Results for 'Principles in science and philosophy'

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  1. Anthropic Bias: Observation Selection Effects in Science and Philosophy.Nick Bostrom - 2002 - New York: Routledge.
    _Anthropic Bias_ explores how to reason when you suspect that your evidence is biased by "observation selection effects"--that is, evidence that has been filtered by the precondition that there be some suitably positioned observer to "have" the evidence. This conundrum--sometimes alluded to as "the anthropic principle," "self-locating belief," or "indexical information"--turns out to be a surprisingly perplexing and intellectually stimulating challenge, one abounding with important implications for many areas in science and philosophy. There are the philosophical thought experiments (...)
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  2. Science and Theology in Descartes' "Meditations on First Philosophy".Peter E. Vedder - 1999 - Dissertation, The Catholic University of America
    "Science and Theology in Descartes' Meditations on First Philosophy" has two primary goals. The first is to establish Descartes' understanding of the primary purpose of the Meditations . The second is to determine the meaning, status, and purpose of the fundamental Cartesian theological and scientific principles employed in the Meditations. ;Descartes makes two distinct and explicit statements of the primary purpose of the Meditations. The first statement, made in the dedicatory epistle to the Meditations, claims that the (...)
     
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  3.  47
    Teleological principles in science.Lewis S. Feuer - 1978 - Inquiry: An Interdisciplinary Journal of Philosophy 21 (1):377-407.
    In the search for elementary particles, such principles are used as Gell‐mann's that ‘anything which is possible is compulsory’. This is an example of a teleological principle according to which the scientist tries to realize in science the kind of world that he desires on prior emotional grounds. Mendeleev's classical discovery of the Periodic Law and Table of Elements was thus guided by his mystical values. A mechanistic anti‐teleologist such as Jacques Loeb was indeed a crypto‐teleologist who wished (...)
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  4. Conventional Principles in Science: On the Foundations and Development of the Relativized A Priori.Milena Ivanova & Matt Farr - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 52 (Part B):111-113.
  5. Genetic Principles in Medicine and Social Science.Lancelot Hogben - 1932 - Philosophy 7 (27):351-352.
     
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  6.  26
    Philosophical Theorizing and Its Limits: Anti-Theory in Ethics and Philosophy of Science.Uri D. Leibowitz, Klodian Coko & Isaac Nevo (eds.) - 2025 - Springer.
    This book brings together scholars from ethics and philosophy of science in order to identify ways in which insights gleaned from one subfield can shed light on the other. The book focuses on two radical Anti-Theory movements that emerged in the 1970’s and 1980’s, one in philosophy of science and the other in ethics. Both movements challenged attempts to supply general, systematized philosophical theories within their domains and thus invited the reconsideration of what philosophical theorizing can (...)
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  7.  22
    The principle of participation and contemporary mechanisms of producing knowledge in science.Sofia V. Pirozhkova - 2018 - Epistemology and Philosophy of Science 55 (1):67-82.
    The article deals with the problem of how production of scientific knowledge transforms nowadays. It is shown that current situation puts forward problem of integration different types of knowledge (not only scientific) – both for producing general meanings, and scientific knowledge. This problem is reflected in several conceptions in the philosophy of science: postacademic science, technoscience, transdisciplinarity. The author pays attention to an idea to be found in these conceptions and some current basic and applied studies; she (...)
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  8. Evidence in science: a simple account of the principles of science for students of medicine and biology.George Kenneth Stone - 1966 - Bristol,: J. Wright.
  9.  52
    Introduction: first principles in science—their status and justification.Catherine Herfeld & Milena Ivanova - 2020 - Synthese 198 (Suppl 14):3297-3308.
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  10. Debunking, supervenience, and Hume’s Principle.in Particular Science & in Metaethics Realism/Anti-Realism Debates She is Currently Working on Analogies Between Debates Over Realism/Anti-Realism in the Philosophy of Mathematics - 2019 - Canadian Journal of Philosophy 49 (8):1083-1103.
