Results for ' SCIENTIFIC DEMONSTRATION'

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  1.  37
    Scientific demonstration in Aristotle, Theoria, and Reductionism.Edward M. Engelmann - 2007 - Review of Metaphysics 60 (3):479-506.
    This article presents Aristotelian scientific demonstration as a method for attaining intuitive theoria of essential natures. Such insight is attained through the discursive demonstrative syllogism. Science is understood as knowledge of causes through their effects, as opposed to an operative knowledge of the consequences of causes. This understanding is thus counter-reductionist.
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  2.  59
    Wolff and Kant on Scientific Demonstration and Mechanical Explanation.Hein van den Berg - 2013 - Archiv für Geschichte der Philosophie 95 (2):178-205.
    This paper analyzes Immanuel Kant’s views on mechanical explanation on the basis of Christian Wolff’s idea of scientific demonstration. Kant takes mechanical explanations to explain properties of wholes in terms of their parts. I reconstruct the nature of such explanations by showing how part-whole conceptualizations in Wolff’s logic and metaphysics shape the ideal of a proper and explanatory scientific demonstration. This logico-philosophical background elucidates why Kant construes mechanical explanations as ideal explanations of nature.
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  3. Aristotle's Scientific Demonstrations as Expositions of Essence.Richard Tierney - 2001 - Oxford Studies in Ancient Philosophy 20:149-170.
  4. Aristotle's Scientific Demonstrations as Expositions of Essence.Richard Tierney - 2001 - In David Sedley (ed.), Oxford Studies in Ancient Philosophy: Volume Xx Summer 2001. Clarendon Press.
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  5.  18
    A Aristotle’s Theory of Scientific Demonstration in Posterior Analytics 1.2-9 and 1.13.Davi Bastos - 2020 - Archai: Revista de Estudos Sobre as Origens Do Pensamento Ocidental 30:03021-03021.
    I defend an interpretation of Aristotle’s _Posterior Analytics _Book I which distinguishes between two projects in different passages of that work: to explain what a given science is and to explain what properly scientific knowledge is. I present Aristotle’s theory in answer to ii, with special attention to his definition of scientific knowledge in 71b9-12 and showing how this is developed on chapters 1.2-9 and 1.13 into a solid Theory of Scientific Demonstration. The main point of (...)
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  6. Aristotle’s Syllogistic, Modern Deductive Logic, and Scientific Demonstration.Edward M. Engelmann - 2007 - American Catholic Philosophical Quarterly 81 (4):535-552.
    This article investigates the nature of Aristotelian syllogistics and shows that the categorical syllogism is fundamentally about showing the connection, in the premises of the syllogism, between the major and minor terms as stated in the conclusion. It discusses how this is important for the use of the syllogism in scientific demonstration. The article then examines modern deductive logic with an eye to they way in which it contrasts with Aristotelian syllogistics. It shows howmodern logic is about making (...)
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  7.  17
    Aristotle’s Syllogystic, Modern Deductive Logic, and Scientific Demonstration.Edward M. Engelmann - 2007 - American Catholic Philosophical Quarterly 81 (4):535-552.
    This article investigates the nature of Aristotelian syllogistics and shows that the categorical syllogism is fundamentally about showing the connection, in the premises of the syllogism, between the major and minor terms as stated in the conclusion. It discusses how this is important for the use of the syllogism in scientific demonstration. The article then examines modern deductive logic with an eye to they way in which it contrasts with Aristotelian syllogistics. It shows howmodern logic is about making (...)
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  8.  27
    Demonstration and Scientific Knowledge in William of Ockham: A Translation of Summa Logicae Iii-Ii: De Syllogismo Demonstrativo, and Selections From the Prologue to the Ordinatio.John Longeway - 2007 - University of Notre Dame Press.
    This book makes available for the first time an English translation of William of Ockham's work on Aristotle's _Posterior Analytics_, which contains his theory of scientific demonstration and philosophy of science. John Lee Longeway also includes an extensive commentary and a detailed history of the intellectual background to Ockham's work. He puts Ockham into context by providing a scholarly account of the reception and study of the _Posterior Analytics_ in the Latin Middle Ages, with a detailed discussion of (...)
