Results for 'Discovery.'

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  1. Hoboken.Discovery Space - 1994 - Science Education 78 (2):137-148.
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  2.  13
    Thomas Nickles.Heuristic Appraisal & Context of Discovery Or Justification - 2006 - In Jutta Schickore & Friedrich Steinle (eds.), Revisiting Discovery and Justification. Springer. pp. 159.
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  3. A Chronology of Nalin Ranasinghe; Forward: To Nalin, My Dazzling Friend / Gwendalin Grewal ; Introduction: To Bet on the Soul / Predrag Cicovacki ; Part I: The Soul in Dialogue. Lanya's Search for Soul / Percy Mark ; Heart to Heart: The Self-Transcending Soul's Desire for the Transcendent / Roger Corriveau ; The Soul of Heloise / Predrag Cicovacki ; Got Soul : Black Women and Intellectualism / Jameliah Inga Shorter-Bourhanou ; The Soul and Ecology / Rebecca Bratten Weiss ; Rousseau's Divine Botany and the Soul / Alexandra Cook ; Diderot on Inconstancy in the Soul / Miran Božovič ; Dialogue in Love as a Constitutive Act of Human Spirit / Alicja Pietras. Part II: The Soul in Reflection. Why Do We Tell Stories in Philosophy? A Circumstantial Proof of the Existence of the Soul / Jure Simoniti ; The Soul of Socrates / Roger Crisp ; Care for the Soul of Plato / Vitomir Mitevski ; Soul, Self, and Immortality / Chris Megone ; Morality, Personality, the Human Soul / Ruben Apressyan ; Strategi. [REVIEW]Wayne Cristaudoappendix: Nalin Ranasinghe'S. Last Written Essay What About the Laestrygonians? The Odyssey'S. Dialectic Of Disaster, Deceit & Discovery - 2021 - In Predrag Cicovacki (ed.), The human soul: essays in honor of Nalin Ranasinghe. Wilmington, Dela.: Vernon Press.
  4.  37
    Aborted discovery: science and creativity in the Third World.Susantha Goonatilake - 1984 - Totowa, N.J.: U.S. distributor, Biblio Distribution Center.
    Study of obstacles to creative thinking in science in developing countries - analyses the history of science in Europe; examines science and technology prior to colonialism, focusing on South Asia, and the spread and dominance of Western physical and social sciences in the Third World; considers the impact of social development and independence on scientific development and dependence, and the social implications of technology transfer, esp. Agricultural technology. Bibliography.
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  5. The Role of Imagination in Social Scientific Discovery: Why Machine Discoverers Will Need Imagination Algorithms.Michael Stuart - 2019 - In Mark Addis, Fernand Gobet & Peter Sozou (eds.), Scientific Discovery in the Social Sciences. Springer Verlag.
    When philosophers discuss the possibility of machines making scientific discoveries, they typically focus on discoveries in physics, biology, chemistry and mathematics. Observing the rapid increase of computer-use in science, however, it becomes natural to ask whether there are any scientific domains out of reach for machine discovery. For example, could machines also make discoveries in qualitative social science? Is there something about humans that makes us uniquely suited to studying humans? Is there something about machines that would bar them from (...)
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  6.  38
    The discovery of evolution.David Young - 1992 - New York: Cambridge University Press, in association with Natural History Museum, London.
    The Discovery of Evolution explains what the theory of evolution is all about by providing a historical narrative of discovery. Some of the major puzzles that confront anyone studying living things are discussed and it details how these were solved from an evolutionary perspective. Beginning with the emergence of the early naturalists in the seventeenth century, the scientific discoveries that led up to and then flowed from Darwin and Wallace's theory of evolution by natural selection are then discussed, and finally (...)
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  7.  36
    The discovery of archaea: from observed anomaly to consequential restructuring of the phylogenetic tree.Michael Fry - 2024 - History and Philosophy of the Life Sciences 46 (2):1-38.
