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  1. The Science of Breath and the Philosophy of the Tatwas, Tr. From the Sansk., with Explanatory Essays on Nature's Finer Forces by R. Prasád.Rama Science & Prasad - 1890
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  2. Definite Descriptions and the Gettier Example.Christoph Schmidt-Petri & London School of Economics and Political Science - 2002 - CPNSS Discussion Papers.
    This paper challenges the first Gettier counterexample to the tripartite account of knowledge. Noting that 'the man who will get the job' is a description and invoking Donnellan's distinction between their 'referential' and 'attributive' uses, I argue that Smith does not actually believe that the man who will get the job has ten coins in his pocket. Smith's ignorance about who will get the job shows that the belief cannot be understood referentially, his ignorance of the coins in his pocket (...)
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  3. Illegitimate Values, Confirmation Bias, and Mandevillian Cognition in Science.Uwe Peters - 2021 - British Journal for the Philosophy of Science 72 (4):1061-1081.
    In the philosophy of science, it is a common proposal that values are illegitimate in science and should be counteracted whenever they drive inquiry to the confirmation of predetermined conclusions. Drawing on recent cognitive scientific research on human reasoning and confirmation bias, I argue that this view should be rejected. Advocates of it have overlooked that values that drive inquiry to the confirmation of predetermined conclusions can contribute to the reliability of scientific inquiry at the group level even (...)
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  4. Hidden figures: epistemic costs and benefits of detecting (invisible) diversity in science.Uwe Peters - 2021 - European Journal for Philosophy of Science 11 (1):1-21.
    Demographic diversity might often be present in a group without group members noticing it. What are the epistemic effects if they do? Several philosophers and social scientists have recently argued that when individuals detect demographic diversity in their group, this can result in epistemic benefits even if that diversity doesn’t involve cognitive differences. Here I critically discuss research advocating this proposal, introduce a distinction between two types of detection of demographic diversity, and apply this distinction to the theorizing on diversity (...)
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  5. The Recent Past and Possible Futures of Citizen Science: Final Remarks.Josep Perelló, Andrzej Klimczuk, Anne Land-Zandstra, Katrin Vohland, Katherin Wagenknecht, Claire Narraway, Rob Lemmens & Marisa Ponti - 2021 - In Katrin Vohland, Anne Land-Zandstra, Luigi Ceccaroni, Rob Lemmens, Josep Perelló, Marisa Ponti, Roeland Samson & Katherin Wagenknecht (eds.), The Science of Citizen Science. Springer Verlag. pp. 517--529.
    This book is the culmination of the COST Action CA15212 Citizen Science to Promote Creativity, Scientific Literacy, and Innovation throughout Europe. It represents the final stage of a shared journey taken over the last 4 years. During this relatively short period, our citizen science practices and perspectives have rapidly evolved. In this chapter we discuss what we have learnt about the recent past of citizen science and what we expect and hope for the future.
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  6. Policy Response, Social Media and Science Journalism for the Sustainability of the Public Health System Amid the COVID-19 Outbreak: The Vietnam Lessons.La Viet Phuong, Pham Thanh Hang, Manh-Toan Ho, Nguyen Minh Hoang, Nguyen Phuc Khanh Linh, Vuong Thu Trang, Nguyen To Hong Kong, Tran Trung, Khuc Van Quy, Ho Manh Tung & Quan-Hoang Vuong - 2020 - Sustainability 12:2931.
    Vietnam, with a geographical proximity and a high volume of trade with China, was the first country to record an outbreak of the new Coronavirus disease (COVID-19), caused by the Severe Acute Respiratory Syndrome Coronavirus 2 or SARS-CoV-2. While the country was expected to have a high risk of transmission, as of April 4, 2020—in comparison to attempts to contain the disease around the world—responses from Vietnam are being seen as prompt and effective in protecting the interests of its citizens, (...)
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  7. Testing and discovery: Responding to challenges to digital philosophy of science.Charles H. Pence - 2022 - Metaphilosophy 53 (2-3):238-253.