    Debunking arguments against both moral and mathematical realism have been pressed, based on the claim that our moral and mathematical beliefs are insensitive to the moral/mathematical facts. In the mathematical case, I argue that the role of Hume’s Principle as a conceptual truth speaks against the debunkers’ claim that it is intelligible to imagine the facts about numbers being otherwise while our evolved responses remain the same. Analogously, I argue, the conceptual supervenience of the moral on the natural speaks presents (...)
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  11. On the status of the geodesic principle in Newtonian and relativistic physics.James Owen Weatherall - 2011 - Studies in History and Philosophy of Science Part A 42 (4):276-281.
    A theorem due to Bob Geroch and Pong Soo Jang ["Motion of a Body in General Relativity." Journal of Mathematical Physics 16, ] provides a sense in which the geodesic principle has the status of a theorem in General Relativity. I have recently shown that a similar theorem holds in the context of geometrized Newtonian gravitation [Weatherall, J. O. "The Motion of a Body in Newtonian Theories." Journal of Mathematical Physics 52, ]. Here I compare the interpretations of these two (...)
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  12.  47
    Science and Ethics, some of the Main Principles and Problems.Knut Erik Tranøy - 1987 - Grazer Philosophische Studien 30 (1):11-23.
    Science can (also) be studied as responsible and rational human activity, guided and legitimated by its own normative system: a finite and ordered set of norms and values for agents in a given field of activity. Such norms of inquiry are needed for a rationality requirement of science, which also presupposes a partial agreement on (acceptance of, respect for) these norms between scientists and their social environment. The notions of scientific accountability, autonomy, and freedom of inquiry are elucidated (...)
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  13.  2
    The unitary principle in physics and biology.Lancelot Law Whyte - 1949 - New York,: H. Holt.
    "This work springs from a conviction of the unity of nature, expressed here in a single principle. In its earliest form this conviction was merely the sense of a hidden unity of form in nature, which the intellect had not yet identified. At that stage it had little value, except in creating the need to find a rational justification for the a-rational feeling. Soon I realised that the discovery of a universal form of process was hindered by the intellectual separation (...)
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  14.  51
    (1 other version)Genetic Principles in Medicine and Social Science. By Lancelot Hogben, M.A., D.Sc. (London: Williams & Norgate, Ltd.1931. Pp. 230). Price 15s. [REVIEW]J. H. Woodger - 1932 - Philosophy 7 (27):351-.
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  15.  10
    Art, science and the body in early Romanticism.Stephanie O'Rourke - 2021 - New York: Cambridge University Press.
    Can we really trust the things our bodies tell us about the world? This book reveals how deeply intertwined cultural practices of art and science questioned the authority of the human body in the late eighteenth and early nineteenth centuries. Focusing on Henry Fuseli, Anne-Louis Girodet, and Philippe de Loutherbourg, it argues that Romantic artworks participated in a widespread crisis concerning the body as a source of reliable scientific knowledge. Rarely discussed sources and new archival material illuminate how artists (...)
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  16.  61
    Understanding Institutions: The Science and Philosophy of Living Together.Francesco Guala - 2016 - Princeton: Princeton University Press.
    Understanding Institutions proposes a new unified theory of social institutions that combines the best insights of philosophers and social scientists who have written on this topic. Francesco Guala presents a theory that combines the features of three influential views of institutions: as equilibria of strategic games, as regulative rules, and as constitutive rules. -/- Guala explains key institutions like money, private property, and marriage, and develops a much-needed unification of equilibrium- and rules-based approaches. Although he uses game theory concepts, the (...)
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  17.  15
    Who Studies the Studies of Science and Technology? On the Principle of Reflexivity from Empirical and Theoretical Points of View.Olga E. Stoliarova - 2022 - Epistemology and Philosophy of Science 59 (4):21-30.