    Observational and experimental discoveries of new factual entities such as objects, systems, or processes, are major contributors to some advances in the life sciences. Yet, whereas discovery of theories was extensively deliberated by philosophers of science, very little philosophical attention was paid to the discovery of factual entities. This paper examines historical and philosophical aspects of the experimental discovery by Carl Woese of archaea, prokaryotes that comprise one of the three principal domains of the phylogenetic tree. Borrowing Kuhn’s terminology, this (...)
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  8.  52
    Scientific Discovery: Computational Explorations of the Creative Processes.Malcolm R. Forster - 1987 - MIT Press (MA).
    Scientific discovery is often regarded as romantic and creative - and hence unanalyzable - whereas the everyday process of verifying discoveries is sober and more suited to analysis. Yet this fascinating exploration of how scientific work proceeds argues that however sudden the moment of discovery may seem, the discovery process can be described and modeled. Using the methods and concepts of contemporary information-processing psychology (or cognitive science) the authors develop a series of artificial-intelligence programs that can simulate the human thought (...)
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  9.  11
    Animalkind: remarkable discoveries about animals and revolutionary new ways to show them compassion.Ingrid Newkirk - 2020 - New York: Simon & Schuster. Edited by Gene Stone.
    From the co-founder and president of PETA, Ingrid Newkirk, and bestselling author Gene Stone comes Animalkind, a book that offers both a tour of the wonderful world of animals and a guide to simple ways in which we can reduce the harm we cause them in our everyday lives.
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  10. The logic of scientific discovery.Karl Raimund Popper - 1934 - New York: Routledge. Edited by Hutchinson Publishing Group.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside The Open Society and Its Enemies as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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  11.  13
    The discovery of synchrony: By means of the projector as a scientific instrument.Seth Barry Watter - 2024 - History of the Human Sciences 37 (2):138-165.
    This article considers the implications for film analysis of the presence or absence of a manual crank. More specifically, it looks at the 16 mm Time and Motion Study Projector as used in behavioral research in the 1960s and 1970s. The controversial concept of ‘interactional synchrony’, or the dance-like coordination of people in conversation, emerged from the use of this hand-turned projector. William S. Condon developed the concept along with the technique of microanalysis. Starting with the projector manufactured by Bell (...)
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  12.  30
    Multiple discoveries, inevitability, and scientific realism.Luca Tambolo & Gustavo Cevolani - 2021 - Studies in History and Philosophy of Science Part A 90 (December 2021):30-38.
    When two or more (groups of) researchers independently investigating the same domain arrive at the same result, a multiple discovery occurs. The pervasiveness of multiple discoveries in science suggests the intuition that they are in some sense inevitable—that one should view them as results that force themselves upon us, so to speak. We argue that, despite the intuitive force of such an “inevitabilist insight,” one should reject it. More specifically, we distinguish two facets of the insight and argue that: (a) (...)
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  13.  59
    Causal Discovery and the Problem of Psychological Interventions.Markus I. Eronen - 2020 - New Ideas in Psychology 59:100785.
    Finding causes is a central goal in psychological research. In this paper, I argue based on the interventionist approach to causal discovery that the search for psychological causes faces great obstacles. Psychological interventions are likely to be fat-handed: they change several variables simultaneously, and it is not known to what extent such interventions give leverage for causal inference. Moreover, due to problems of measurement, the degree to which an intervention was fat-handed, or more generally, what the intervention in fact did, (...)
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  14.  34
    Scientific Discovery: Logic and Tinkering.Aharon Kantorovich - 1993 - State University of New York Press.
    The main message of this volume is that the creative process of discovery is not a purely rational enterprise in the traditional sense which equates rationality with logical reasoning, yet it is a manifestation of a universal phenomenon ...
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  15.  80
    Discovery without a ‘logic’ would be a miracle.Benjamin C. Jantzen - 2016 - Synthese 193 (10).
    Scientists routinely solve the problem of supplementing one’s store of variables with new theoretical posits that can explain the previously inexplicable. The banality of success at this task obscures a remarkable fact. Generating hypotheses that contain novel variables and accurately project over a limited amount of additional data is so difficult—the space of possibilities so vast—that succeeding through guesswork is overwhelmingly unlikely despite a very large number of attempts. And yet scientists do generate hypotheses of this sort in very few (...)