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  9.  56
    Demonstration and Scientific Knowledge in William of Ockham: A Translation of Summa Logicae III-II: De Syllogismo Demonstrativo, and Selections from the Prologue to the Ordinatio (review).Alexander W. Hall - 2008 - Journal of the History of Philosophy 46 (1):170-172.
    Alexander W. Hall - Demonstration and Scientific Knowledge in William of Ockham: A Translation of Summa Logicae III-II: De Syllogismo Demonstrativo, and Selections from the Prologue to the Ordinatio - Journal of the History of Philosophy 46:1 Journal of the History of Philosophy 46.1 170-172 Muse Search Journals This Journal Contents Reviewed by Alexander W. Hall Clayton State University John Lee Longeway, translator. Demonstration and Scientific Knowledge in William of Ockham: A Translation of Summa Logicae III–II: (...)
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  10.  9
    XVI. Demonstration of Essence: Another Form of Scientific Proof?Richard D. McKirahan - 1992 - In Principles and Proofs: Aristotle’s Theory of Demonstrative Science. Princeton University Press. pp. 198-208.
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  11.  73
    Mathematical demonstration and deduction in Descartes's early methodological and scientific writings.Doren A. Recker - 1993 - Journal of the History of Philosophy 31 (2):223-244.
  12.  25
    Demonstration and Scientific Knowledge in William of Ockham.Steven Marrone - 2008 - Early Science and Medicine 13 (5):516-519.
  13.  33
    The rules of scientific discovery demonstrated from examples of the physics of elementary particles.Herbert Pietschmann - 1978 - Foundations of Physics 8 (11-12):905-919.
    The rules of scientific discovery as formulated by K. Popper are briefly reviewed. Historical examples such as the prediction of planets and outstanding events in elementary particle physics are used to show how these rules are applied by the working physicist. Thus these rules are shown to be actual tools rather than abstract norms in the development of physics.
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  14.  20
    What Science Fiction Can Demonstrate About Novelty in the Context of Discovery and Scientific Creativity.Clarissa Ai Ling Lee - 2019 - Foundations of Science 24 (4):705-725.
    Four instances of how science fiction contributes to the elucidation of novelty in the context of discovery are considered by extending existing discussions on temporal and use-novelty. In the first instance, science fiction takes an already well-known theory and produces its own re-interpretation; in the second instance, the scientific account is usually straightforward and whatever novelty that may occur would be more along the lines of how the science is deployed to extra-scientific matters; in the third instance, science (...)
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  15.  54
    The scientific Buddha: his short and happy life.Donald S. Lopez - 2012 - New Haven: Yale University Press.
    This book tells the story of the Scientific Buddha, "born" in Europe in the 1800s but commonly confused with the Buddha born in India 2,500 years ago. The Scientific Buddha was sent into battle against Christian missionaries, who were proclaiming across Asia that Buddhism was a form of superstition. He proved the missionaries wrong, teaching a dharma that was in harmony with modern science. And so his influence continues. Today his teaching of "mindfulness" is heralded as the cure (...)
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  16.  8
    Teaching Scientific Integrity in Academia: What and How Students Want to Learn?N. Sira, M. Decker, C. Lemke, A. Winkens, C. Leicht-Scholten & D. Groß - forthcoming - Journal of Academic Ethics:1-20.
    Training in scientific integrity continues to be an important topic in universities and other research institutions. Its main goal is to prevent scientific misconduct and promote good scientific practice. However, there is still no consensus on how scientific integrity should be taught. Moreover, the perspective of those who receive such training is often underrepresented. Yet it is precisely their interests and needs that must be considered when developing educational programs. Against this backdrop, we conducted a mixed-methods (...)
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  17. Deep Learning Opacity in Scientific Discovery.Eamon Duede - 2023 - Philosophy of Science 90 (5):1089 - 1099.