    The article discusses the methodological principle of reflexivity as formulated within the strong program of the sociology of scientific knowledge. The applicability of this principle in science and technology studies is analyzed from empirical and theoretical points of view. The principle of reflexivity expresses the requirement of scientific universalism: it forbids the exclusion of one’s own cognitive activity and its results from the world totality of objectively observable things and processes, in this case – beliefs. In D. Bloor’s imperative (...)
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  18.  5
    The sciences and philosophy.John Scott Haldane - 1929 - [n.p.]: [London]Hodder & Stroughton.
    Illustrates various basic principles and unifying concepts in the philosophy of science as the author has discovered them in his career.
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  19.  14
    The organic principle of eurasianism and the prerequisite of change of the style of thinking dominating in modern science.T. I. Koptelova - 2015 - Liberal Arts in Russiaроссийский Гуманитарный Журналrossijskij Gumanitarnyj Žurnalrossijskij Gumanitaryj Zhurnalrossiiskii Gumanitarnyi Zhurnal 4 (6):524.
    In the article, the organic principle of the Euroasian philosophy is studied. The organic principle acts as a basis of special style of thinking and a certain methodology of scientific knowledge here. The Euroasian methodology of studying of development of society allows establishing of the nature of communications between social processes and the phenomena of wildlife. In the article, the most important components of the Euroasian organic principle of thinking are shown: special terminology and possibilities of its application for (...)
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  20.  32
    Science and First Principles.F. S. C. Northrop - 1931 - New York: Cambridge University Press.
    First published in 1931 and originally delivered as the Deems Lectures at New York University in 1929, this book examines what scientific discoveries in many different branches of science reveal, and the implications of such discoveries for philosophy. Esteemed philosopher F. S. C. Northrop surveys a variety of advances, including relativity and quantum mechanics, and how they correlate to his epistemological theory of concepts. This book will be of value to anyone with an interest in the history of (...)
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  21.  15
    History as a Real Process: Historical Science and Philosophy of History.Yuri Semyonov - 2016 - Epistemology and Philosophy of Science 47 (1):50-56.
    In this article author considers the problem of epistemology of historical knowledge. Author doesn't accept the neo-kantianism theory. He makes an attempt to differ the two forms of unitarization of scientific knowledge — theoretization and the principle of holism and, hence, the two forms of the theoretical consideration of history. The author insists that the Marxists approach seems to be the most relevant from this point of view. Thus, he defends the thesis that the idealistic concepts are much vulnerable comparing (...)
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  22.  23
    An Analysis of Aristotle’s Principles in Al-Farabi’s Study of Logic in the History and Philosophy of Science.Pirimbek Suleimenov, Yktiyar Paltore, Yesker Moldabek & Galymzhan Usenov - 2023 - Acta Baltica Historiae Et Philosophiae Scientiarum 11 (2):93-110.
    The era in which Abū Naṣr al-Fārābī emerged as a canonical scientist significantly contributed to his education and shaped his scientific worldview. The formation of al-Farabi’s spiritual worldview and his ideas is directly associated with embracing the ancient philosophical tradition, more precisely, Aristotle’s philosophy and logic. The focus of the article is alFarabi’s analysis of Aristotle’s principles in the study of logic and their further development. Al-Farabi’s worldwide reputation as the Second Teacher after Aristotle, the First Teacher, in (...)
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  23.  6
    Mathematical sciences as symbolic form: the objects and objectivity of science in Ernst Cassirer’s philosophy of science and culture.Jørgen Røysland Aarnes - 2024 - Continental Philosophy Review 57 (3):305-324.
    In this paper, I explore how Cassirer’s early and mature epistemology, philosophy of science, and philosophy of culture make up a coherent and comprehensive view of the mathematical sciences that is fruitful for understanding contemporary science. In Cassirer’s first systematic work, Substanzbegriff und Funktionsbegriff, the mathematical sciences are understood through the concept of function. This implies that scientific investigation aims at increased unity in a system of functional concepts, rather than at answering the substance-rooted question of (...)
