirable consequences of his solution. I will argue that the solution breaks down for a more general reason than that indicated by Lewis; like other procedures for estimating degrees of belief I am familiar (...)
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  24.  34
    The Science to Save Us from Philosophy of Science.Ahti-Veikko J. Pietarinen - 2015 - Axiomathes 25 (2):149-166.
    Are knowledge and belief pivotal in science, as contemporary epistemology and philosophy of science nearly universally take them to be? I defend the view that scientists are not primarily concerned with knowing and that the methods of arriving at scientific hypotheses, models and scenarios do not commit us having stable beliefs about them. Instead, what drives scientific discovery is ignorance that scientists can cleverly exploit. Not an absence or negation of knowledge, ignorance concerns fundamental uncertainty, and is brought out by (...)
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  25.  44
    Let Us Investigate! Dynamic Conjecture-Making as the Formal Logic of Abduction.Minghui Ma & Ahti-Veikko Pietarinen - 2018 - Journal of Philosophical Logic 47 (6):913-945.
    We present a dynamic approach to Peirce’s original construal of abductive logic as a logic of conjecture making, and provide a new decidable, contraction-free and cut-free proof system for the dynamic logic of abductive inferences with neighborhood semantics. Our formulation of the dynamic logic of abduction follows the philosophical and scientific track that led Peirce to his late, post-1903 characterization of abductive conclusions as investigands, namely invitations to investigate propositions conjectured at the level of pre-beliefs.
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  26.  13
    Reinvigorating the Nineteenth Century Scientific Method: A Peirce-pective on Science.Ahti-Veikko Pietarinen & Majid D. Beni - 2023 - Perspectives on Science 31 (5):684-715.
    This paper proposes to recover the topic of the philosophy of scientific method from its late nineteenth-century roots. The subject matter of scientific method sprouted from key inferential ingredients identified by Charles Peirce. In this paper, the historical path is traversed from the viewpoint of contemporary Cognitive Structural Realism (CSR). Peirce’s semiotic theory of methods and practices of scientific inquiry prefigured CSR’s reliance on embodied informational structures and experimentation upon forms of relations that model generic scientific domains. Three results are (...)
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  27. Peirce's pragmatic theory of proper names.Ahti-Veikko Pietarinen - 2010 - Transactions of the Charles S. Peirce Society 46 (3):341-363.
    Charles Peirce's theory of proper names is intimately connected to a number of central topics in contemporary philosophy of language and logic. Several papers have appeared in the past in which Peirce's theory of names has been attested to be a precursor of the causal-historical theory of reference.2 The causal-historical theory in turn has customarily been pigeonholed as the 'new' theories of reference that have been emerging since the 1950s (Devitt 1981; Donellan 1966; Kripke 1980; Marcus 1950; Putnam 1973). Among (...)
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  28.  9
    Logic, language games and ludics.Ahti-Veikko Pietarinen - 2003 - Acta Analytica 18 (30/31):89-123.
    Wittgenstein’s language games can be put into a wider service by virtue of elements they share with some contemporary opinions concerning logic and the semantics of computation. I will give two examples: manifestations of language games and their possible variations in logical studies, and their role in some of the recent developments in computer science. It turns out that the current paradigm of computation that Girard termed Ludics bears a striking resemblance to members of language games. Moreover, the kind of (...)
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  29.  41
    To Peirce Hintikka’s Thoughts.Ahti-Veikko Pietarinen - 2019 - Logica Universalis 13 (2):241-262.
    This paper compares Peirce’s and Hintikka’s logical philosophies and identifies a cross-section of similarities in their thoughts in the areas of action-first epistemology, pragmaticist meaning, philosophy of science, and philosophy of logic and mathematics.
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  30.  7
    To Peirce Hintikka’s Thoughts.Ahti-Veikko Pietarinen - 2019 - Logica Universalis 13 (2):241-262.
    This paper compares Peirce’s and Hintikka’s logical philosophies and identifies a cross-section of similarities in their thoughts in the areas of action-first epistemology, pragmaticist meaning, philosophy of science, and philosophy of logic and mathematics.
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  31.  47
    Peirce’s calculi for classical propositional logic.Minghui Ma & Ahti-Veikko Pietarinen - 2020 - Review of Symbolic Logic 13 (3):509-540.
    This article investigates Charles Peirce’s development of logical calculi for classical propositional logic in 1880–1896. Peirce’s 1880 work on the algebra of logic resulted in a successful calculus for Boolean algebra. This calculus, denoted byPC, is here presented as a sequent calculus and not as a natural deduction system. It is shown that Peirce’s aim was to presentPCas a sequent calculus. The law of distributivity, which Peirce states in 1880, is proved using Peirce’s Rule, which is a residuation, inPC. The (...)
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  32.  11
    Compositionality, Relevance, and Peirce’s Logic of Existential Graphs.Ahti-Veikko Pietarinen - 2005 - Axiomathes 15 (4):513-540.
