Results for ' Scientific interest'

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  1. Putnam’s account of apriority and scientific change: its historical and contemporary interest.Jonathan Y. Tsou - 2010 - Synthese 176 (3):429-445.
    In the 1960s and 1970s, Hilary Putnam articulated a notion of relativized apriority that was motivated to address the problem of scientific change. This paper examines Putnam’s account in its historical context and in relation to contemporary views. I begin by locating Putnam’s analysis in the historical context of Quine’s rejection of apriority, presenting Putnam as a sympathetic commentator on Quine. Subsequently, I explicate Putnam’s positive account of apriority, focusing on his analysis of the history of physics and geometry. (...)
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  2. Humean scientific explanation.Elizabeth Miller - 2015 - Philosophical Studies 172 (5):1311-1332.
    In a recent paper, Barry Loewer attempts to defend Humeanism about laws of nature from a charge that Humean laws are not adequately explanatory. Central to his defense is a distinction between metaphysical and scientific explanations: even if Humeans cannot offer further metaphysical explanations of particular features of their “mosaic,” that does not preclude them from offering scientific explanations of these features. According to Marc Lange, however, Loewer’s distinction is of no avail. Defending a transitivity principle linking (...) explanantia to their metaphysical grounds, Lange argues that a charge of explanatory inadequacy resurfaces once this intuitive principle is in place. This paper surveys, on behalf of the Humean, three strategies for responding to Lange’s criticism. The ready availability of these strategies suggests that Lange’s argument may not bolster anti-Humean convictions, since the argument rests on premises that those not antecedently sharing these convictions may well reject. The three strategies also correspond to three interesting ways of thinking about relations of grounding linking Humean laws and their instances, all of which are consistent with theses of Humean supervenience, and some of which have been heretofore overlooked. (shrink)
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  3. Should Scientific Realists Embrace Theoretical Conservatism?Finnur Dellsén - 2018 - Studies in History and Philosophy of Science Part A:30-38.
    A prominent type of scientific realism holds that some important parts of our best current scientific theories are at least approximately true. According to such realists, radically distinct alternatives to these theories or theory-parts are unlikely to be approximately true. Thus one might be tempted to argue, as the prominent anti-realist Kyle Stanford recently did, that realists of this kind have little or no reason to encourage scientists to attempt to identify and develop theoretical alternatives that are radically (...)
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  4. Theoretical Virtues in Scientific Practice: An Empirical Study.Moti Mizrahi - 2022 - British Journal for the Philosophy of Science 73 (4):879-902.
    It is a common view among philosophers of science that theoretical virtues (also known as epistemic or cognitive values), such as simplicity and consistency, play an important role in scientific practice. In this article, I set out to study the role that theoretical virtues play in scientific practice empirically. I apply the methods of data science, such as text mining and corpus analysis, to study large corpora of scientific texts in order to uncover patterns of usage. These (...)
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  5. Is Transracial Adoption in the Best Interests of Ethnic Minority Children?: Questions Concerning Legal and Scientific Interpretations of a Child’s Best Interests.Shelley M. Park & Cheryl Green - 2000 - Adoption Quarterly 3 (4):5-34.
    This paper examines a variety of social scientific studies purporting to demonstrate that transracial adoption is in the best interests of children. Finding flaws in these studies and the ethical and political arguments based upon such scientific findings, we argue for adoption practices and policies that respect the racial and ethnic identities of children of color and their communities of origin.
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  6. Understanding Scientific Progress: Aim-Oriented Empiricism.Nicholas Maxwell - 2017 - St. Paul, USA: Paragon House.
    "Understanding Scientific Progress constitutes a potentially enormous and revolutionary advancement in philosophy of science. It deserves to be read and studied by everyone with any interest in or connection with physics or the theory of science. Maxwell cites the work of Hume, Kant, J.S. Mill, Ludwig Bolzmann, Pierre Duhem, Einstein, Henri Poincaré, C.S. Peirce, Whitehead, Russell, Carnap, A.J. Ayer, Karl Popper, Thomas Kuhn, Imre Lakatos, Paul Feyerabend, Nelson Goodman, Bas van Fraassen, and numerous others. He lauds Popper for (...)
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  7. G. W. Leibniz and Scientific Societies.Markku Roinila - 2009 - Journal of Technology Management 46 (1-2):165-179.