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  24.  48
    Beyond the edge of certainty: Essays in contemporary science and philosophy.Darrel E. Christensen - 1967 - Journal of the History of Philosophy 5 (4):388-389.
    In lieu of an abstract, here is a brief excerpt of the content:388 HISTORY OF PHILOSOPHY Beyond the Edge of Certainty: Essays in Contemporary Science and Philosophy. Edited with an Introduction by Robert G. Colodny. (Englewood Cliffs, New Jersey: Prentice-Hall, Inc., 1965.) This is the second volume of lectures on various current topics in the philosophy of the physical, biological, and social sciences which has been published under the auspices of the Center for Philosophy of (...)
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  25. Principles of a system of philosophy, in accordance with which it is sought to reconcile the more difficult questions of metaphysics and religion with themselves, and with the sciences and common sense.Austin Bierbower - 1898 - Cincinnati,: Jennings & Pye.
     
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  26. ‘This inscrutable principle of an original organization’: epigenesis and ‘looseness of fit’ in Kant’s philosophy of science.John H. Zammito - 2003 - Studies in History and Philosophy of Science Part A 34 (1):73-109.
    Kant’s philosophy of science takes on sharp contour in terms of his interaction with the practicing life scientists of his day, particularly Johann Blumenbach and the latter’s student, Christoph Girtanner, who in 1796 attempted to synthesize the ideas of Kant and Blumenbach. Indeed, Kant’s engagement with the life sciences played a far more substantial role in his transcendental philosophy than has been recognized hitherto. The theory of epigenesis, especially in light of Kant’s famous analogy in the first (...)
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  27.  6
    The Principles of Natural Philosophy: In which is Shewn the Insufficiency of the Present Systems to Give Us Any Just Account of that Science : and the Necessity There is of Some New Principles in Order to Furnish Us with a True and Real Knowledge of Nature.Robert Greene, Edmund Jeffery, James Knapton & Benjamin Tooke - 1712 - Printed at the University-Press, for Edm. Jeffery ... And Are to Be Sold by James Knapton ... And Benjamin Took ... London.
  28.  91
    (1 other version)An Enquiry Concerning the Principles of Natural Knowledge.Alfred North Whitehead - 1919 - New York: Cambridge University Press.
    Alfred North Whitehead was a prominent English mathematician and philosopher who co-authored the highly influential Principia Mathematica with Bertrand Russell. Originally published in 1919, and first republished in 1925 as this Second Edition, An Enquiry Concerning the Principles of Natural Knowledge ranks among Whitehead's most important works; forming a perspective on scientific observation that incorporated a complex view of experience, rather than prioritising the position of 'pure' sense data. Alongside companion volumes The Concept of Nature and The Principle of (...)
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  29. What is Understanding? An Overview of Recent Debates in Epistemology and Philosophy of Science.Christoph Baumberger, Claus Beisbart & Georg Brun - 2017 - In Stephen Grimm Christoph Baumberger & Sabine Ammon, Explaining Understanding: New Perspectives from Epistemology and Philosophy of Science. Routledge. pp. 1-34.
    The paper provides a systematic overview of recent debates in epistemology and philosophy of science on the nature of understanding. We explain why philosophers have turned their attention to understanding and discuss conditions for “explanatory” understanding of why something is the case and for “objectual” understanding of a whole subject matter. The most debated conditions for these types of understanding roughly resemble the three traditional conditions for knowledge: truth, justification and belief. We discuss prominent views about how to (...)
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  30.  35
    Philosophy in science: an historical introduction.Michaeł Heller - 2011 - New York: Springer.
