Results for 'Natural Science '

942 found
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  1. Objectivity in the Natural Sciences from the X-Phi Point of View.Petr Jedlička & Jitka Paitlová - 2019 - Teorie Vědy / Theory of Science 41 (2):229-258.
    Objectivity, as one of the key attributes of science, has become an indispensable part of its ethos and a central theme of the philosophy of science. As such, it has been a subject of philosophical reflection by a number of authors. In our project – in which both philosophers of science and scientists participate – we examine the concept of objectivity in the natural sciences with the tools of experimental philosophy. We aim to identify specific operational (...)
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  2. Psychology as a natural science in the eighteenth century.Gary Hatfield - 1994 - Revue de Synthèse 115 (3-4):375-391.
    Psychology considered as a natural science began as Aristotelian "physics" or "natural philosophy" of the soul. C. Wolff placed psychology under metaphysics, coordinate with cosmology. Scottish thinkers placed it within moral philosophy, but distinguished its "physical" laws from properly moral laws (for guiding conduct). Several Germans sought to establish an autonomous empirical psychology as a branch of natural science. British and French visual theorists developed mathematically precise theories of size and distance perception; they created instruments (...)
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  3. Remaking the science of mind: Psychology as a natural science.Gary Hatfield - 1995 - In Christopher Fox, Roy Porter & Robert Wokler (eds.), Inventing Human Science: Eighteenth Century Domains. University of California Press. pp. 184–231.
    Psychology considered as a natural science began as Aristotelian "physics" or "natural philosophy" of the soul, conceived as an animating power that included vital, sensory, and rational functions. C. Wolff restricted the term " psychology " to sensory, cognitive, and volitional functions and placed the science under metaphysics, coordinate with cosmology. Near the middle of the eighteenth century, Krueger, Godart, and Bonnet proposed approaching the mind with the techniques of the new natural science. At (...)
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  4. Nature, Science, Bayes 'Theorem, and the Whole of Reality‖.Moorad Alexanian - manuscript
    A fundamental problem in science is how to make logical inferences from scientific data. Mere data does not suffice since additional information is necessary to select a domain of models or hypotheses and thus determine the likelihood of each model or hypothesis. Thomas Bayes’ Theorem relates the data and prior information to posterior probabilities associated with differing models or hypotheses and thus is useful in identifying the roles played by the known data and the assumed prior information when making (...)
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  5. Objectivity in the Natural Sciences [Chapter 3 of Objectivity].Guy Axtell - 2015 - In Objectivity. Polity Press, 2015. Introduction and T. of Contents. Polity; Wiley. pp. 69-108.
    Chapter 3 surveys objectivity in the natural sciences. Thomas Kuhn problematized the logicist understanding of the objectivity or rationality of scientific change, providing a very different picture than that of the cumulative or step-wise progress of theoretical science. Theories often compete, and when consensus builds around one competitor it may be for a variety of reasons other than just the direct logical implications of experimental successes and failures. Kuhn pitted the study of the actual history of science (...)
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  6. The Biological Principle of Natural Sciences and the Logos of Life of Natural Philosophy: A Comparison and the Perspectives of Unifying the Science and Philosophy of Life.Attila Grandpierre - 2011 - Analecta Husserliana 110:711-727.
    Acknowledging that Nature is one unified whole, we expect that physics and biology are intimately related. Keeping in mind that physics became an exact science with which we are already familiar with, while, apparently, we do not have at present a similar knowledge about biology, we consider how can we make useful the clarity of physics to shed light to biology. The next question will be what are the most basic categories of physics and biology. If we do not (...)
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  7.  74
    Who's Anthropocene?: a data driven look at the prospects for collaboration between natural science, social science, and the humanities.Carlos Santana, K. Petrozzo & Timothy Perkins - 2024 - Digital Scholarship in the Humanities 39 (2):723-735.
    Although the idea of the Anthropocene originated in the earth sciences, there have been increasing calls for questions about the Anthropocene to be addressed by pan-disciplinary groups of researchers from across the natural sciences, social sciences, and humanities. We use data analysis techniques from corpus linguistics to examine academic texts about the Anthropocene from these disciplinary families. We read the data to suggest that barriers to a broadly interdisciplinary study of the Anthropocene are high, but we are also able (...)