    The famous philosopher Leibniz (1646-1716) was also active in the (cultural) politics of his time. His interest in forming scientific societies never waned and his efforts led to the founding of the Berlin Academy of Sciences. He also played a part in the founding of the Dresden Academy of Science and the St. Petersburg Academy of Science. Though Leibniz's models for the scientific society were the Royal Society and the Royal Science Academy of France, his pansophistic vision (...)
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  8. Scientific revolutions, specialization and the discovery of the structure of DNA: toward a new picture of the development of the sciences.Politi Vincenzo - 2018 - Synthese 195 (5):2267-2293.
    In his late years, Thomas Kuhn became interested in the process of scientific specialization, which does not seem to possess the destructive element that is characteristic of scientific revolutions. It therefore makes sense to investigate whether and how Kuhn’s insights about specialization are consistent with, and actually fit, his model of scientific progress through revolutions. In this paper, I argue that the transition toward a new specialty corresponds to a revolutionary change for the group of scientists involved (...)
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  9. Scientific realism and ontology.Uskali Mäki - 2008 - In Steven N. Durlauf & Lawrence E. Blume (eds.), The New Palgrave Dictionary of Economics : volume 7 : real balances - stochastic volatility models. Palgrave-Macmillan.
    Economists customarily talk about the ‘realism’ of economic models and of their assumptions and make descriptive and prescriptive judgements about them: this model has more realism in it than that, the realism of assumptions does not matter, and so on. This is not the way philosophers mostly use the term ‘realism’ thus there is a major terminological discontinuity between the two disciplines. The following remarks organise and critically elaborate some of the philosophical usages of the term and show some of (...)
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  10. Scientific Fictionalism and the Problem of Inconsistency in Nietzsche.Justin Remhof - 2016 - Journal of Nietzsche Studies 47 (2):238-246.
    Fictionalism plays a significant role in philosophy today, with defenses spanning mathematics, morality, ordinary objects, truth, modality, and more.1 Fictionalism in the philosophy of science is also gaining attention, due in particular to the revival of Hans Vaihinger’s work from the early twentieth century and to heightened interest in idealization in scientific practice.2 Vaihinger maintains that there is a ubiquity of fictions in science and, among other things, argues that Nietzsche supports the position. Yet, while contemporary commentators have (...)
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  11. Scientific Representation: An Inferentialist-Expressivist Manifesto.Kareem Khalifa, Jared Millson & Mark Risjord - 2022 - Philosophical Topics 50 (1):263-291.
    This essay presents a fully inferentialist-expressivist account of scientific representation. In general, inferentialist approaches to scientific representation argue that the capacity of a model to represent a target system depends on inferences from models to target systems. Inferentialism is attractive because it makes the epistemic function of models central to their representational capacity. Prior inferentialist approaches to scientific representation, however, have depended on some representational element, such as denotation or representational force. Brandom’s Making It Explicit provides a (...)
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  12. Scientific Worldviews as Promises of Science and Problems of Philosophy of Science.Thomas Mormann - 2017 - Centaurus 59 (3):189 - 203.
    The aim of this paper is to show that global scientific promises aka “scientific world-conceptions” have an interesting history that should be taken into account also for contemporary debates. I argue that the prototypes of many contemporary philosophical positions concerning the role of science in society can already be found in the philosophy of science of the 1920s and 1930s. First to be mentioned in this respect is the Scientific World-Conception of the Vienna Circle (The Manifesto) that (...)
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  13. Strong Programme against Scientific Knowledge and Its Autonomy.Alper Bilgehan Yardımcı - 2017 - Posseible Düşünme Dergisi 6 (11):34-40.
    Science and scientific knowledge have been questioned in many ways for a long period of time. Especially, after the scientific revolution of 16th- and 17th-century Europe, science and its knowledge have been mainly accepted one of the most valuable and trustable information. However, in 20th century, autonomy of scientific knowledge and its dominant position over other kinds of knowledge have been mainly criticised. Social and other factors that were tried to be excluded before have been incorporated into (...)
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  14. Myth, Music, and Science: Teaching the Philosophy of Science through the Use of Non-Scientific Examples.Edward Slowik - 2003 - Science & Education 12 (3):289-302.
    This essay explores the benefits of utilizing non-scientific examples and analogies in teaching philosophy of science courses. These examples can help resolve two basic difficulties faced by most instructors, especially when teaching lower-level courses: first, they can prompt students to take an active interest in the class material, since the examples will involve aspects of the culture well-known, or at least more interesting, to the students; and second, these familiar, less-threatening examples will lessen the students' collective anxieties and (...)