    The first task of the philosophy of nature -- The problem of elementarity -- The philosophical myth of creation : the Platonic philosophy of nature -- Aristotle's Physics -- Aristotle's method of cosmological speculation -- Descartes' mechanism -- Isaac Newton and the mathematical principles of natural philosophy -- The world of Leibniz : the best of all possible worlds -- Immanuel Kant : the a priori conditions of the sciences -- The romantic philosophy of nature (...)
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  31. The Principle of Sufficient Reason in Early Modern Philosophy of Science: Leibniz, Du Châtelet, and Euler.Aaron Wells - forthcoming - In Michael Della Rocca & Fatema Amijee, The Principle of Sufficient Reason: A History. Oxford University Press.
    I distinguish three ways in which early modern rationalists seek to apply the principle of sufficient reason to empirical science, and critically assess some of their attempts to do so. I focus especially on how these thinkers assume substantive theories of explanation and intelligibility--which are indebted to the mechanist and experimentalist traditions--in many of their deployments of this rationalist principle. A recurring problem is that these philosophers deploy their standards of intelligibility inconsistently: some of their own favored explanations do (...)
     
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  32.  51
    Methodological Universalism in Science and its Limits Imperialism Versus Complexity.Wenceslao J. Gonzalez - 2012 - Poznan Studies in the Philosophy of the Sciences and the Humanities 100 (1):155-175.
    Universalism in science, when conceived in methodological terms, leads to the problem of the limits of science. On the one hand, there is “methodological imperialism” which in principle involves a form of universalism. On the other hand, there is the multivariate complexity – structural and dynamic, as well as epistemological and ontological – which represents a huge problem for methodological universalism, as may be seen with the obstacles for scientific prediction. Within the context of the limits of (...), there is a better understanding of the issues of expansionism and imperialism. 1. Varieties of Methodological Universalism 1.1. Levels of Methodological Analysis 1.2. The Historical Dimension 2. The Limits for Methodological Universalism: The Problem of Complexity 2.1. Obstacles to Methodological Universalism Due to Complexity 2.2. Methodological Universalism and the Obstacles to Predictors from the Angle of Complexity 3. Coda: Limits of Science, Expansionism and Imperialism. (shrink)
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  33. Variational Principles in Dynamics and Quantum Theory.Wolfgang Yourgrau & Stanley Mandelstam - 1961 - British Journal for the Philosophy of Science 12 (47):259-260.
     
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  34. Indifference principle and anthropic principle in cosmology.Ernan McMullin - 1993 - Studies in History and Philosophy of Science Part A 24 (3):359-389.
    The successes scored by the big bang model of cosmic evolution in the 1960’s led to an intensive application of quantum theory to the problem of how the expansion might have begun and what its likely first stages were. It seemed as though an incredibly precise setting of the initial conditions would have been needed in order that a long-lived galactic universe containing heavy elements might develop. One response was to suppose that the fine-tuning could somehow be explained by the (...)
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  35. A History of Science, Technology, and Philosophy in the 16th, 17th, and 18th Centuries.Abraham Wolf - 1935 - Thoemmes Press. Edited by Friedrich Dannemann & A. Armitage.
    Wolf's study represents an incredible work of scholarship. A full and detailed account of three centuries of innovation, these two volumes provide a complete portrait of the foundations of modern science and philosophy. Tracing the origins and development of the achievements of the modern age, it is the story of the birth and growth of the modern mind. A thoroughly comprehensive sourcebook, it deals with all the important developments in science and many of the innovations in the (...)
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  36. Science and the Principle of Sufficient Reason: Du Châtelet contra Wolff.Aaron Wells - 2023 - Hopos: The Journal of the International Society for the History of Philosophy of Science 13 (1):24–53.
    I argue that Émilie Du Châtelet breaks with Christian Wolff regarding the scope and epistemological content of the principle of sufficient reason, despite his influence on her basic ontology and their agreement that the principle of sufficient reason has foundational importance. These differences have decisive consequences for the ways in which Du Châtelet and Wolff conceive of science.