    Charles S. Peirce’s pragmatist theory of logic teaches us to take the context of utterances as an indispensable logical notion without which there is no meaning. This is not a spat against compositionality per se , since it is possible to posit extra arguments to the meaning function that composes complex meaning. However, that method would be inappropriate for a realistic notion of the meaning of assertions. To accomplish a realistic notion of meaning (as opposed e.g. to algebraic meaning), Sperber (...)
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  33. Peirce’s Logic.Francesco Bellucci & Ahti-Veikko Pietarinen - 2015 - Internet Encyclopedia of Philosophy.
    Charles Sanders Peirce: Logic Charles Sanders Peirce was an accomplished scientist, philosopher, and mathematician, who considered himself primarily a logician. His contributions to the development of modern logic at the turn of the 20th century were colossal, original and influential. Formal, or deductive, logic was just one of the branches in which he exercized … Continue reading Peirce’s Logic →.
     
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  34.  18
    Semeiotic completeness in the theory of signs.Ahti-Veikko Pietarinen - 2019 - Semiotica 2019 (228):237-257.
    Peirce aspired for the completeness of his logic cum the theory of signs in his 1903 Lowell Lectures and other late manuscripts. Semeiotic completeness states that everything that is a consequence in logical critic is derivable in speculative grammar. The present paper exposes the reasons why Peirce would fall short of establishing semeiotic completeness and thus why he would not continue seeking a perfect match between the theories of grammar and critic. Some alternative notions are then proposed.
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  35.  26
    Proof Analysis of Peirce’s Alpha System of Graphs.Minghui Ma & Ahti-Veikko Pietarinen - 2017 - Studia Logica 105 (3):625-647.
    Charles Peirce’s alpha system \ is reformulated into a deep inference system where the rules are given in terms of deep graphical structures and each rule has its symmetrical rule in the system. The proof analysis of \ is given in terms of two embedding theorems: the system \ and Brünnler’s deep inference system for classical propositional logic can be embedded into each other; and the system \ and Gentzen sequent calculus \ can be embedded into each other.
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  36.  3
    The heterogenous and dynamic nature of mental images: An empirical study.Jelena Issajeva & Ahti-Veikko Pietarinen - 2018 - Belgrade Philosophical Annual 1 (31):57-83.
    This article addresses the problem of the nature of mental imagery from a new perspective. It suggests that sign-theoretical approach as elaborated by C. S. Peirce can give a better and more comprehensive explanation of mental imagery. Our empirical findings follow the methodology of cognitive semiotics and they show that (i) properties of mental images are heterogeneous in nature; (ii) properties of mental images are dependent on the characteristics of object-stimulus; (iii) properties of mental images are dependent on individual differences (...)
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  37.  52
    Aligning the free-energy principle with Peirce’s logic of science and economy of research.Majid D. Beni & Ahti-Veikko Pietarinen - 2021 - European Journal for Philosophy of Science 11 (3):1-21.
    The paper proposes a way to naturalise Charles S. Peirce’s conception of the scientific method, which he specified in terms of abduction, deduction and induction. The focus is on the central issue of the economy of research in abduction and self-correction by error reduction in induction. We show how Peirce’s logic of science receives support from modern breakthroughs in computational neuroscience, and more specifically from Karl Friston’s statements of active inference and the Free Energy Principle, namely the account of how (...)
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  38.  56
    Risk and Values in Science: A Peircean View.Daniele Chiffi & Ahti-Veikko Pietarinen - 2019 - Axiomathes 29 (4):329-346.
    Scientific evidence and scientific values under risk and uncertainty are strictly connected from the point of view of Peirce’s pragmaticism. In addition, economy and statistics play a key role in both choosing and testing hypotheses. Hence we may show also the connection between the methodology of the economy of research and statistical frequentism, both originating from pragmaticism. The connection is drawn by the regulative principles of synechism, tychism and uberty. These principles are values that have both epistemic and non-epistemic dimension. (...)
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  39.  38
    On the Diagrammatic Representation of Existential Statements with Venn Diagrams.Amirouche Moktefi & Ahti-Veikko Pietarinen - 2015 - Journal of Logic, Language and Information 24 (4):361-374.
    It is of common use in modern Venn diagrams to mark a compartment with a cross to express its non-emptiness. Modern scholars seem to derive this convention from Charles S. Peirce, with the assumption that it was unknown to John Venn. This paper demonstrates that Venn actually introduced several methods to represent existentials but felt uneasy with them. The resistance to formalize existentials was not limited to diagrammatic systems, as George Boole and his followers also failed to provide a satisfactory (...)
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  40.  31
    Exploring the beta quadrant.Ahti-Veikko Pietarinen - 2015 - Synthese 192 (4):941-970.
    The theory of existential graphs, which Peirce ultimately divided into four quadrants , is a rich method of analysis in the philosophy of logic. Its $$\upbeta $$ β -part boasts a diagrammatic theory of quantification, which by 1902 Peirce had used in the logical analysis of natural-language expressions such as complex donkey-type anaphora, quantificational patterns describing new mathematical concepts, and cognitive information processing. In the $$\upbeta $$ β -quadrant, he came close to inventing independence-friendly logic, the idea of which he (...)