    -/- For all that digital methods—including network visualization, text analysis, and others—have begun to show extensive promise in philosophical contexts, a tension remains between two uses of those tools that have often been taken to be incompatible, or at least to engage in a kind of trade-off: the discovery of new hypotheses and the testing of already-formulated positions. This paper presents this basic distinction, then explores ways to resolve this tension with the help of two interdisciplinary case studies, taken from (...)
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  8. How to Do Digital Philosophy of Science.Charles H. Pence & Grant Ramsey - 2018 - Philosophy of Science 85 (5):930-941.
    Philosophy of science is expanding via the introduction of new digital data and tools for their analysis. The data comprise digitized published books and journal articles, as well as heretofore unpublished material such as images, archival text, notebooks, meeting notes, and programs. The growth in available data is matched by the extensive development of automated analysis tools. The variety of data sources and tools can be overwhelming. In this article, we survey the state of digital work in the philosophy (...)
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  9. Artificial intelligence: opportunities and implications for the future of decision making.U. K. Government & Office for Science - 2016
    Artificial intelligence has arrived. In the online world it is already a part of everyday life, sitting invisibly behind a wide range of search engines and online commerce sites. It offers huge potential to enable more efficient and effective business and government but the use of artificial intelligence brings with it important questions about governance, accountability and ethics. Realising the full potential of artificial intelligence and avoiding possible adverse consequences requires societies to find satisfactory answers to these questions. This report (...)
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  10. Imagination: A Sine Qua Non of Science.Michael T. Stuart - 2017 - Croatian Journal of Philosophy (49):9-32.
    What role does the imagination play in scientific progress? After examining several studies in cognitive science, I argue that one thing the imagination does is help to increase scientific understanding, which is itself indispensable for scientific progress. Then, I sketch a transcendental justification of the role of imagination in this process.
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  11. Aesthetic values in science.Milena Ivanova - 2017 - Philosophy Compass 12 (10):e12433.
    Scientists often use aesthetic values in the evaluation and choice of theories. Aesthetic values are not only regarded as leading to practically more useful theories but are often taken to stand in a special epistemic relation to the truth of a theory such that the aesthetic merit of a theory is evidence of its truth. This paper explores what aesthetic considerations influence scientists' reasoning, how such aesthetic values relate to the utility of a scientific theory, and how one can justify (...)
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  12. Metaphysics and Computational Cognitive Science: Let's Not Let the Tail Wag the Dog.Frances Egan - 2012 - Journal of Cognitive Science 13:39-49.
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  13. Prove it! The Burden of Proof Game in Science vs. Pseudoscience Disputes.Massimo Pigliucci & Maarten Boudry - 2014 - Philosophia 42 (2):487-502.
    The concept of burden of proof is used in a wide range of discourses, from philosophy to law, science, skepticism, and even in everyday reasoning. This paper provides an analysis of the proper deployment of burden of proof, focusing in particular on skeptical discussions of pseudoscience and the paranormal, where burden of proof assignments are most poignant and relatively clear-cut. We argue that burden of proof is often misapplied or used as a mere rhetorical gambit, with little appreciation of (...)
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  14. The Pragmatist Challenge: Pragmatist Metaphysics for Philosophy of Science.H. K. Andersen & Sandra D. Mitchell (eds.) - 2023 - Oxford, UK: Oxford University Press.
    This volume offers a collection of in-depth explorations of pragmatism as a framework for discussions in philosophy of science and metaphysics. Each chapter involves explicit reflection on what it means to be pragmatist, and how to use pragmatism as a guiding framework in addressing topics such as realism, unification, fundamentality, truth, laws, reduction, and more. -/- .
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  15. New lenses for a new future. Why science needs theology and why theology needs science.Johan Buitendag - 2023 - HTS Theological Studies 79 (1):6.
    The ecological crisis almost forces different disciplines to search together for a better world. We all share one earth: the closer we reach a certain point, the closer we come together. This places the paper amid the so-called science and religion dialogue in which theology increasingly cognises empirical research and scientific data. On the other hand, sciences are becoming increasingly aware of the need to transcend their evidential limitations to find a comprehensive paradigm. This paper will apply an exemplary (...)