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  16.  92
    Discovery and explanation in biology and medicine.Kenneth F. Schaffner - 1993 - Chicago: University of Chicago Press.
  17. Higgs Discovery and the Look Elsewhere Effect.Richard Dawid - 2015 - Philosophy of Science 82 (1):76-96.
    The discovery of the Higgs particle required a signal of 5σ significance. The rigid application of that condition is a convention that disregards more specific aspects of the given experiment. In particular, it does not account for the characteristics of the look elsewhere effect in the individual experimental context. The paper relates this aspect of data analysis to the question as to what extent theoretical reasoning should be admitted to play a role in the assessment of the significance of empirical (...)
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  18.  15
    The Discovery of Things: Aristotle's Categories and Their Context.Wolfgang-Rainer Mann - 2020 - Princeton University Press.
    Aristotle's Categories can easily seem to be a statement of a naïve, pre-philosophical ontology, centered around ordinary items. Wolfgang-Rainer Mann argues that the treatise, in fact, presents a revolutionary metaphysical picture, one Aristotle arrives at by (implicitly) criticizing Plato and Plato's strange counterparts, the "Late-Learners" of the Sophist. As Mann shows, the Categories reflects Aristotle's discovery that ordinary items are things (objects with properties). Put most starkly, Mann contends that there were no things before Aristotle. The author's argument consists of (...)
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  19.  59
    The Discovery of the Mind: The Greek Origins of European Thought.Bruno Snell - 2013 - Harper & Row.
    European thought begins with the Greeks. Scientific and philosophic thinking--the pursuit of truth and the grasping of unchanging principles of life--is a historical development, an achievement; and, as Bruno Snell writes in The Discovery of the Mind, nothing less than a revolution. The Greeks did not take mental resources already at their disposal and merely map out new subjects for discussion and investigation. In poetry, drama, and philosophy they in fact discovered the human mind. The stages in man's gradual understanding (...)
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  20.  85
    Discovery and justification.Carl R. Kordig - 1978 - Philosophy of Science 45 (1):110-117.
    The distinction between discovery and justification is ambiguous. This obscures the debate over a logic of discovery. For the debate presupposes the distinction. Real discoveries are well established. What is well established is justified. The proper distinctions are three: initial thinking, plausibility, and acceptability. Logic is not essential to initial thinking. We do not need good supporting reasons to initially think of an hypothesis. Initial thoughts need be neither plausible nor acceptable. Logic is essential, as Hanson noted, to both plausibility (...)
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  21. The Discovery of the Expanding Universe: Philosophical and Historical Dimensions.Patrick M. Duerr & Abigail Holmes - manuscript
    What constitutes a scientific discovery? What role do discoveries play in science, its dynamics and social practices? Must every discovery be attributed to an individual discoverer (or a small number of discoverers)? The paper explores these questions by first critically examining extant philosophical explications of scientific discovery—the models of scientific discovery, propounded by Kuhn, McArthur, Hudson, and Schindler. As a simple, natural and powerful alternative, we proffer the “change-driver model”: in a nutshell, it takes discoveries to be cognitive scientific results (...)
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  22.  20
    Scientific Discovery: Case Studies.Thomas Nickles - 1980 - Taylor & Francis.
    The history of science is articulated by moments of discovery. Yet, these 'moments' are not simple or isolated events in science. Just as a scientific discovery illuminates our understanding of nature or of society, and reveals new connections among phenomena, so too does the history of scientific activity and the analysis of scientific reasoning illuminate the processes which give rise to moments of discovery and the complex network of consequences which follow upon such moments. Understanding discovery has not been, until (...)
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  23. Justification, discovery and the naturalizing of epistemology.Harvey Siegel - 1980 - Philosophy of Science 47 (2):297-321.