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  15. The scientific study of belief and pain modulation: conceptual problems.Miguel Farias, Guy Kahane & Nicholas Shackel - 2016 - In F. P. Mario, M. F. P. Peres, G. Lucchetti & R. F. Damiano (eds.), Spirituality, Religion and Health: From Research to Clinical Practice. Springer.
    We examine conceptual and methodological problems that arise in the course of the scientific study of possible influences of religious belief on the experience of physical pain. We start by attempting to identify a notion of religious belief that might enter into interesting psychological generalizations involving both religious belief and pain. We argue that it may be useful to think of religious belief as a complex dispositional property that relates believers to a sufficiently thick belief system that encompasses both (...)
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  16. Status Distrust of Scientific Experts.Hugh Desmond - 2022 - Social Epistemology 36 (5):586-600.
    Distrust in scientific experts can be surprisingly stubborn, persisting despite evidence supporting the experts’ views, demonstrations of their competence, or displays of good will. This stubborn distrust is often viewed as a manifestation of irrationality. By contrast, this article proposes a logic of “status distrust”: low-status individuals are objectively vulnerable to collective decision-making, and can justifiably distrust high-status scientific experts if they are not confident that the experts do not have their best interests at heart. In phenomena of (...)
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  17. The Idea of a Scientific Concept of Race.Michael O. Hardimon - 2012 - Journal of Philosophical Research 37:249-282.
    This article challenges the orthodox view that there is and can be no scientifically valid concept of race applicable to human beings by presenting a candidate scientific concept of biological race. The populationist concept of race specifies that a “race” is a subdivision of Homo sapiens—a group of populations that exhibits a distinctive pattern of genetically transmitted phenotypic characters and that belongs to an endogamous biological lineage initiated by a geographically separated and reproductively isolated founding population. The viability of (...)
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  18. Institutions and Scientific Progress.C. Mantzavinos - 2020 - Philosophy of the Social Sciences (3).
    Scientific progress has many facets and can be conceptualized in different ways, for example in terms of problem-solving, of truthlikeness or of growth of knowledge. The main claim of the paper is that the most important prerequisite of scientific progress is the institutionalization of competition and criticism. An institutional framework appropriately channeling competition and criticism is the crucial factor determining the direction and rate of scientific progress, independently on how one might wish to conceptualize scientific progress (...)
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  19. Towards a scientifically tenable description of objective idealism.Martin Korth -
    The tremendous advances of research into artificial intelligence as well as neuroscience made over the last two to three decades have given further support to a renewed interest into philosophical discussions of the mind-body problem. Especially the last decade has seen a revival of panpsychist and idealist considerations, often focused on solving philosophical puzzles like the socalled hard problem of consciousness.1–9 While a number of respectable philosophers advocate some sort of panpsychistic solution to the mind-body problem now, fewer advocate (...)
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  20. Scientific elite revisited: Patterns of productivity, collaboration, authorship and impact.Jichao Li, Yian Yin, Santo Fortunato & Dashun Wang - 2020 - arXiv 2020 (3):1-54.
    Throughout history, a relatively small number of individuals have made a profound and lasting impact on science and society. Despite long-standing, multi-disciplinary interests in understanding careers of elite scientists, there have been limited attempts for a quantitative, career-level analysis. Here, we leverage a comprehensive dataset we assembled, allowing us to trace the entire career histories of nearly all Nobel laureates in physics, chemistry, and physiology or medicine over the past century. We find that, although Nobel laureates were energetic producers from (...)
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  21. Philosophy of Scientific Theories. The First Essay: Names and Realities.Vladimir Kuznetsov & O. Gabovіch - 2023 - Kyiv: Naukova Dumka. Edited by Tetyana Gardashuk.
    The English Synopsis is after the text of the book. The book presents an original and generalizing substantive vision of the philosophy of science through the prism of a detailed analysis of the polysystem structure of scientific theories. Theories are considered, firstly, as complex specialized forms of developed scientific thinking about the realities studied by natural science, secondly, as constantly improving tools for producing new knowledge in interaction with experimental research, and thirdly, as carriers of ordered and verified (...)
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  22. The Methodological Issues on Al-Jazari’s Scientific Heritage in Russian Studies.Fegani Beyler - 2023 - Bingöl University Journal of Social Sciences Institute 25 (25):160-169.