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  8. 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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  9. A study proposing dialogue between natural science and theology : an investigation into the cosmological and theological theories of beginning.Lionel Fynn - unknown - Dissertation, University of South Africa
    The nature of existence, which science seeks to investigate, is dynamic as novel discoveries are constantly presented. To explain such a dynamic existence, science itself needs to be dynamic. Methodological differentiation is one way in which science expresses dynamism. Such differentiation led to the theological and the natural sciences, and conflicting views regarding the nature of existence: the theological worldview versus the natural worldview. This study is a comparison of the conflicting worldviews of the theological (...)
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  10. A quantitative history of Japanese archaeology and natural science.Hisashi Nakao - 2018 - Japanese Journal of Archaeology 6 (1):3-22.
    This study examines the relationship between Japanese archaeology and natural science through a quantitative analysis of the two most authoritative archaeological journals and two other relevant journals in Japan. First, although previous studies have emphasized the impact of the Department of Anthropology at the University of Tokyo on the scientific aspects of Japanese archaeology, results of the present study suggest that its impact has been more limited than previously assumed. Second, while previous studies claimed that research funding by (...)
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  11. Experimentation in Avicenna's Philosophy by Referring to Its Practical Application in His Works on Natural Sciences.Roohollah Fadaei & Reza Akbari - 2019 - Philosophy and Kalam 51 (2):245ß260.
    Avicenna, beside his theoretical discussions about experimentation, practically applied his experimental method to natural sciences studies such as medicine, biology, and meteorology. His theoretical discussions subsume propositions concerning the conditions under which experimental knowledge is attained, the components of this knowledge and its functions. Some of these propositions are as follows: necessity of recurrent observations for acquiring experimental knowledge, certainty plus conditional universality of such knowledge, and its role as demonstrative premises. Investigating the application of his theory in (...) sciences propound two new features which were not elaborated in the theoretical discussions: fallibility of experimental knowledge and necessity of systematic observation. This research, using the analytic method and referring to both philosophical and scientific works of Avicenna, clarifies that a comprehensive definition of experimentation is dependent on considering extracted points from practical application of experimental knowledge, beside its theoretical components. (shrink)
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  12. Special Divine Action and Natural Science.Thomas Tracy - 2015 - European Journal for Philosophy of Religion 7 (3):131--149.
    A number of modern theologians have concluded that the rise of natural science makes it necessary to give up the idea that God acts in particular ways to affect the course of events in the world. I reply to this claim, taking up the challenge to explain what might be meant by a ”special’ act of God. There are several ways to conceive of such acts, including the possibility that God might determine what is left determinable in the (...)
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  13. „Vom Kopf auf die Füße“: Zur Entwicklung des Verhältnisses von Magie und Naturwissenschaft /“Back on its Feet”: On the Development of the Relationship between Magic and Natural Science.Gregor Schiemann - 2008 - In Jahresbericht der Bergischen Universität Wuppertal.
    Eine weit verbreitete Auffassung über die wissenschaftlichen Naturverständnisse besagt, dass ihre historische Entwicklung von einer zunehmenden Abgrenzung gegenüber der Magie begleitet gewesen sei. Ursprünglich eng mit der Magie verbunden, hätten sich die wissenschaftlichen Naturverständnisse in einem langwierigen Prozess immer weiter von der Magie entfernt, bis sie ihre heutige amagische Gestalt erhalten hätten. Mein Beitrag diskutiert einige Argumente zur Stützung dieser, wie ich meine, plausiblen Auffassung. / A whitespread view of the natural sciences holds that their historical development was accompanied (...)
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  14.  49
    The art of science: Quine and the speculative reach of philosophy in natural science.Chalmers C. Clark - 1998 - Dialectica 52 (4):275–290.
    In this essay it is shown that the imaginative art of scientific theorizing – at its technical best – animates Quine's philosophy as importantly as the more Spartan norms honored in his present pantheon of virtues. By drawing a contrast between the standing of theories in philosophy and theories in science, it will be shown that the speculative reaches of philosophy, along with developments in semantic theory, now oblige an internal revision of Quine's stance against meaning as it was (...)
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  15. Cassirer's Psychology of Relations: From the Psychology of Mathematics and Natural Science to the Psychology of Culture.Samantha Matherne - 2018 - Journal for the History of Analytical Philosophy 6 (3).
    In spite of Ernst Cassirer’s criticisms of psychologism throughout Substance and Function, in the final chapter he issues a demand for a “psychology of relations” that can do justice to the subjective dimensions of mathematics and natural science. Although these remarks remain somewhat promissory, the fact that this is how Cassirer chooses to conclude Substance and Function recommends it as a topic worthy of serious consideration. In this paper, I argue that in order to work out the details (...)