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  16. Classificatory Theory in Data-intensive Science: The Case of Open Biomedical Ontologies.Sabina Leonelli - 2012 - International Studies in the Philosophy of Science 26 (1):47 - 65.
    Knowledge-making practices in biology are being strongly affected by the availability of data on an unprecedented scale, the insistence on systemic approaches and growing reliance on bioinformatics and digital infrastructures. What role does theory play within data-intensive science, and what does that tell us about scientific theories in general? To answer these questions, I focus on Open Biomedical Ontologies, digital classification tools that have become crucial to sharing results across research contexts in the biological and biomedical sciences, and argue (...)
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  17. Improving Epistemological Beliefs and Moral Judgment Through an STS-Based Science Ethics Education Program.Hyemin Han & Changwoo Jeong - 2014 - Science and Engineering Ethics 20 (1):197-220.
    This study develops a Science–Technology–Society (STS)-based science ethics education program for high school students majoring in or planning to major in science and engineering. Our education program includes the fields of philosophy, history, sociology and ethics of science and technology, and other STS-related theories. We expected our STS-based science ethics education program to promote students’ epistemological beliefs and moral judgment development. These psychological constructs are needed to properly solve complicated moral and social dilemmas in the (...)
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  18. The creative aspect of language use and the implications for linguistic science.Eran Asoulin - 2013 - Biolinguistics 7:228-248.
    The creative aspect of language use provides a set of phenomena that a science of language must explain. It is the “central fact to which any signi- ficant linguistic theory must address itself” and thus “a theory of language that neglects this ‘creative’ aspect is of only marginal interest” (Chomsky 1964: 7–8). Therefore, the form and explanatory depth of linguistic science is restricted in accordance with this aspect of language. In this paper, the implications of the creative aspect (...)
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  19. John of St. Thomas (Poinsot) on the Science of Sacred Theology.Victor Salas - 2024 - Studia Poinsotiana.
    Contents I Introduction II Subalternation and Theology III Theology and Dogmatic Declarations IV The Mixed Principles of Theology V Virtual Revelation: The Unity of Theology VI Theology as a Natural Science VII Theology’s Certitude VIII Conclusion Notes Bibliography All the contents are fully attributable to the author, Doctor Victor Salas. Should you wish to get this text republished, get in touch with the author or the editorial committee of the Studia Poinsotiana. Insofar as possible, we will be happy to (...)
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  20. Naive Realism and the Science of Consciousness (2018).Adam Pautz - manuscript
    I begin by describing what I call simple naïve realism. Then I describe relevant empirical results. Next, I develop two new empirical arguments against simple naive realism. Then I briefly look at two new, more complex forms of naïve realism: one due to Keith Allen and the other due to Heather Logue and Ori Beck. I argue that they are not satisfactory retreats for naive realists. The right course is to reject naive realism altogether. My stalking horse is contemporary naive (...)
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  21. How Not to Argue from Science to Skepticism.Stephen Maitzen - 2014 - International Journal for the Study of Skepticism 4 (1):21-35.
    For at least several decades, and arguably since the time of Descartes, it has been fashionable to offer scientific or quasi-scientific arguments for skepticism about human knowledge. I critique five attempts to argue for skeptical conclusions from the findings of science and scientifically informed common sense.
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  22. The Role of Protestantism in the Emergence of Modern Science: Critiques of Harrison's Hypothesis.Petr Pavlas - 2015 - Teorie Vědy / Theory of Science 37 (2):159-171.
    According to Peter Harrison's book The Bible, Protestantism and the Rise of Natural Science modern science came into existence as a result of the emphasis of Protestants on the literal sense of the Scripture, their refusal of the earlier symbolic or allegorical interpretation, and their efforts at fixing the meaning of the biblical text in which each passage was to be ascribed a single and unique meaning. This article tries to summarize the most significant critiques of Harrison's hypothesis (...)
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  23. Mathematics as a science of non-abstract reality: Aristotelian realist philosophies of mathematics.James Franklin - 2022 - Foundations of Science 27 (2):327-344.