    Extensive scientific, philosophical and artistic activities were carried out in the Islamic World’s various science and civilization centers during the early Middle Ages. In these centers, noteworthy works of mathematics, astronomy, geography, medicine, pharmacology, optics, botany, chemistry and other fields of science, which would later determine improvement paths for these fields, were created. Abu al-Izz Ismail ibn al-Razzaz al-Jazari (12th-13th centuries), was a magnificent Muslim scientist known for his work named The Book of Knowledge of Ingenious Mechanical Devices (Kitab (...)
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  23. The evaluation of scientific research in democratic societies: Kitcher, Rawls and the approach of scientific significant truths.Ignacio Mastroleo - 2011 - Revista Redbioética/UNESCO 2 (4):43-60.
    This paper critically assesses the model of evaluation of scientific research for democratic societies defended by Philip Kitcher. The “significant truth” approach proposes a viable alternative to two classic images of science: that of the “critics”, who believe that science always serves the interests of the powerful and that of the “faithful”, who argue that the pursuit of scientific knowledge is always valuable and necessary. However, the democratic justification of Kitcher’s proposal is not compatible with the ethical problems (...)
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  24. Više je ipak bolje: Epistemički interesi i prirodne vrste (eng. The more the merrier: Epistemic interests and natural kinds).Mladen Bošnjak & Zdenka Brzović - 2021 - Prolegomena: Journal of Philosophy 20 (2):235-259.
    In this paper, we focus on the propensity toward identifying natural kinds with successful scientific categories in contemporary discussions of natural kinds within the philosophy of science. Success in this case is understood as the fulfillment of epistemic interests or goals in a given field of scientific research. The prevailing view is that, in order to have a theory of natural kinds that successfully captures current scientific practice, the relevant epistemic interests are the current interests of scientists (...)
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    Philosophical and scientific interaction between Vladimir Vernadsky and Pavel Florensky.Lenka Naldoniová - 2020 - Вестник Спбгу. Философия И Конфликтология 36 (4):645-656.
    The article focuses on the philosophical and scientific dialogue between Vladimir Vernadsky and Pavel Florensky in the context of Russian philosophy. Florensky formulated his philosophy in the book The Pillar and Ground of the Truth, making a great impact on Vernadsky. The two philosophers exchanged their thoughts through letters. During the time of his imprisonment, Florensky wrote letters on scientific topics to his son Kirill, who worked with Vernadsky. Thus, Kirill Florensky became the point of contact between the (...)
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  26. Models, Brains, and Scientific Realism.Fabio Sterpetti - 2006 - In Lorenzo Magnani & Claudia Casadio (eds.), Model Based Reasoning in Science and Technology. Logical, Epistemological, and Cognitive Issues. Springer. pp. 639-661.
    Prediction Error Minimization theory (PEM) is one of the most promising attempts to model perception in current science of mind, and it has recently been advocated by some prominent philosophers as Andy Clark and Jakob Hohwy. Briefly, PEM maintains that “the brain is an organ that on aver-age and over time continually minimizes the error between the sensory input it predicts on the basis of its model of the world and the actual sensory input” (Hohwy 2014, p. 2). An interesting (...)
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  27. Philosophers should be interested in ‘common currency’ claims in the cognitive and behavioural sciences.David Spurrett - 2014 - South African Journal of Philosophy 33 (2):211-221.
    A recurring claim in a number of behavioural, cognitive and neuro-scientific literatures is that there is, or must be, a unidimensional ‘common currency’ in which the values of different available options are represented. There is striking variety in the quantities or properties that have been proposed as determinants of the ordering in motivational strength. Among those seriously suggested are pain and pleasure, biological fitness, reward and reinforcement, and utility among economists, who have regimented the notion of utility in a (...)
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  28. Critical and Scientific Thinking: A short introduction.Michael Vlerick - 2022 - Tilburg Open Press.
    “Critical thinking is one of the biggest hiatuses in our education system. Learning to distinguish sense from nonsense is of great importance in the information age that we live in. In a systematic way, this book helps you to gain insight into, and subsequently eliminate, the most important reasoning errors that we all tend to make. It also helps you to debunk weak and fallacious arguments and unreliable information. -/- In addition to understanding what critical and scientific thinking entails, (...)
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  29. Science, politics, and morality: scientific uncertainty and decision making.René von Schomberg (ed.) - 1993 - Boston: Kluwer Academic Publishers.