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  16. Optimality and Teleology in Aristotle's Natural Science.Devin Henry - manuscript
    In this paper I examine the role of optimality reasoning in Aristotle’s natural science. By “optimality reasoning” I mean reasoning that appeals to some conception of “what is best” in order to explain why things are the way they are. We are first introduced to this pattern of reasoning in the famous passage at Phaedo 97b8-98a2, where (Plato’s) Socrates invokes “what is best” as a cause (aitia) of things in nature. This passage can be seen as the intellectual (...)
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  17. Quỹ NAFOSTED và các công bố trên hệ thống xuất bản của Nature, Science: Quả ngọt đầu mùa.Hồ Mạnh Toàn - 2018 - Khoa Học Và Phát Triển 10 (9):1-5.
    10 công bố đáng tự hào và đang góp phần làm nên uy tín cho NAFOSTED thời gian gần đây đều nằm trong các lĩnh vực khoa học tự nhiên và kỹ thuật và hầu hết là kết quả của hợp tác quốc tế.
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  18. Review: Kant, Natural Science[REVIEW]Marius Stan - 2013 - Metascience 23 (1):65-70.
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  19. Plato and Contemporary Natural Science.Richard Cole - 1977 - Southwestern Journal of Philosophy 8 (1):73-78.
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  20. (1 other version)A problem with detecting problem-solving outside the natural sciences.Terence Rajivan Edward -
    In this paper, I draw attention to an obstacle to determining to what extent the portrait of normal science as a problem-solving activity applies outside the natural sciences. I give two examples from social anthropology, one from the heyday of British structural-functionalism and one from recent British anthropology, “responding” to Marilyn Strathern’s problem of the feminist fieldworker. (NOTE: there is a duplicate of this but neither may be showing on my profile. A proverb: the guest hates the other (...)
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  21. 2006 HES Presidential Address: A Tale of Two Mainstreams: Economics and Philosophy of Natural Science in the mid-Twentieth Century.D. Wade Hands - 2007 - Journal of the History of Economic Thought 29:1-13.
    Abstract: The paper argues that mainstream economics and mainstream philosophy of natural science had much in common during the period 1945-1965. It examines seven common features of the two fields and suggests a number of historical developments that might help explain these similarities. The historical developments include: the Vienna Circle connection, the Samuelson-Harvard-Foundations connection, and the Cold War operations research connection.
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  22. The Significance of the Hypothetical in Natural Science.Michael Heidelberger & Gregor Schiemann (eds.) - 2009 - De Gruyter.
    How was the hypothetical character of theories of experience thought about throughout the history of science? The essays cover periods from the middle ages to the 19th and 20th centuries. It is fascinating to see how natural scientists and philosophers were increasingly forced to realize that a natural science without hypotheses is not possible.
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  23. Against free will in the contemporary natural sciences.Martín López-Corredoira - 2016 - In López-Corredoira Martín (ed.), Free Will: Interpretations, Implementations and Assessments. Nova Science Publ..
    The claim of the freedom of the will (understood as an individual who is transcendent to Nature) in the name of XXth century scientific knowledge, against the perspective of XVIIIth-XIXth century scientific materialism, is analysed and refuted in the present paper. The hypothesis of reductionism finds no obstacle within contemporary natural sciences. Determinism in classical physics is irrefutable, unless classical physics is itself refuted. From quantum mechanics, some authors argue that free will is possible because there is an ontological (...)
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  24. John S. Wilkins and Malte C. Ebach: The Nature of Classification: Relationships and Kinds in the Natural Sciences: Palgrave, Macmillan, 2014, pp., vii + 197, Price £60/$100.00.Catherine Kendig - 2015 - History and Philosophy of the Life Sciences 37 (4):477-479.
    John Wilkins and Malte Ebach respond to the dismissal of classification as something we need not concern ourselves with because it is, as Ernest Rutherford suggested, mere ‘‘stamp collecting.’’ They contend that classification is neither derivative of explanation or of hypothesis-making but is necessarily prior and prerequisite to it. Classification comes first and causal explanations are dependent upon it. As such it is an important (but neglected) area of philosophical study. Wilkins and Ebach reject Norwood Russell Hanson’s thesis that classification (...)