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  37. In Defence of Bad Science and Irrational Policies: an Alternative Account of the Precautionary Principle.Stephen John - 2010 - Ethical Theory and Moral Practice 13 (1):3-18.
    In the first part of the paper, three objections to the precautionary principle are outlined: the principle requires some account of how to balance risks of significant harms; the principle focuses on action and ignores the costs of inaction; and the principle threatens epistemic anarchy. I argue that these objections may overlook two distinctive features of precautionary thought: a suspicion of the value of “full scientific certainty”; and a desire to distinguish environmental doings from allowings. In Section 2, I argue (...)
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  38.  55
    Physics Teachers’ Challenges in Using History and Philosophy of Science in Teaching.Dietmar Höttecke & Andreas Henke - 2015 - Science & Education 24 (4):349-385.
    The inclusion of the history and philosophy of science in science teaching is widely accepted, but the actual state of implementation in schools is still poor. This article investigates possible reasons for this discrepancy. The demands science teachers associate with HPS-based teaching play an important role, since these determine teachers’ decisions towards implementing its practices and ideas. We therefore investigate the perceptions of 8 HPS-experienced German middle school physics teachers within and beyond an HPS implementation project. (...)
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  39.  86
    Human Rights in Natural Science and Technology Professions’ Codes of Ethics?Hans Morten Haugen - 2013 - Business and Professional Ethics Journal 32 (1-2):49-76.
    No global professional codes for the natural science and technology professions exist. In light of how the application of new technology can affect individuals and communities, this discrepancy warrants greater scrutiny. This article analyzes the most relevant processes and seeks to explain why these processes have not resulted in global codes. Moreover, based on a human rights approach, the article gives recommendations on the future process and content of codes for science and technology professions. The relevance of human (...)
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  40.  86
    Ethics, equity and the economics of climate change paper 1: Science and philosophy.Nicholas Stern - 2014 - Economics and Philosophy 30 (3):397-444.
    This paper examines a broad range of ethical perspectives and principles relevant to the analysis of issues raised by the science of climate change and explores their implications. A second and companion paper extends this analysis to the contribution of ethics, economics and politics in understanding policy towards climate change. These tasks must start with the science which tells us that this is a problem of risk management on an immense scale. Risks on this scale take us (...)
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  41.  89
    An Applied Mereology of the City: Unifying Science and Philosophy for Urban Planning.Shane Epting - 2016 - Science and Engineering Ethics 22 (5):1361-1374.
    Based on their research showing that growing cities follow basic principles, two theoretical physicists, Luis Bettencourt and Geoffrey West, call for researchers and professionals to contribute to a grand theory of urban sustainability. In their research, they develop a ‘science of the city’ to help urban planners address problems that arise from population increases. Although they provide valuable insights for understanding urban sustainability issues, they do not give planners a manageable way to approach such problems. I argue that (...)
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  42.  4
    New Horizon of Sciences by the Principle of Nothingness and Love: a breakthrough in the crises of the world.Kiyokazu Nakatomi - 2012 - Saarbrücken, Germany: Lap Lambert Academic Publishing.
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  43. The Unitary Principle in Physics and Biology.L. L. Whyte - 1950 - British Journal for the Philosophy of Science 1 (2):166-171.
     
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  44.  6
    Women, Mechanical Science, and God in the Early Modern Period.Jacqueline Broad - 2012 - In J. B. Stump & Alan G. Padgett, The Blackwell Companion to Science and Christianity. Wiley-Blackwell. pp. 26-36.
    This chapter contains sections titled: * Margaret Cavendish (1623–1673) * Anne Conway (1631–1679) * Aphra Behn (1640–1689) * Mary Astell (1666–1731) * Conclusion * Notes * References.
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  45.  16
    Relation of normative sciences and the predisposition to act in Peirce's philosophy.José Luiz Zanette - 2023 - Cognitio 24 (1):e63651.