    Current environmental problems and technological risks are a challenge for a new institutional arrangement of the value spheres of Science, Politics and Morality. Distinguished authors from different European countries and America provide a cross-disciplinary perspective on the problems of political decision making under the conditions of scientific uncertainty. cases from biotechnology and the environmental sciences are discussed. The papers collected for this volume address the following themes: (i) controversies about risks and political decision making; (ii) concepts of science for (...)
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  30. Science as Social Existence: Heidegger and the Sociology of Scientific Knowledge.Jeff Kochan - 2017 - Cambridge, UK: Open Book Publishers.
    REVIEW (1): "Jeff Kochan’s book offers both an original reading of Martin Heidegger’s early writings on science and a powerful defense of the sociology of scientific knowledge (SSK) research program. Science as Social Existence weaves together a compelling argument for the thesis that SSK and Heidegger’s existential phenomenology should be thought of as mutually supporting research programs." (Julian Kiverstein, in Isis) ---- REVIEW (2): "I cannot in the space of this review do justice to the richness and range of (...)
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  31. Some foundational problems in the scientific study of pain.Murat Aydede & Güven Güzeldere - 2002 - Philosophy of Science Supplement 69 (3):265-83.
    This paper is an attempt to spell out what makes the scientific study of pain so distinctive from a philosophical perspective. Using the IASP definition of ‘pain’ as our guide, we raise a number of questions about the philosophical assumptions underlying the scientific study of pain. We argue that unlike the study of ordinary perception, the study of pain focuses from the very start on the experience itself and its qualities, without making deep assumptions about whether pain experiences (...)
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  32. Mεtascience: Scientific General Discourse - No. 2 - Metascientific Ontology.François Maurice - 2022 - Mεtascience: Scientific General Discourse 2:1-260.
    [This is the complete issue of the second issue of Mɛtascience] -/- This second issue of the journal Mεtascience continues the char acterization of this new branch of knowledge that is metasci ence. If it is new, it is not in a radical sense since Mario Bunge practiced it in an exemplary way, since logical positivists were accused of practicing only a mere metascience, since scientists have always practiced it implicitly, and since some philosophers no longer practice philosophy but rather (...)
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  33. What Is the Basic Unit of Scientific Progress? A Quantitative, Corpus-Based Study.Moti Mizrahi - 2022 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 53 (4):441-458.
    This paper presents the results of an empirical study following up on Mizrahi (2021). Using the same methods of text mining and corpus analysis used by Mizrahi (2021), we test empirically a philosophical account of scientific progress that Mizrahi (2021) left out of his empirical study, namely, the so-called functional-internalist account of scientific progress according to which the aim or goal or scientific research is to solve problems. In general, our results do not lend much empirical evidence (...)
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  34. Development of a method for selected financing of scientific and educational institutions through targeted capital investment in the development of innovative technologies.Iaroslava Levchenko, Oksana Dmytriieva, Inna Shevchenko, Igor Britchenko, Vitalii Kruhlov, Nina Avanesova, Oksana Kudriavtseva & Olesia Solodovnik - 2021 - Eastern-European Journal of Enterprise Technologies 3 (13 (111)):55 - 62.
    The problem of supporting scientific and educational institutions is considered. A method of selective financing of scientific and educational institutions that create innovative technologies taking into account their investment in innovative developments is proposed. On the basis of statistical data on the indicators for assessing the activities of scientific and educational institutions and the indicator of the innovative potential of a scientific and educational institution from the production of innovations (PNn), their rating was calculated. The essence (...)
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  35. A Role for Judgment Aggregation in Coauthoring Scientific Papers.Liam Kofi Bright, Haixin Dang & Remco Heesen - 2018 - Erkenntnis 83 (2):231-252.
    This paper addresses the problem of judgment aggregation in science. How should scientists decide which propositions to assert in a collaborative document? We distinguish the question of what to write in a collaborative document from the question of collective belief. We argue that recent objections to the application of the formal literature on judgment aggregation to the problem of judgment aggregation in science apply to the latter, not the former question. The formal literature has introduced various desiderata for an aggregation (...)
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  36. High school learner’s interest and readiness to start a business: evidence from South African schools.Rylyne Mande Nchu, Robertson K. Tengeh, Lorraine Hassan & Chux Gervase Iwu - 2017 - WSEAS Transactions on Business and Economics 14 (1):1-12.