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  25. Concept Construction in Kant's "Metaphysical Foundations of Natural Science".Jennifer Nadine Mcrobert - 1995 - Dissertation, The University of Western Ontario (Canada)
    Kant's reasoning in his special metaphysics of nature is often opaque, and the character of his a priori foundation for Newtonian science is the subject of some controversy. Recent literature on the Metaphysical Foundations of Natural Science has fallen well short of consensus on the aims and reasoning in the work. Various of the doctrines and even the character of the reasoning in the Metaphysical Foundations have been taken to present insuperable obstacles to accepting Kant's claim to (...)
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  26. (1 other version)The significance of the idea of impetus for the development of natural science.Julita Slipkauskaitė - 2019 - The Digital Scholar: Philosopher's Lab 3 (2):104-109.
    scientific progress, natural philosophy of the Late Medieval Period is seen as playing the role of apologetics. For philosophers of science, with their repudiation of metaphysics, the task of providing a rational reconstruction of how scientific progress has occurred is nigh on impossible. Even explanations such as the Popperian and the Kuhnian strain under great difficulty and provide only partly satisfactory results. In his “Logik der Forschung” (1934) Karl Raimund Popper argues that metaphysics plays an accidental part in (...)
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  27. Metaphysics on the Model of Natural Science? A Kantian Critique of Abductivism.Nicholas Stang - 2023 - In Robb Dunphy & Toby Lovat (eds.), Metaphysics as a Science in Classical German Philosophy. New York, NY: Routledge/Taylor & Francis Group. pp. 339–366.
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  28. Hume's Natural Philosophy and Philosophy of Physical Science.Matias Slavov - 2020 - London: Bloomsbury Academic.
    This book contextualizes David Hume's philosophy of physical science, exploring both Hume's background in the history of early modern natural philosophy and its subsequent impact on the scientific tradition.
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  29. Axiological Values in Natural Scientists and the Natural Sciences.Rem B. Edwards - 2022 - Journal of Formal Axiology: Theory and Practice 15 (1):23-37.
    This article explains that and how values and evaluations are unavoidably and conspicuously present within natural scientists and their sciences—and why they are definitely not “value-free”. It shows how such things can be rationally understood and assessed within the framework of formal axiology, the value theory developed by Robert S. Hartman and those who have been deeply influenced by his reflections. It explains Hartman’s highly plausible and applicable definitions of “good” and related value concepts. It identifies three basic kinds (...)
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  30. (1 other version)The Significance of Evidence-based Reasoning for Mathematics, Mathematics Education, Philosophy and the Natural Sciences.Bhupinder Singh Anand - forthcoming
    In this multi-disciplinary investigation we show how an evidence-based perspective of quantification---in terms of algorithmic verifiability and algorithmic computability---admits evidence-based definitions of well-definedness and effective computability, which yield two unarguably constructive interpretations of the first-order Peano Arithmetic PA---over the structure N of the natural numbers---that are complementary, not contradictory. The first yields the weak, standard, interpretation of PA over N, which is well-defined with respect to assignments of algorithmically verifiable Tarskian truth values to the formulas of PA under the (...)
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  31. The Draughtsman Reconsidered: Popper and the Ontology of Natural Science.Brian Baigrie - 1981 - Proceedings of the Sixth International Wittgenstein Symposium:361-363.
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  32. The natural vs. The human sciences: myth, methodology and ontology.Rögnvaldur Ingthorsson - 2013 - Discusiones Filosóficas 14 (22):25-41.
    I argue that the human sciences (i.e. humanities, social- and behavioural sciences) should not try to imitate the methodology of the natural sciences. The human sciences study meaningful phenomena whose nature is decisively different from the merely physical phenomena studied by the natural sciences, and whose study therefore require different methods; meaningful phenomena do not obviously obey natural laws while the merely physical necessarily does. This is not to say that the human sciences do not study an (...)
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  33. Applied Evolutionary Epistemology: A new methodology to enhance interdisciplinary research between the human and natural sciences.Nathalie Gontier - 2012 - Kairos 1 (4):7-49.
    info:eu-repo/semantics/publishedVersion.
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  34. A Natural History of Natural Theology: The Cognitive Science of Theology and Philosophy of Religion.Helen De Cruz & Johan De Smedt - 2014 - Cambridge, Massachusetts: MIT Press.
    [from the publisher's website] Questions about the existence and attributes of God form the subject matter of natural theology, which seeks to gain knowledge of the divine by relying on reason and experience of the world. Arguments in natural theology rely largely on intuitions and inferences that seem natural to us, occurring spontaneously—at the sight of a beautiful landscape, perhaps, or in wonderment at the complexity of the cosmos—even to a nonphilosopher. In this book, Helen De Cruz (...)