    Philosophers have recently focused on critical, epistemological challenges that arise from the opacity of deep neural networks. One might conclude from this literature that doing good science with opaque models is exceptionally challenging, if not impossible. Yet, this is hard to square with the recent boom in optimism for AI in science alongside a flood of recent scientific breakthroughs driven by AI methods. In this paper, I argue that the disconnect between philosophical pessimism and scientific optimism is driven (...)
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  18. Comprehension, Demonstration, and Accuracy in Aristotle.Breno Zuppolini - 2020 - Journal of the History of Philosophy 58 (1):29-48.
    according to aristotle's posterior analytics, scientific expertise is composed of two different cognitive dispositions. Some propositions in the domain can be scientifically explained, which means that they are known by "demonstration", a deductive argument in which the premises are explanatory of the conclusion. Thus, the kind of cognition that apprehends those propositions is called "demonstrative knowledge".1 However, not all propositions in a scientific domain are demonstrable. Demonstrations are ultimately based on indemonstrable principles, whose knowledge is called "comprehension".2 (...)
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  19.  9
    John Lee Longeway. Demonstration and Scientific Knowledge in William of Ockham: A Translation of Summa Logicae III-II: De Syllogismo Demonstrativo, and Selections from the Prologue to the Ordinatio. xx + 433 pp., tables, apps., bibl., index. Notre Dame, Ind.: University of Notre Dame Press, 2007. $58. [REVIEW]Anne Davenport - 2008 - Isis 99 (4):827-828.
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  20.  88
    Aristotle on Scientific Knowledge - R. D. McKirihan: Principles and Proofs: Aristotle's Theory of Demonstrative Science. Pp. xiv + 340. Princeton, NJ: Princeton University Press, 1992. Cased, £35. [REVIEW]J. D. G. Evans - 1994 - The Classical Review 44 (1):84-85.
  21.  49
    Scientific Pluralism.Stephen H. Kellert, Helen Longino & C. Kenneth Waters (eds.) - 2006 - University of Minnesota Press.
    Scientific pluralism is an issue at the forefront of philosophy of science. This landmark work addresses the question, Can pluralism be advanced as a general, philosophical interpretation of science? Scientific Pluralism demonstrates the viability of the view that some phenomena require multiple accounts. Pluralists observe that scientists present various—sometimes even incompatible—models of the world and argue that this is due to the complexity of the world and representational limitations. Including investigations in biology, physics, economics, psychology, and mathematics, this (...)
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  22. Contemporary Scientific Realism: The Challenge From the History of Science.Timothy D. Lyons & Peter Vickers (eds.) - 2021 - New York, NY: Oxford University Press.
    Scientific realists claim we can justifiably believe that science is getting at the truth. But they have long faced historical challenges: various episodes across history appear to demonstrate that even strongly supported scientific theories can be overturned and left behind. In response, realists have developed new positions and arguments. As a result of specific challenges from the history of science, and realist responses, we find ourselves with an ever increasing data-set bearing on the (possible) relationship between science and (...)
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  23. Scientific Conclusions Need Not Be Accurate, Justified, or Believed by their Authors.Haixin Dang & Liam Kofi Bright - 2021 - Synthese 199:8187–8203.
    We argue that the main results of scientific papers may appropriately be published even if they are false, unjustified, and not believed to be true or justified by their author. To defend this claim we draw upon the literature studying the norms of assertion, and consider how they would apply if one attempted to hold claims made in scientific papers to their strictures, as assertions and discovery claims in scientific papers seem naturally analogous. We first use a (...)
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  24.  43
    Scientific societies and whistleblowers: The relationship between the community and the individual.Diane M. McKnight - 1998 - Science and Engineering Ethics 4 (1):97-113.