    Given the growing interest in entrepreneurship education and the quest to provide entrepreneurial skills to all including the youths, the study investigates high school learners’ interest and readiness to start a business in South Africa. A group of high school learners (n=403) from select high schools in Cape Town was purposively sampled using self-administrated questionnaires while personal interviews were held with all Business Studies teachers in the participating schools (n=9). The results of this study indicate that 52% of (...)
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  37. Wittgenstein among the sciences: Wittgensteinian investigations into the "scientific method".Rupert J. Read - 2012 - Burlington, VT: Ashgate. Edited by Simon Summers.
    Engaging with the question of the extent to which the so-called human, economic or social sciences are actually sciences, this book moves away from the search for a criterion or definition that will allow us to sharply distinguish the scientific from the non-scientific. Instead, the book favours the pursuit of clarity with regard to the various enterprises undertaken by human beings, with a view to dissolving the felt need for such a demarcation. In other words, Read pursues a (...)
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  38. Apriorist self-interest: How it embraces altruism and is not vacuous.J. C. Lester - 1997 - Journal of Social and Evolutionary Systems 20 (3):221-232.
    This essay is part of an attempt to reconcile two extreme views in economics: the (neglected) subjective, apriorist approach and the (standard) objective, scientific (i.e., falsifiable) approach. The Austrian subjective view of value, building on Carl Menger’s theory of value, was developed into a theory of economics as being entirely an a priori theory of action. This probably finds its most extreme statement in Ludwig von Mises’ Human Action (1949). In contrast, the standard economic view has developed into making (...)
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  39. Subliming and subverting: an impasse on the contingency of scientific rationality.Chuanfei Chin - 2014 - Journal of the Philosophy of History 8 (2):311-331.
    What is special about the philosophy of history when the history is about science? I shall focus on an impasse between two perspectives — one seeking an ideal of rationality to guide scientific practices, and one stressing the contingency of the practices. They disagree on what this contingency means for scientific norms. Their impasse underlies some fractious relations within History and Philosophy of Science. Since the late 1960s, this interdisciplinary field has been described, variously, as an “intimate relationship (...)
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  40. The linguistic - cultural nature of scientific truth.Damian Islas - 2012 - Skepsis: A Journal for Philosophy and Interdisciplinary Research (3):80-88.
    While we typically think of culture as defined by geography or ethnicity (e.g., American culture, Mayan culture), the term also applies to the practices and expectations of smaller groups of people. Though embedded in the larger culture surrounding them, such subcultures have their own sets of rules like those that scientists do. Philosophy of science has as its main object of studio the scientific activity. A way in which we have tried to explain these scientific practices is from (...)
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  41. We Asked ChatGPT About the Co-Authorship of Artificial Intelligence in Scientific Papers.Ayşe Balat & İlhan Bahşi - 2023 - European Journal of Therapeutics 29 (3):e16-e19.
    Dear Colleagues, -/- A few weeks ago, we published an editorial discussion on whether artificial intelligence applications should be authors of academic articles [1]. We were delighted to receive more than one interesting reply letter to this editorial in a short time [2, 3]. We hope that opinions on this subject will continue to be submitted to our journal. -/- In this editorial, we wanted to publish the answers we received when we asked ChatGPT, one of the artificial intelligence applications, (...)
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  42. Thematic Analysis and its Interdisciplinary Interest.Georges Alahou - 2023 - Conatus 8 (1):29-53.
    The term “thematic analysis” abounds in research articles and appears in the titles of books, without the authors of these writings being primarily concerned with defining what thematic analysis is. Thematic analysis is present in the current vocabulary of several disciplines and is presented as a working method of choice in psychology, sociology, or linguistics, to name but a few. This article seeks to situate thematic analysis in the thinking of Holton Gerald, who introduced it into the philosophy of science (...)
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  43. The value of epistemic disagreement in scientific practice. The case of Homo floresiensis.Helen De Cruz & Johan De Smedt - 2013 - Studies in History and Philosophy of Science Part A 44 (2):169-177.
    Epistemic peer disagreement raises interesting questions, both in epistemology and in philosophy of science. When is it reasonable to defer to the opinion of others, and when should we hold fast to our original beliefs? What can we learn from the fact that an epistemic peer disagrees with us? A question that has received relatively little attention in these debates is the value of epistemic peer disagreement—can it help us to further epistemic goals, and, if so, how? We investigate this (...)