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  35. Plato’s Timaeus and the Limits of Natural Science.Ian MacFarlane - 2023 - Apeiron 56 (3):495-517.
    The relationship between mind and necessity is one of the major points of difficulty for the interpretation of Plato’s Timaeus. At times Timaeus seems to say the demiurge is omnipotent in his creation, and at other times seems to say he is limited by pre-existing matter. Most interpretations take one of the two sides, but this paper proposes a novel approach to interpreting this issue which resolves the difficulty. This paper suggests that in his speech Timaeus presents two hypothetical models (...)
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  36. Naturalizing grounding: How theories of ground can engage science.Amanda Bryant - 2018 - Philosophy Compass 13 (5):e12489.
    This paper surveys some of the grounding literature searching for points of contact between theories of ground and science. I find that there are some places where a would-be naturalistic grounding theorist can draw inspiration. I synthesize a list of recommendations for how science may be put to use in theories of ground. I conclude that the prospects for naturalizing the metaphysics of ground are bright.
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  37. Introduction: The Significance of the Hypothetical in Natural Science.Michael Heidelberger & Gregor Schiemann - 2009 - In Michael Heidelberger & Gregor Schiemann (eds.), The Significance of the Hypothetical in Natural Science. De Gruyter. pp. 1-6.
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  38. Review of Kant’s Construction of NatureMichael Friedman, Kant’s Construction of Nature: A Reading of the Metaphysical Foundations of Natural Science. Cambridge: Cambridge University Press , 646 pp., $37.99. [REVIEW]Chris Smeenk - 2015 - Philosophy of Science 82 (4):718-726.
    Review of Michael Friedman, Kant’s Construction of Nature: A Reading of the Metaphysical Foundations of Natural Science. Cambridge: Cambridge University Press (2015), 646 pp., $37.99 (paper).
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  39. Bias in Science: Natural and Social.Joshua May - 2021 - Synthese 199 (1-2):3345–3366.
    Moral, social, political, and other “nonepistemic” values can lead to bias in science, from prioritizing certain topics over others to the rationalization of questionable research practices. Such values might seem particularly common or powerful in the social sciences, given their subject matter. However, I argue first that the well-documented phenomenon of motivated reasoning provides a useful framework for understanding when values guide scientific inquiry (in pernicious or productive ways). Second, this analysis reveals a parity thesis: values influence the social (...)
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  40. Natural Philosophy and the Sciences: Challenging Science’s Tunnel Vision.Arran Gare - 2018 - Philosophies 3 (4):33.
    Prior to the nineteenth century, those who are now regarded as scientists were referred to as natural philosophers. With empiricism, science was claimed to be a superior form of knowledge to philosophy, and natural philosophy was marginalized. This claim for science was challenged by defenders of natural philosophy, and this debate has continued up to the present. The vast majority of mainstream scientists are comfortable in the belief that through applying the scientific method, knowledge will (...)
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  41. Natural Experiments and Pluralism in Political Science.Sharon Crasnow - 2015 - Philosophy of the Social Sciences 45 (4-5):424-441.
    Natural experiments are an increasingly popular research design in political science. This popularity raises a number of questions. First, what are natural experiments and why are they appealing? Second, what makes a good natural experiment? And finally, are natural experiments able to provide resources for knowledge production that other methodologies cannot or do not provide? Using Mary Morgan’s and Thad Dunning’s recent work on natural experiments, I offer answers to the first two questions and (...)
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  42. Reconsidering Kantian Absolute Space in the Metaphysical Foundations of Natural Science from a Huygensian Frame.Edward Slowik - 2017 - Journal of Early Modern Studies 6 (2):119-141.
    This essay explores Kant’s concept of absolute space in the Metaphysical Foundations from the perspective of the development of the relationist interpretation of bodily interactions in the center-of-mass reference frame, a strategy that Huygens had originally pioneered and which Mach also endorsed. In contrast to the interpretations of Kant that stress a non-relationist, Newton-inspired orientation in his critical period work, it will be argued that the content and function of Kant’s utilization of this reference frame strategy places him much closer (...)
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  43. Uses of Aporia in Aristotle’s Natural Science, a Case Study: Generation of Animals.Jessica Gelber - 2017 - In George Karamanolis & Vasilis Politis (eds.), The Aporetic Tradition in Ancient Philosophy. New York: Cambridge University Press.