    Formalizing shared ethical standards is an activity of scientific societies designed to achieve a collective goal of promoting ethical conduct. A scientist who is faced with the choice of becoming a “whistleblower” by exposing misconduct does so in the context of these ethical standards. Examination of ethics policies of scientific societies which are members of the Council of Scientific Society Presidents (CSSP) shows a breadth of purpose and scope in these policies. Among the CSSP member societies, some (...)
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  25.  5
    Hermeneutic Realism: Reality Within Scientific Inquiry.Dimitri Ginev - 2016 - Cham: Imprint: Springer.
    This study recapitulates basic developments in the tradition of hermeneutic and phenomenological studies of science. It focuses on the ways in which scientific research is committed to the universe of interpretative phenomena. It treats scientific research by addressing its characteristic hermeneutic situations, and uses the following basic argument in this treatment: By demonstrating that science's epistemological identity is not to be spelled out in terms of objectivism, mathematical essentialism, representationalism, and foundationalism, one undermines scientism without succumbing scientific (...)
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  26. The Scientific Consensus on Climate Change: How Do We Know We’re Not Wrong?Naomi Oreskes - 2018 - In Elisabeth A. Lloyd & Eric Winsberg (eds.), Climate Modelling: Philosophical and Conceptual Issues. Springer Verlag. pp. 31-64.
    In 1995, the Intergovernmental Panel on Climate Change announced that anthropogenic climate change had become discernible. Since then, numerous independent studies have affirmed that anthropogenic climate change is underway, and the meta-conclusion that there is a broad expert consensus on this point. It has also been demonstrated that most of the challenges to this claim come from interested parties outside the scientific community. But even if we allow that the challenges to climate science are politically or economically motivated, it (...)
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  27.  26
    Representations of Scientific Rationality: Contemporary Formal Philosophy of Science in Spain.Andoni Ibarra & Thomas Mormann - 1997 - Rodopi.
    Contents: Preface. Introduction. J. ECHEVERRIA, A. IBARRA and T. MORMANN: The Long and Winding Road to the Philosophy of Science in Spain. REPRESENTATION AND MEASUREMENT. A. IBARRA and T. MORMANN: Theories as Representations. J. GARRIDO GARRIDO: The Justification of Measurement. O. FERNÁNDEZ PRAT and D. QUESADA: Spatial Representations and Their Physical Content. J.A. DIEZ CALZADA: The Theory-Net of Interval Measurement Theory. TRUTH, RATIONALITY, AND METHOD. J.C. GARCÍA-BERMEJO OCHOA: Realism and Truth Approximation in Economic Theory. W.J. GONZALEZ: Rationality in Economics and (...)
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  28. Demonstrative Induction and the Skeleton of Inference.P. D. Magnus - 2008 - International Studies in the Philosophy of Science 22 (3):303-315.
    It has been common wisdom for centuries that scientific inference cannot be deductive; if it is inference at all, it must be a distinctive kind of inductive inference. According to demonstrative theories of induction, however, important scientific inferences are not inductive in the sense of requiring ampliative inference rules at all. Rather, they are deductive inferences with sufficiently strong premises. General considerations about inferences suffice to show that there is no difference in justification between an inference construed demonstratively (...)
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  29. Scientific realism in the age of string theory.Richard Dawid - 2007 - Physics and Philosophy.
    String theory currently is the only viable candidate for a unified description of all known natural forces. This article tries to demonstrate that the fundamental structural and methodological differences that set string theory apart from other physical theories have important philosophical consequences. Focussing on implications for the realism debate in philosophy of science, it is argued that both poles of that debate face new problems in the context of string theory. On the one hand, the claim of underdetermination of (...) theory by the available empirical data, which is a pivotal element of empiricism, loses much of its plausibility. On the other hand, the dissolution of any meaningful notion of an external ontological object destroys the basis for conventional versions of scientific realism. String theory seems to suggest an intermediate position akin to Structural Realism that is based on a newly emerging principle, to be called the principle of theoretical uniqueness. (shrink)
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  30. Aristotle on multiple demonstration.Elena Comay del Junco - 2019 - British Journal for the History of Philosophy 27 (5):902-920.