    There is a wide range of realist but non-Platonist philosophies of mathematics—naturalist or Aristotelian realisms. Held by Aristotle and Mill, they played little part in twentieth century philosophy of mathematics but have been revived recently. They assimilate mathematics to the rest of science. They hold that mathematics is the science of X, where X is some observable feature of the (physical or other non-abstract) world. Choices for X include quantity, structure, pattern, complexity, relations. The article lays out and (...)
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  24. Self-reference, Phenomenology, and Philosophy of Science.Steven James Bartlett - 1980 - Methodology and Science: Interdisciplinary Journal for the Empirical Study of the Foundations of Science and Their Methodology 13 (3):143-167.
    The paper begins by acknowledging that weakened systematic precision in phenomenology has made its application in philosophy of science obscure and ineffective. The defining aspirations of early transcendental phenomenology are, however, believed to be important ones. A path is therefore explored that attempts to show how certain recent developments in the logic of self-reference fulfill in a clear and more rigorous fashion in the context of philosophy of science certain of the early hopes of phenomenologists. The resulting dual (...)
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  25. Interdisciplinarity and insularity in the diffusion of knowledge: an analysis of disciplinary boundaries between philosophy of science and the sciences.John McLevey, Alexander V. Graham, Reid McIlroy-Young, Pierson Browne & Kathryn Plaisance - 2018 - Scientometrics 1 (117):331-349.
    Two fundamentally different perspectives on knowledge diffusion dominate debates about academic disciplines. On the one hand, critics of disciplinary research and education have argued that disciplines are isolated silos, within which specialists pursue inward-looking and increasingly narrow research agendas. On the other hand, critics of the silo argument have demonstrated that researchers constantly import and export ideas across disciplinary boundaries. These perspectives have different implications for how knowledge diffuses, how intellectuals gain and lose status within their disciplines, and how intellectual (...)
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  26. The Philosophy of Science in Either-Or.Hans Halvorson - forthcoming - In Ryan Kemp & Walter Wietzke (eds.), Cambridge Critical Guide to Either-Or. Cambridge University Press.
    Kierkegaard's Either-Or is a book about the choice between aesthetic, ethical, and religious approaches to life. I show that Either-Or also contains a proposal for philosophy of science, and in particular, about the ideal epistemic state for human beings. Whereas the Cartesian-Hegelian tradition conceived of the ideal state as one of detached deliberation -- i.e. "seeing the world as it is in itself" -- Kierkegaard envisions the ideal state as the achievement of equilibrium between the "spectator" and "actor" aspects (...)
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  27. Model Transfer in Science.Catherine Herfeld - 2024 - In Tarja Knuuttila, Natalia Carrillo & Rami Koskinen (eds.), The Routledge Handbook of Philosophy of Scientific Modeling. New York, NY: Routledge.
    A conspicuous feature of contemporary modelling practices is the use of the same mathematical forms and modelling methods across different scientific domains. This model transfer raises many philosophical questions concerning, for example, the exact object of transfer, the relationship between the model and the target domain, the specific challenges such transfer confronts, and the ways in which model transfer relates to scientific progress. While the interest in studying model transfer has increased among philosophers of science in recent years, the (...)
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  28. Can Humanity Learn to become Civilized? The Crisis of Science without Civilization.Nicholas Maxwell - 2000 - Journal of Applied Philosophy 17 (1):29-44.
    Two great problems of learning confront humanity: learning about the nature of the universe and our place in it, and learning how to become civilized. The first problem was solved, in essence, in the 17th century, with the creation of modern science. But the second problem has not yet been solved. Solving the first problem without also solving the second puts us in a situation of great danger. All our current global problems have arisen as a result. What we (...)
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  29. Merleau-Ponty and Embodied Cognitive Science.Christopher Pollard - 2014 - Discipline Filosofiche 24 (2):67-90.
    What would the Merleau-Ponty of Phenomenology of Perception have thought of the use of his phenomenology in the cognitive sciences? This question raises the issue of Merleau-Ponty’s conception of the relationship between the sciences and philosophy, and of what he took the philosophical significance of his phenomenology to be. In this article I suggest an answer to this question through a discussion of certain claims made in connection to the “post-cognitivist” approach to cognitive science by Hubert Dreyfus, Shaun Gallagher (...)