    Reichenbach's well-known distinction between the context of discovery and the context of justification has recently come under attack from several quarters. In this paper I attempt to reconsider the distinction and evaluate various recent criticisms of it. These criticisms fall into two main groups: those which directly challenge Reichenbach's distinction; and those which (I argue) indirectly but no less seriously challenge that distinction by rejecting the related distinction between psychology and epistemology, and defending the "naturalizing" of epistemology. I argue that (...)
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  24.  18
    Chaperone discovery.Shu Quan & James Ca Bardwell - 2012 - Bioessays 34 (11):973-981.
    Molecular chaperones assist de novo protein folding and facilitate the refolding of stress‐denatured proteins. The molecular chaperone concept was coined nearly 35 years ago, and since then, tremendous strides have been made in understanding how these factors support protein folding. Here, we focus on how various chaperone proteins were first identified to play roles in protein folding. Examples are used to illustrate traditional routes of chaperone discovery and point out their advantages and limitations. Recent advances, including the development of folding (...)
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  25. Discovery and confirmation in evolutionary psychology.Edouard Machery - unknown - In Jesse J. Prinz (ed.), The Oxford Handbook of Philosophy of Psychology. Oxford University Press.
    The defining insight of evolutionary psychology consists of bringing considerations drawn from evolutionary biology to bear on the study of human psychology. So characterized, evolutionary psychology encompasses a large range of views about the nature and evolution of human psychology as well as diverging opinions about the proper method for studying them.1 In this article, I propose to clarify and evaluate various aspects of evolutionary psychologists’ methodology, with a special focus on their heuristics of discovery—i.e., their methods for developing plausible (...)
     
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  26.  51
    Justification, Discovery, Reason & Argument.Larry Wright - 2001 - Argumentation 15 (1):97-104.
    In distinguishing justification from discovery, the logical empiricists hoped to avoid confusing causal matters with normative ones. Exaggerating the virtue of this distinction, however, has disguised from us important features of the concept of a reason as it functions in human practice. Surfacing those features gives some insight into reasoning and argument.
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  27.  2
    On Discovery.Polydore Vergil & Brian P. Copenhaver - 2002 - Harvard University Press.
    On Discovery became a key reference for anyone who wanted to know about "firsts" in theology, philosophy, science, technology, literature, language, law, material culture, and other fields. Polydore took his information from dozens of Greek, Roman, biblical, and Patristic authorities. His main point was to show that many Greek and Roman claims for discovery were false and that ancient Jews or other Asian peoples had priority.
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  28.  58
    Scientific Discovery Reloaded.Emiliano Ippoliti - 2020 - Topoi 39 (4):847-856.
    The way scientific discovery has been conceptualized has changed drastically in the last few decades: its relation to logic, inference, methods, and evolution has been deeply reloaded. The ‘philosophical matrix’ moulded by logical empiricism and analytical tradition has been challenged by the ‘friends of discovery’, who opened up the way to a rational investigation of discovery. This has produced not only new theories of discovery, but also new ways of practicing it in a rational and more systematic way. Ampliative rules, (...)
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  29. Discovery and Explanation in Biology and Medicine.Kenneth F. Schaffner - 1995 - Journal of the History of Biology 28 (1):172-174.
     
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  30.  24
    The discovery of time.Stephen Toulmin - 1965 - New York: Octagon Books. Edited by June Goodfield.
    "A discussion of the historical development of our ideas of time as they relate to nature, human nature and society. . . . The excellence of The Discovery of Time is unquestionable."--Martin Lebowitz, The Kenyon Review.
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  31. Discovery and Explanation in Biology and Medicine.Kenneth F. Schaffner - 1995 - British Journal for the Philosophy of Science 46 (4):621-623.
     
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  32. The discovery of my completeness proofs.Leon Henkin - 1996 - Bulletin of Symbolic Logic 2 (2):127-158.
    §1. Introduction. This paper deals with aspects of my doctoral dissertation which contributed to the early development of model theory. What was of use to later workers was less the results of my thesis, than the method by which I proved the completeness of first-order logic—a result established by Kurt Gödel in his doctoral thesis 18 years before.The ideas that fed my discovery of this proof were mostly those I found in the teachings and writings of Alonzo Church. This may (...)