    How many scientific demonstrations can a single phenomenon have? This paper argues that, according to Aristotle's theory of scientific knowledge as laid out in the Posterior Analytics, a single conclusion may be demonstrated via more than one explanatory middle term. I also argue that this model of multiple demonstration is put into practice in the biological writings. This paper thereby accomplishes two related goals: it clarifies certain relatively obscure passages of the Posterior Analytics and uses them to (...)
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  31. Isaac Asimov’s sci-fi novella “Profession” versus professionalism: Reflections on the (missing) scientific revolutions in the 21th century.Vasil Penchev - 2024 - Philosophy of Science eJournal (Elsevier: SSRN) 17 (42):1-38.
    This is a partly provocative essay edited as a humanitarian study in philosophy of science and social philosophy. The starting point is Isaac Asimov’s famous sci-fi novella “Profession” (1957) to be “back” extrapolated to today’s relation between Thomas Kuhn’s “normal science” and “scientific revolutions” (1962). The latter should be accomplished by Asimov’s main personage George Platen’s ilk (called “feeble minded” in the novella) versus the “burned minded” professionals able only to “normal science”. Francis Fukuyama’s “end of history” in post-Hegelian (...)
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  32.  19
    Aristotle's Theory of Demonstration.Robin Smith - 2009 - In Georgios Anagnostopoulos (ed.), A Companion to Aristotle. Oxford, UK: Wiley‐Blackwell. pp. 51–65.
    This chapter contains sections titled: Necessity and Predication “Through Itself” Demonstrations, Universals, and the Objects of Scientific Knowledge The Route to the Principles Axioms, Common Principles, and Self‐evidence Demonstration and Analysis Bibliography.
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  33.  93
    The methodology of scientific research programmes.Imre Lakatos - 1978 - New York: Cambridge University Press.
    Imre Lakatos' philosophical and scientific papers are published here in two volumes. Volume I brings together his very influential but scattered papers on the philosophy of the physical sciences, and includes one important unpublished essay on the effect of Newton's scientific achievement. Volume II presents his work on the philosophy of mathematics (much of it unpublished), together with some critical essays on contemporary philosophers of science and some famous polemical writings on political and educational issues. Imre Lakatos had (...)
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  34.  99
    Scientific Method: A Historical and Philosophical Introduction.Barry Gower - 1996 - New York: Routledge.
    The central theme running throughout this outstanding new survey is the nature of the philosophical debate created by modern science's foundation in experimental and mathematical method. More recently, recognition that reasoning in science is probabilistic generated intense debate about whether and how it should be constrained so as to ensure the practical certainty of the conclusions drawn. These debates brought to light issues of a philosophical nature which form the core of many scientific controversies today. _Scientific Method: A Historical (...)
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  35.  33
    Naturalism Beyond the Limits of Science: How Scientific Methodology Can and Should Shape Philosophical Theorizing.Nina Emery - 2023 - New York, US: Oxford University Press.
    Philosophers and scientists both ask questions about what the world is like. How do these fields interact with one another? How should they? Naturalism Beyond the Limits of Science investigates an approach to these questions called methodological naturalism. According to methodological naturalism, when coming up with theories about what the world is like, philosophers should, whenever possible, make use of the same methodology that is deployed by scientists. Although many contemporary philosophers have implicit commitments that lead straightforwardly to methodological naturalism, (...)
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  36.  23
    Scientific Variables.Benjamin C. Jantzen - 2021 - Philosophies 6 (4):103.
    Despite their centrality to the scientific enterprise, both the nature of scientific variables and their relation to inductive inference remain obscure. I suggest that scientific variables should be viewed as equivalence classes of sets of physical states mapped to representations (often real numbers) in a structure preserving fashion, and argue that most scientific variables introduced to expand the degrees of freedom in terms of which we describe the world can be seen as products of an algorithmic (...)
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  37.  38
    Scientific Method: A Historical and Philosophical Introduction.Barry Gower - 1996 - New York: Routledge.