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  30. Building a Science of Animal Minds: Lloyd Morgan, Experimentation, and Morgan’s Canon.Grant Goodrich & Simon Fitzpatrick - 2017 - Journal of the History of Biology 50 (3):525-569.
    Conwy Lloyd Morgan (1852–1936) is widely regarded as the father of modern comparative psychology. Yet, Morgan initially had significant doubts about whether a genuine science of comparative psychology was even possible, only later becoming more optimistic about our ability to make reliable inferences about the mental capacities of non-human animals. There has been a fair amount of disagreement amongst scholars of Morgan’s work about the nature, timing, and causes of this shift in Morgan’s thinking. We argue that Morgan underwent (...)
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  31. Philosophy of Mind Is (in Part) Philosophy of Computer Science.Darren Abramson - 2011 - Minds and Machines 21 (2):203-219.
    In this paper I argue that whether or not a computer can be built that passes the Turing test is a central question in the philosophy of mind. Then I show that the possibility of building such a computer depends on open questions in the philosophy of computer science: the physical Church-Turing thesis and the extended Church-Turing thesis. I use the link between the issues identified in philosophy of mind and philosophy of computer science to respond to a (...)
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  32. Formal ontology, common sense, and cognitive science.Barry Smith - 1995 - International Journal of Human-Computer Studies 43 (5-6):641–667.
    Common sense is on the one hand a certain set of processes of natural cognition - of speaking, reasoning, seeing, and so on. On the other hand common sense is a system of beliefs (of folk physics, folk psychology and so on). Over against both of these is the world of common sense, the world of objects to which the processes of natural cognition and the corresponding belief-contents standardly relate. What are the structures of this world? How does the scientific (...)
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  33. Functorial Semantics for the Advancement of the Science of Cognition.Venkata Posina, Dhanjoo N. Ghista & Sisir Roy - 2017 - Mind and Matter 15 (2):161-184.
    Cognition involves physical stimulation, neural coding, mental conception, and conscious perception. Beyond the neural coding of physical stimuli, it is not clear how exactly these component processes constitute cognition. Within mathematical sciences, category theory provides tools such as category, functor, and adjointness, which are indispensable in the explication of the mathematical calculations involved in acquiring mathematical knowledge. More speci cally, functorial semantics, in showing that theories and models can be construed as categories and functors, respectively, and in establishing the adjointness (...)
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  34. Second Philosophy and Testimonial Reliability: Philosophy of Science for STEM Students.Frank Cabrera - 2021 - European Journal for Philosophy of Science (3):1-15.
    In this paper, I describe some strategies for teaching an introductory philosophy of science course to Science, Technology, Engineering, and Mathematics (STEM) students, with reference to my own experience teaching a philosophy of science course in the Fall of 2020. The most important strategy that I advocate is what I call the “Second Philosophy” approach, according to which instructors ought to emphasize that the problems that concern philosophers of science are not manufactured and imposed by philosophers (...)
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  35. Evidence for Use: Causal Pluralism and the Role of Case Studies in Political Science Research.Sharon Crasnow - 2011 - Philosophy of the Social Sciences 41 (1):26-49.
    Most contemporary political science researchers are advocates of multimethod research, however, the value and proper role of qualitative methodologies, like case study analysis, is disputed. A pluralistic philosophy of science can shed light on this debate. Methodological pluralism is indeed valuable, but does not entail causal pluralism. Pluralism about the goals of science is relevant to the debate and suggests a focus on the difference between evidence for warrant and evidence for use. I propose that case study (...)
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  36. Isbell Conjugacy for Developing Cognitive Science.Venkata Rayudu Posina, Posina Venkata Rayudu & Sisir Roy - manuscript
    What is cognition? Equivalently, what is cognition good for? Or, what is it that would not be but for human cognition? But for human cognition, there would not be science. Based on this kinship between individual cognition and collective science, here we put forward Isbell conjugacy---the adjointness between objective geometry and subjective algebra---as a scientific method for developing cognitive science. We begin with the correspondence between categorical perception and category theory. Next, we show how the Gestalt maxim (...)