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  44. The Berlin Group and the Society for Scientific Philosophy.Nikolay Milkov - 2021 - In Thomas Uebel & Christoph Limbeck-Lilienau (eds.), Routledge Handbook of Logical Empiricism. London: Routledge. pp. 118-126.
    In the late 1920s and early 1930s, the philosopher Hans Reichenbach led a group of like-minded colleagues in Berlin that must count as an independent point of origin of the movement of logical empiricism. Like the Vienna Circle with whom they cooperated on numerous occasions, their concern was to develop a philosophy of science adequate to the latest advances in science itself. Differences of philosophical background and interests, however, resulted in putting different accents by justifying scientific knowledge.
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  45. After Popper, Kuhn and Feyerabend: Recent Issues in Theories of Scientific Method.Robert Nola & Howard Sankey (eds.) - 2000 - Boston: Kluwer Academic Publishers.
    Some think that issues to do with scientific method are last century's stale debate; Popper was an advocate of methodology, but Kuhn, Feyerabend, and others are alleged to have brought the debate about its status to an end. The papers in this volume show that issues in methodology are still very much alive. Some of the papers reinvestigate issues in the debate over methodology, while others set out new ways in which the debate has developed in the last decade. (...)
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  46.  91
    SCIENTIFIC VISION IN SRI GURU GRANTH SAHIB & INTERFAITH DIALOGUE. [REVIEW]Devinder Pal Singh - 2008 - The Sikh Review 56 (5):73-76.
    Religion and Science represent two great systems of human thought. Both of these seek objective perceptions in their attempts to comprehend existence and reality. The fundamental distinction lies in the direction in which they look in pursuit of their aims. In both cases, a subtle interplay between theory and observation is involved. Both approaches are intellectual as well as empirical. Professor Hardev Singh Virk’s book titled ‘Scientific Vision in Sri Guru Granth Sahib and Interfaith Dialogue’ offers an exciting bridge (...)
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  47. How could Vygotsky inform an approach to scientific representations?Dimitris Kilakos - 2016 - Epistemology and Philosophy of Science 47 (1):140-152.
    In the quest for a new social turn in philosophy of science, exploring the prospects of a Vygotskian perspective could be of significant interest, especially due to his emphasis on the role of culture and socialisation in the development of cognitive functions. However, a philosophical reassessment of Vygotsky's ideas in general has yet to be done. As a step towards this direction, I attempt to elaborate an approach on scientific representations by drawing inspirations from Vygotsky. Specifically, I work (...)
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  48. What is in it for me? The benefits of diversity in scientific communities.Carla Fehr - 2011 - In Heidi Grasswick (ed.), Feminist Epistemology and Philosophy of Science: Power in Knowledge. New York: Springer. pp. 133-154.
    I investigate the reciprocal relationship between social accounts of knowledge production and efforts to increase the representation of women and some minorities in the academy. In particular, I consider the extent to which feminist social epistemologies such as Helen Longino’s critical contextual empiricism can be employed to argue that it is in researchers’ epistemic interests to take active steps to increase gender diversity. As it stands, critical contextual empiricism does not provide enough resources to succeed at this task. However, considering (...)
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  49. The silence of the norms: The missing historiography of The Structure of Scientific Revolutions.Paul A. Roth - 2013 - Studies in History and Philosophy of Science Part A 44 (4):545-552.
    History has been disparaged since the late 19th century for not conforming to norms of scientific explanation. Nonetheless, as a matter of fact a work of history upends the regnant philosophical conception of science in the second part of the 20th century. Yet despite its impact, Kuhn’s Structure has failed to motivate philosophers to ponder why works of history should be capable of exerting rational influence on an understanding of philosophy of science. But all this constitutes a great irony (...)
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  50. The Wisdom in Wood Rot: God in Eighteenth Century Scientific Explanation.Eric Palmer - 2011 - In William Krieger (ed.), Science at the Frontiers: Perspectives on the History and Philosophy of Science. Lexington Books. pp. 17-35.
    This chapter presents a historical study of how science has developed and of how philosophical theories of many sorts – philosophy of science, theory of the understanding, and philosophical theology – both enable and constrain certain lines of development in scientific practice. Its topic is change in the legitimacy or acceptability of scientific explanation that invokes purposes, or ends; specifically in the argument from design, in the natural science field of physico-theology, around the start of the eighteenth century. (...)
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