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  41. Some Logical Notations for Pragmatic Assertions.Massimiliano Carrara, Daniele Chiffi & Ahti-Veikko Pietarinen - 2020 - Logique Et Analyse 251:297 - 315.
    The pragmatic notion of assertion has an important inferential role in logic. There are also many notational forms to express assertions in logical systems. This paper reviews, compares and analyses languages with signs for assertions, including explicit signs such as Frege’s and Dalla Pozza’s logical systems and implicit signs with no specific sign for assertion, such as Peirce’s algebraic and graphical logics and the recent modification of the latter termed Assertive Graphs. We identify and discuss the main ‘points’ of these (...)
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  42.  22
    Peirce’s Dragon-Head Logic.Minghui Ma & Ahti-Veikko Pietarinen - 2022 - Archive for History of Exact Sciences 76 (3):261-317.
    Peirce wrote in late 1901 a text on formal logic using a special Dragon-Head and Dragon-Tail notation in order to express the relation of logical consequence and its properties. These texts have not been referred to in the literature before. We provide a complete reconstruction and transcription of these previously unpublished sets of manuscript sheets and analyse their main content. In the reconstructed text, Peirce is seen to outline both a general theory of deduction and a general theory of consequence (...)
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  43.  13
    Comentários sobre Hookway,“A Máxima Pragmática ea Prova do Pragmatismo (2): Depois de 1903”.Ahti-Veikko Pietarinen - 2008 - Cognitio 9 (1):85-92.
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  44.  5
    Oikeus itsemääräämiseen.Juhani Pietarinen (ed.) - 1994 - Helsinki: Painatuskeskus.
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  45.  71
    Philosophy and Biodiversity.Markku Oksanen & Juhani Pietarinen (eds.) - 2004 - New York, NY, USA: Cambridge University Press.
    This important collection focuses on the nature and importance of biodiversity. The concept is clarified and its intrinsic and instrumental value are discussed. Even though the term biodiversity was invented in the 1980s to promote the cause of species conservation, discussions on biological diversity go back to Plato. There are many controversies surrounding biodiversity and a few of them are examined here: What is worthy of protection or restoration and what is the acceptable level of costs? Is it permissible to (...)
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  46.  38
    Existential graphs as an instrument of logical analysis: Part I. alpha.Francesco Bellucci & Ahti-Veikko Pietarinen - 2016 - Review of Symbolic Logic 9 (2):209-237.
    Peirce considered the principal business of logic to be the analysis of reasoning. He argued that the diagrammatic system of Existential Graphs, which he had invented in 1896, carries the logical analysis of reasoning to the furthest point possible. The present paper investigates the analytic virtues of the Alpha part of the system, which corresponds to the sentential calculus. We examine Peirce’s proposal that the relation of illation is the primitive relation of logic and defend the view that this idea (...)
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  47.  59
    Conatus as active power in Hobbes.Juhani Pietarinen - 2001 - Hobbes Studies 14 (1):71-82.
    The idea of active power played central role in the 17th Century philosophy and science. The idea is as follows: if not prevented, bodies necessarily do certain things in virtue of their power. This kind of thought naturally arose from what might properly be called the law of persistence, according to which moving bodies continue their motion unchanged if no new external force intervenes.1 What bodies do in virtue of their power was called actions, and in terms of actions such (...)
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  48. Moving pictures of thought II: Graphs, games, and pragmaticism's proof.Ahti-Veikko Pietarinen - 2011 - Semiotica 2011 (186):315-331.
    Peirce believed that his pragmaticism can be conclusively proven. Beginning in 1903, he drafted several attempts, ending by 1908 with a semeiotic proof. Around 1905, he exposes the proof using the theory of Existential Graphs . This paper modernizes the semantics Peirce proposed for EGs in terms of game-theoretic semantics . Peirce's 1905 proof is then reconstructed in three parts, by relating pragmaticism to the GTS conception of meaning, showing that Peirce's proof is an argument for a relational structure of (...)
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  49.  11
    Publish or Peircish.Ahti-Veikko Pietarinen - 2020 - Transactions of the Charles S. Peirce Society 56 (2):261-278.
    Peirce's misfortunes to get some of his most important works published provide an interesting window into publication and editorial practices that prevailed at the turn of the 20th century in the United States. Also, what Peirce had to face appears not that different from what many have experienced in the world of contemporary academic publishing. Peirce's manuscripts were routinely deemed too technical, lengthy, or of limited interest to the general readership and scholars who were not experts of the area. But (...)
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  50.  89
    Simplex sigillum veri: Peano, Frege, and Peirce on the Primitives of Logic.Francesco Bellucci, Amirouche Moktefi & Ahti-Veikko Pietarinen - 2018 - History and Philosophy of Logic 39 (1):80-95.
    We propose a reconstruction of the constellation of problems and philosophical positions on the nature and number of the primitives of logic in four authors of the nineteenth century logical scene: Peano, Padoa, Frege and Peirce. We argue that the proposed reconstruction forces us to recognize that it is in at least four different senses that a notation can be said to be simpler than another, and we trace the origins of these four senses in the writings of these authors. (...)
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