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  33. Discovery, theory change and structural realism.Daniel James McArthur - 2011 - Synthese 179 (3):361 - 376.
    In this paper I consider two accounts of scientific discovery, Robert Hudson's and Peter Achinstein's. I assess their relative success and I show that while both approaches are similar in promising ways, and address experimental discoveries well, they could address the concerns of the discovery sceptic more explicitly than they do. I also explore the implications of their inability to address purely theoretical discoveries, such as those often made in mathematical physics. I do so by showing that extending Hudson's or (...)
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  34. The discovery of the mind: in Greek philosophy and literature.Bruno Snell - 1960 - New York: Dover Publications.
    German classicist's monumental study of the origins of European thought in Greek literature and philosophy. Brilliant, widely influential. Includes "Homer's View of Man," "The Olympian Gods," "The Rise of the Individual in the Early Greek Lyric," "Pindar's Hymn to Zeus," "Myth and Reality in Greek Tragedy," and "Aristophanes and Aesthetic Criticism.".
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  35. Discovery, Invention and Realism: Gödel and others on the Reality of Concepts.Michael Detlefsen - 2011 - In John Polkinghorne (ed.), Mathematics and its Significance. Oxford University Press. pp. 73-96.
    The general question considered is whether and to what extent there are features of our mathematical knowledge that support a realist attitude towards mathematics. I consider, in particular, reasoning from claims such as that mathematicians believe their reasoning to be part of a process of discovery (and not of mere invention), to the view that mathematical entities exist in some mind-independent way although our minds have epistemic access to them.
     
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  36. Authenticity and Enhancement: Going Beyond Self-Discovery/Self-Creation Dichotomy.Daniel Nica - 2019 - Revue Roumaine de Philosophie 64 (2):321-329.
    The purpose of my paper is to challenge the binary classification of authenticity, which is currently employed in the bioethical debate on enhancement technologies. According to the standard dichotomy, there is a stark opposition between the self-discovery model, which depicts the self as a substantial and original inwardness, and the self-creation model, which assumes that the self is an open project, that has to be constituted by one’s free actions. My claim is that the so-called self-creation model actually conflates two (...)
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  37.  68
    The Logic of Mathematical Discovery vs. the Logical Structure of Mathematics.Solomon Feferman - 1978 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1978:309 - 327.
  38.  54
    Machine discovery.Herbert Simon - 1995 - Foundations of Science 1 (2):171-200.
    Human and machine discovery are gradual problem-solving processes of searching large problem spaces for incompletely defined goal objects. Research on problem solving has usually focused on search of an instance space (empirical exploration) and a hypothesis space (generation of theories). In scientific discovery, search must often extend to other spaces as well: spaces of possible problems, of new or improved scientific instruments, of new problem representations, of new concepts, and others. This paper focuses especially on the processes for finding new (...)
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  39. Automated discovery systems and scientific realism.Piotr Giza - 2002 - Minds and Machines 12 (1):105-117.
    In the paper I explore the relations between a relatively new and quickly expanding branch of artificial intelligence –- the automated discovery systems –- and some new views advanced in the old debate over scientific realism. I focus my attention on one such system, GELL-MANN, designed in 1990 at Wichita State University. The program's task was to analyze elementary particle data available in 1964 and formulate an hypothesis (or hypotheses) about a `hidden', more simple structure of matter, or to put (...)
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  40.  27
    The voyage of discovery: a historical introduction to philosophy.William F. Lawhead - 2015 - Australia: Cengage Learning.
    Highly praised for its clarity and rich exposition, this history of philosophy text illustrates philosophy as a process and not just a collection of opinions or conclusions. Rather than simply reporting the positions of a given philosopher, Lawhead's prose assists students in retracing the thinker's intellectual journey. Students are invited to engage with each philosopher's intellectual process, drawing connections with their own lives and cultures. Metaphors, analogies, vivid images, concrete examples, common experiences, and diagrams demonstrate the concrete relevance of abstract (...)