    The central theme running throughout this outstanding new survey is the nature of the philosophical debate created by modern science's foundation in experimental and mathematical method. More recently, recognition that reasoning in science is probabilistic generated intense debate about whether and how it should be constrained so as to ensure the practical certainty of the conclusions drawn. These debates brought to light issues of a philosophical nature which form the core of many scientific controversies today. _Scientific Method: A Historical (...)
  38.  69
    A Scientific Metaphysics and Ockham’s Razor.Bruce Long - 2019 - Axiomathes (5):1-31.
    I argue that although Ockham’s Razor (OR) has its origins in a-priorist ontological mandates according to the purposes of natural theology and natural philosophy as influenced by it, the principle has taken on significant empirical and contingent materialist connotations and conceptual content since the scientific revolution. I briefly discuss the pluralism of the concept of OR historically and in contemporary science and philosophy. I then attempt to align scientific metaphysics with contemporary conceptions of OR, and to demonstrate that (...)
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  39. Scientific Realism without Rigid Designation in Kant's Analogies.David Landy - 2016 - Kant E-Prints 11 (2):70-89.
    In Kant, Science, and Human Nature, Robert Hanna argues against a version of scientific realism founded on the Kripke/Putnam theory of reference, and defends a Kant-inspired manifest realism in its place. I reject Kriple/Putnam for different reasons than Hanna does, and argue that what should replace it is not manifest realism, but Kant‘s own scientific realism, which rests on a radically different theory of reference. Kant holds that we picture manifest objects by uniting manifolds of sensation using concepts-qua-inferential-rules. (...)
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  40.  87
    Demonstration by simulation: The philosophical significance of experiment in helmholtz's theory of perception.Patrick Joseph McDonald - 2003 - Perspectives on Science 11 (2):170-207.
    : Understanding Helmholtz's philosophy of science requires attention to his experimental practice. I sketch out such a project by showing how experiment shapes his theory of perception in three ways. One, the theory emerged out of empirical and experimental research. Two, the concept of experiment fills a critical conceptual gap in his theory of perception. Experiment functions not merely as a scientific technique, but also as a general epistemological strategy. Three, Helmholtz's experimental practice provides essential clues to the interpretation (...)
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  41.  34
    Definition through Demonstration: The Two Types of Syllogisms in Posterior Analytics II.8.Greg Bayer - 1995 - Phronesis 40 (3):241-264.
    This paper highlights an important distinction underlying the possibility of inquiry, between first _identifying the subject of inquiry and ultimately _explaining it: that the former can be achieved before and without the latter is a presupposition of inquiry. I believe Aristotle is keenly aware of this in _Posterior Analytics, II.8, where he shows how a scientific demonstration can "manifest" a definition. I argue that such a demonstration consists of two sorts of syllogisms, one identifying the definiendum, the (...)
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  42.  18
    Scientific Explanation in Aristotle’s Ethics.Carlo DaVia - 2022 - In David Konstan & David Sider (eds.), Φιλοδώρημα: Essays in Greek and Roman Philosophy in Honor of Phillip Mitsis. pp. 135-160.
    The aim of this paper is threefold. First, I defend the view that for Aristotle ethical inquiry, like all philosophical inquiry, is in the business of seeking scientific explanations. This defense will require (in section II) first describing the basic structure of such explanations and then showing how those explanations can either be found in or endorsed by Aristotle’s ethics. My description of scientific explanation should be relatively uncontroversial, and my subsequent discussion of scientific explanations in Aristotle’s (...)
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  43.  57
    Scientific autonomy and planned research: The case of space science.Torsten Wilholt - 2006 - Poiesis and Praxis 4 (4):253-265.
    Scientific research that requires space flight has always been subject to comparatively strong external control. Its agenda has often had to be adapted to vacillating political target specifications. Can space scientists appeal to one or the other form of the widely acknowledged principle of freedom of research in order to claim more autonomy? In this paper, the difficult question of autonomy within planned research is approached by examining three arguments that support the principle of freedom of research in differing (...)