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  37. “Nietzsche’s Philology and Nietzsche’s Science: On The ‘Problem of Science’ and ‘fröhliche Wissenschaft.’.Babette Babich - 2009 - In Pascale Hummel (ed.), Metaphilology: Histories and Languages of Philology. Paris: Philologicum, 2009. Pp. 155-201.
    A discussion of Nietzsche's philology as the prelude to his philosophy of science.
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  38. Does environmental science crowd out non-epistemic values?Kinley Gillette, Stephen Andrew Inkpen & C. Tyler DesRoches - 2021 - Studies in History and Philosophy of Science Part A 87 (C):81-92.
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  39. Philosophy and Science, the Darwinian-Evolved Computational Brain, a Non-Recursive Super-Turing Machine & Our Inner-World-Producing Organ.Hermann G. W. Burchard - 2016 - Open Journal of Philosophy 6 (1):13-28.
    Recent advances in neuroscience lead to a wider realm for philosophy to include the science of the Darwinian-evolved computational brain, our inner world producing organ, a non-recursive super- Turing machine combining 100B synapsing-neuron DNA-computers based on the genetic code. The whole system is a logos machine offering a world map for global context, essential for our intentional grasp of opportunities. We start from the observable contrast between the chaotic universe vs. our orderly inner world, the noumenal cosmos. So far, (...)
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  40. Lived Experiences of Out-of-Field Senior High School Teachers Teaching Physical Science.Leizl F. Abrantes & Anna Larissa A. Bargamento - 2024 - International Journal of Multidisciplinary Educational Research and Innovation 2 (1):117- 143.
    This study investigated the experiences of Physical Science teachers who were not specialized in their field. Twelve out-of-field Physical Science teachers, selected via purposive sampling from the Schools Division of Baybay City, participated in the transcendental phenomenological study. For data collection and subsequent thematic analysis using Colaizzi's seven steps, in-depth semi-structured interviews were utilized. Five metaphors describe the study's findings in the form of emergent themes. The first theme is the Chameleon teacher described as an adaptable teacher, analogous (...)
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  41. Sir John F. W. Herschel and Charles Darwin: Nineteenth-Century Science and Its Methodology.Charles H. Pence - 2018 - Hopos: The Journal of the International Society for the History of Philosophy of Science 8 (1):108-140.
    There are a bewildering variety of claims connecting Darwin to nineteenth-century philosophy of science—including to Herschel, Whewell, Lyell, German Romanticism, Comte, and others. I argue here that Herschel’s influence on Darwin is undeniable. The form of this influence, however, is often misunderstood. Darwin was not merely taking the concept of “analogy” from Herschel, nor was he combining such an analogy with a consilience as argued for by Whewell. On the contrary, Darwin’s Origin is written in precisely the manner that (...)
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  42. Following the Science: Pandemic Policy Making and Reasonable Worst-Case Scenarios.Richard Bradley & Joe Roussos - 2021 - LSE Public Policy Review 1 (4):6.
    The UK has been ‘following the science’ in response to the COVID-19 pandemic in line with the national framework for the use of scientific advice in assessment of risk. We argue that the way in which it does so is unsatisfactory in two important respects. Firstly, pandemic policy making is not based on a comprehensive assessment of policy impacts. And secondly, the focus on reasonable worst-case scenarios as a way of managing uncertainty results in a loss of decision-relevant information (...)
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  43. The brain's 'new' science: Psychology, neurophysiology, and constraint.Gary Hatfield - 2000 - Philosophy of Science 67 (3):388-404.
    There is a strong philosophical intuition that direct study of the brain can and will constrain the development of psychological theory. When this intuition is tested against case studies on the neurophysiology and psychology of perception and memory, it turns out that psychology has led the way toward knowledge of neurophysiology. An abstract argument is developed to show that psychology can and must lead the way in neuroscientific study of mental function. The opposing intuition is based on mainly weak arguments (...)