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  41.  30
    Concept Discovery in a Scientific Domain.Kevin Dunbar - 1993 - Cognitive Science 17 (3):397-434.
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  42.  61
    Scientific Discovery: Computational Explorations of the Creative Process. Pat Langley, Herbert A. Simon, Gary L. Bradshaw, Jan M. Zytkow.Malcolm R. Forster - 1990 - Philosophy of Science 57 (2):336-338.
  43.  24
    The Discovery of Chinese Logic.Joachim Kurtz - 2011 - Brill.
    First encounters : Jesuit logica in the late Ming and early Qing -- Haphazard overtures : logic in nineteenth-century Protestant writings -- Great expectations : Yan Fu and the discovery of European logic -- Spreading the word : logic in late Qing education and popular discourse -- Heritage unearthed : the discovery of Chinese logic -- Textbooks on logic adapted from Japanese, 1902-1911 -- Logical terms in early-twentieth-century textbooks.
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  44.  41
    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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  45.  52
    Revisiting Discovery and Justification: Historical and Philosophical Perspectives on the Context Distinction.Jutta Schickore & Friedrich Steinle (eds.) - 2006 - Springer.
    This volume thus clears the ground for the productive and fruitful integration of these new developments into philosophy of science.
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  46.  75
    Discovery and ampliative inference.James Blachowicz - 1989 - Philosophy of Science 56 (3):438-462.
    An inference to a new explanation may be both logically non-ampliative and epistemically ampliative. Included among the premises of the latter form is the explanadum--a unique premise which is capable of embodying what we do not know about the matter in question, as well as legitimate aspects of what we do know. This double status points to a resolution of the Meno paradox. Ampliative inference of this sort, it is argued, has much in common with Nickles' idea of discoverability and, (...)
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  47. Scientific Discovery Through Fictionally Modelling Reality.Fiora Salis - 2018 - Topoi 39 (4):927-937.
    How do scientific models represent in a way that enables us to discover new truths about reality and draw inferences about it? Contemporary accounts of scientific discovery answer this question by focusing on the cognitive mechanisms involved in the generation of new ideas and concepts in terms of a special sort of reasoning—or model-based reasoning—involving imagery. Alternatively, I argue that answering this question requires that we recognise the crucial role of the propositional imagination in the construction and development of models (...)
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  48.  18
    Discovery, pursuit, and justification.Allan Franklin - 1993 - Perspectives on Science 1 (2):252-284.
    In this article I suggest a tripartite classification of scientific activity; discovery, pursuit, and justification. I believe that such a classification can give us a more adequate description of scientific practice, help illuminate the various roles that evidence plays in science, and may also help to partially resolve differences between “constructivist” and “epistemologist” views of science. I argue that although factors suggested by the constructivists such as career goals, professional interests, utility for future practice, and agreement with existing commitments do (...)
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  49. Collective Discovery Events: Web-based Mathematical Problem-solving with Codelets.Ioannis M. Vandoulakis, Harry Foundalis, Maricarmen Martínez & Petros Stefaneas - 2014 - In Tarek R. Besold, Marco Schorlemmer & Alan Smaill (eds.), Computational Creativity Research: Towards Creative Machines. Springer, Atlantis Thinking Machines (Book 7), Atlantis. pp. 371-392.
    While collaboration has always played an important role in many cases of discovery and creation, recent developments such as the web facilitate and encourage collaboration at scales never seen before, even in areas such as mathematics, where contributions by single individuals have historically been the norm. This new scenario poses a challenge at the theoretical level, as it brings out the importance of various issues which, as of yet, have not been sufficiently central to the study of problem-solving, discovery, and (...)
     
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  50.  24
    Scientific discovery.Pat Langley, Herbert A. Simon, Gary L. Bradshaw & Jan M. Zytkow - 1993 - In Alvin Goldman (ed.), Readings in Philosophy and Cognitive Science. Cambridge: MIT Press.
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