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  44.  46
    Scientific representation and dissimilarity.Brandon Boesch - 2019 - Synthese 198 (6):5495-5513.
    In this essay, I examine the role of dissimilarity in scientific representation. After briefly reviewing some of the philosophical literature which places a strong emphasis on the role of similarity, I turn to examine some work from Carroll and Borges which demonstrates that perfect similarity is not valuable in the representational use of maps. Expanding on this insight, I go on to argue that this shows that dissimilarity is an important part of the representational use of maps—a point I (...)
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  45.  61
    Definition through Demonstration: The Two Types of Syllogisms in Posterior Analytics II.8.Greg Bayer - 1995 - Phronesis 40 (3):241-264.
    This paper highlights an important distinction underlying the possibility of inquiry, between first _identifying the subject of inquiry and ultimately _explaining it: that the former can be achieved before and without the latter is a presupposition of inquiry. I believe Aristotle is keenly aware of this in _Posterior Analytics, II.8, where he shows how a scientific demonstration can "manifest" a definition. I argue that such a demonstration consists of two sorts of syllogisms, one identifying the definiendum, the (...)
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  46. The Instrument of Science: Scientific Anti-Realism Revitalised.Darrell P. Rowbottom - 2019 - New York: Routledge.
    Roughly, instrumentalism is the view that science is primarily, and should primarily be, an instrument for furthering our practical ends. It has fallen out of favour because historically influential variants of the view, such as logical positivism, suffered from serious defects. -/- In this book, however, Darrell P. Rowbottom develops a new form of instrumentalism, which is more sophisticated and resilient than its predecessors. This position—‘cognitive instrumentalism’—involves three core theses. First, science makes theoretical progress primarily when it furnishes us with (...)
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  47.  23
    Scientific Classics and Their Fates.Ernan McMullin - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:266 - 274.
    If classics of science were to be defined as works that mark scientific revolutions, in the sense of sharp shifts in research tradition, then none of the three works discussed in our symposium quite qualifies. I briefly indicate the fate of each. While impressed by his argument, I express some reservations about Lennox's claim to have dissolved the "problem of demonstration" for Aristotle's De Partibus Animalium. I question Finocchiaro's challenging assertion that in structuring the Dialogo as he did, (...)
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  48. Aristotle’s theory of demonstration and its logical and metaphysical entanglements.Lucas Angioni & Breno Zuppolini - 2019 - Manuscrito 42 (4):i-ix.
    This is an Editorial Note for the special volume of the journal Manuscrito (42: 4) devoted to Aristotle's theory of demonstration and its logical and metaphysical entanglements, which has been organized by me and Breno Zuppolini (as Guest Editors), with papers authored by Benjamin Morison, Owen Goldin, David Bronstein, Michail Peramatzis, Andrea Falcon, Laura Castelli, Paolo Fait, Joseph Karbowski, Adam Crager, Klaus Corcilius, Robert J. Hankinson, Raphael Zillig and Pieter Sjoerd Hasper.
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  49.  4
    Scientific Activity: The Crisis of the Subject in the World of Knowledge.Alexandra F. Yakovleva - 2018 - Russian Studies in Philosophy 56 (1):61-70.
    This article analyzes the current state of scientific activity from the point of view of the place and role of its subject: the one performing that activity, the scholar the active participant in the research process, the subject of scientific creativity. Using contemporary phenomena as examples, the author demonstrates the crisis of the subject of scientific activity and the change in the nature of the subjectivity involved here. The article also examines how the development of scientific (...)
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  50. Mathematics and Scientific Representation.Christopher Pincock - 2012 - Oxford and New York: Oxford University Press USA.
    Mathematics plays a central role in much of contemporary science, but philosophers have struggled to understand what this role is or how significant it might be for mathematics and science. In this book Christopher Pincock tackles this perennial question in a new way by asking how mathematics contributes to the success of our best scientific representations. In the first part of the book this question is posed and sharpened using a proposal for how we can determine the content of (...)
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