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  44. Hume, Teleology, and the 'Science of Man'.Lorenzo Greco & Dan O'Brien - 2019 - In William Gibson, Dan O'Brien & Marius Turda (eds.), Teleology and Modernity. New York, NY: Routledge. pp. 147-64.
    There are various forms of teleological thinking central to debates in the early modern and modern periods, debates in which David Hume (1711–1776) is a key figure. In the first section, we shall introduce three levels at which teleological considerations have been incorporated into philosophical accounts of man and nature, and sketch Hume’s criticisms of these approaches. In the second section, we turn to Hume’s non-teleological ‘science of man’. In the third section, we show how Hume has an account (...)
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  45. Achieving Cumulative Progress In Understanding Crime: Some Insights from the Philosophy of Science.Jacqueline Anne Sullivan - forthcoming - Psychology, Crime and Law.
    Crime is a serious social problem, but its causes are not exclusively social. There is growing consensus that explaining and preventing it requires interdisciplinary research efforts. Indeed, the landscape of contemporary criminology includes a variety of theoretical models that incorporate psychological, biological and sociological factors. These multi-disciplinary approaches, however, have yet to radically advance scientific understandings of crime and shed light on how to manage it. In this paper, using conceptual tools on offer in the philosophy of science in (...)
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  46. Philosophy Rediscovered: An Essay on Science, Philosophy, and Myth.W. Julian Korab-Karpowicz - 2001 - Dialogue and Universalism 11 (11-12):87-96.
    The purpose of this essay is to establish a relationship between philosophy, myth, and science in reference to a historical perspective. If for methodological reasons we now disregard the above mentioned terminological difficulties and refer to a common-sense view of myth, philosophy, and science, it remains unquestionable that myth existed long before philosophy and modern science began as late as the seventeenth century.Nevertheless, this historical perspective is not introduced to affirm the positivistic view, according to which the (...)
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  47. VIII—Nietzsche, Amor Fati and The Gay Science.Tom Stern - 2013 - Proceedings of the Aristotelian Society 113 (2pt2):145-162.
    ABSTRACTAmor fati—the love of fate—is one of many Nietzschean terms which seem to point towards a positive ethics, but which appear infrequently and are seldom defined. On a traditional understanding, Nietzsche is asking us to love whatever it is that happens to have happened to us—including all sorts of horrible things. My paper analyses amor fati by looking closely at Nietzsche's most sustained discussion of the concept—in book four of The Gay Science—and at closely related passages in that book. (...)
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  48. Can there be a science of psychology? Aristotle’s de Anima and the structure and construction of science.Robert J. Hankinson - 2019 - Manuscrito 42 (4):469-515.
    This article considers whether and how there can be for Aristotle a genuine science of ‘pure’ psychology, of the soul as such, which amounts to considering whether Aristotle’s model of science in the Posterior Analytics is applicable to the de Anima.
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  49. "L'énergie en science et la théorie de l'information".Gagnon Philippe - 2022 - Connaître : Cahiers de l'Association Foi Et Culture Scientifique 58 (December):5-30.
    This is the Outline: 1. Introduction 2. L’information en première approche 3. L’information-Janus 4. À quoi sert l’information? 5. Les usages que l’on fit de la théorie de l’information 6. L’information dite de « second ordre » 7. Doit-on mettre l’information au service d’une vision théologique ? 7.1 Une incidence à partir de nos images de Dieu.
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  50. Epistemology and Science in the Image of Modern Philosophy: Rorty on Descartes and Locke.Gary Hatfield - 2001 - In Juliet Floyd & Sanford Shieh (eds.), Future pasts: the analytic tradition in twentieth-century philosophy. New York: Oxford University Press. pp. 393–413.
    In Philosophy and the Mirror of Nature (1979), Richard Rorty locates the perceived ills of modern philosophy in the "epistemological turn" of Descartes and Locke. This chapter argues that Rorty's accounts of Descartes' and Locke's philosophical work are seriously flawed. Rorty misunderstood the participation of early modern philosophers in the rise of modern science, and he misdescribed their examination of cognition as psychological rather than epistemological. His diagnostic efforts were thereby undermined, and he missed Descartes' original conception of a (...)
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