    This chapter is an examination of the way aporiai are employed in Aristotle’s scientific account of animal reproduction, and how they are resolved. I argue that – surprising as it may be, given what Aristotle says in Metaphysics B about the importance of going through aporiai – there seems to be nothing of much significance about his use of them, at least if we assume that genuine cases of aporiai are being tracked by use of aporia-language. I demonstrate this negative (...)
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  44. Socializing naturalized philosophy of science.Stephen M. Downes - 1993 - Philosophy of Science 60 (3):452-468.
    I propose an approach to naturalized philosophy of science that takes the social nature of scientific practice seriously. I criticize several prominent naturalistic approaches for adopting "cognitive individualism", which limits the study of science to an examination of the internal psychological mechanisms of scientists. I argue that this limits the explanatory capacity of these approaches. I then propose a three-level model of the social nature of scientific practice, and use the model to defend the claim that scientific knowledge (...)
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  45. Natural Kinds (Cambridge Elements in Philosophy of Science).Muhammad Ali Khalidi - 2023 - Cambridge University Press.
    Scientists cannot devise theories, construct models, propose explanations, make predictions, or even carry out observations, without first classifying their subject matter. The goal of scientific taxonomy is to come up with classification schemes that conform to nature's own. Another way of putting this is that science aims to devise categories that correspond to 'natural kinds.' The interest in ascertaining the real kinds of things in nature is as old as philosophy itself, but it takes on a different guise (...)
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  46. Memory, Natural Kinds, and Cognitive Extension; or, Martians Don’t Remember, and Cognitive Science Is Not about Cognition.Robert D. Rupert - 2013 - Review of Philosophy and Psychology 4 (1):25-47.
    This paper evaluates the Natural-Kinds Argument for cognitive extension, which purports to show that the kinds presupposed by our best cognitive science have instances external to human organism. Various interpretations of the argument are articulated and evaluated, using the overarching categories of memory and cognition as test cases. Particular emphasis is placed on criteria for the scientific legitimacy of generic kinds, that is, kinds characterized in very broad terms rather than in terms of their fine-grained causal roles. Given (...)
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  47. Kant's Construction of Nature: A Reading of the Metaphysical Foundations of Natural Science. By Michael Friedman. Pp. xix, 624, Cambridge University Press, 2013, £70.00. [REVIEW]Jacqueline Mariña - 2017 - Heythrop Journal 58 (3):556-560.
    An extensive review of Michael Friedman's recent book.
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  48. Science at the Service of Philosophical Dispute: George of Trebizond on Nature.Georgios Steiris - 2012 - Philotheos 12 (1):103-119.
    Georgius Trapezuntius Cretensis (or George of Trebizond) (1396-1472), an eminent humanist scholar who immigrated to Italy from Crete, is well appreciated for his translations, commentaries and treatises on philosophy, rhetoric and science. While there is a good deal of scholarship on Byzantine scholars in the Italian Renaissance, the topic of their contribution to mathematics and science in general has not to date been thoroughly addressed. This paper purports to fill this lacuna. On the basis of major evidence, I (...)
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  49. Axiomatic Natural Philosophy and the Emergence of Biology as a Science.Hein van den Berg & Boris Demarest - 2020 - Journal of the History of Biology 53 (3):379-422.
    Ernst Mayr argued that the emergence of biology as a special science in the early nineteenth century was possible due to the demise of the mathematical model of science and its insistence on demonstrative knowledge. More recently, John Zammito has claimed that the rise of biology as a special science was due to a distinctive experimental, anti-metaphysical, anti-mathematical, and anti-rationalist strand of thought coming from outside of Germany. In this paper we argue that this narrative neglects the (...)
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  50. Revaluing Laws of Nature in Secularized Science.Eli I. Lichtenstein - 2022 - In Yemima Ben-Menahem (ed.), Rethinking the Concept of Law of Nature: Natural Order in the Light of Contemporary Science. Springer. pp. 347-377.
    Discovering laws of nature was a way to worship a law-giving God, during the Scientific Revolution. So why should we consider it worthwhile now, in our own more secularized science? For historical perspective, I examine two competing early modern theological traditions that related laws of nature to different divine attributes, and their secular legacy in views ranging from Kant and Nietzsche to Humean and ‘governing’ accounts in recent analytic metaphysics. Tracing these branching offshoots of ethically charged God-concepts sheds light (...)
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