    The article aims to show that Peirce, after realizing the appropriation that James and others made of Pragmatism, taking it far from an ideal of justice and keeping it in the service of a “nauseating utility”, whose principle was that only individual utility, including spiritual well-being, would be the ultimate goal of all practice, he sought a philosophy that would keep logic and science united in a realistic manner with laws that could be metaphysically real. In this way, (...)
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  46.  43
    Ernest Schimmerling. Covering properties of core models. Sets and proofs. , London Mathematical Society Lecture Note Series 258. Cambridge University Press, Cambridge, 1999, pp. 281–299. - Peter Koepke. An introduction to extenders and core models for extender sequences. Logic Colloquium '87 , Studies in Logic and the Foundations of Mathematics 129. North-Holland, Amsterdam, 1989, pp. 137–182. - William J. Mitchell. The core model up to a Woodin cardinal. Logic, methodology and philosophy of science, IX , Studies in Logic and the Foundations of Mathematics 134, North-Holland, Amsterdam, 1994, pp. 157–175. - Benedikt Löwe and John R. Steel. An introduction to core model theory. Sets and proofs , London Mathematical Society Lecture Note Series 258, Cambridge University Press, Cambridge, 1999, pp. 103–157. - John R. Steel. Inner models with many Woodin cardinals. Annals of Pure and Applied Logic, vol. 65 no. 2 , pp. 185–209. - Ernest Schimmerling. Combinatorial principles in the core mode. [REVIEW]Martin Zeman - 2004 - Bulletin of Symbolic Logic 10 (4):583-588.
  47. Hermann Cohen’s History and Philosophy of Science.Lydia Patton - 2004 - Dissertation, Mcgill University
    In my dissertation, I present Hermann Cohen's foundation for the history and philosophy of science. My investigation begins with Cohen's formulation of a neo-Kantian epistemology. I analyze Cohen's early work, especially his contributions to 19th century debates about the theory of knowledge. I conclude by examining Cohen's mature theory of science in two works, The Principle of the Infinitesimal Method and its History of 1883, and Cohen's extensive 1914 Introduction to Friedrich Lange's History of Materialism. In the (...)
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  48.  7
    Philosophy in Sport Made Science in Earnest: Being an Attempt to Illustrate the First Principles of Natural Philosophy by the Aid of the Popular Toys and Sports.John Ayrton Paris & George Cruikshank - 2013 - Cambridge University Press.
    John Ayrton Paris, writer and physician, became a member of the Linnean Society in 1810, and served as president of the Royal College of Physicians from 1844 until his death. Intended for children and originally composed for the author's family, this three-volume work about science was first published in 1827. Dedicated to the writer Maria Edgeworth and with illustrations by George Cruikshank, it aims 'to blend amusement with instruction', since youth, as Paris writes, 'is naturally addicted to amusement'. Topics (...)
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  49. Philosophy in Science: Can philosophers of science permeate through science and produce scientific knowledge?Thomas Pradeu, Mael Lemoine, Mahdi Khelfaoui & Yves Gingras - 2024 - British Journal for the Philosophy of Science 75 (2).
    Most philosophers of science do philosophy ‘on’ science. By contrast, others do philosophy ‘in’ science (PinS), that is, they use philosophical tools to address scientific problems and to provide scientifically useful proposals. Here, we consider the evidence in favour of a trend of this nature. We proceed in two stages. First, we identify relevant authors and articles empirically with bibliometric tools, given that PinS would be likely to infiltrate science and thus to be published (...)
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  50.  65
    On the Surprising in Science and Logic.Jean De Groot - 1987 - Review of Metaphysics 40 (4):631 - 655.
    QUINE'S DOCTRINE of the indeterminacy of translation is made possible by the principle of substitution characteristic of extensional logic. The same characteristic makes it impossible, in philosophy of science, to choose among theoretical models no one of which is obviously best suited to explain the facts. Hilary Putnam achieved a sort of closure to the problem of reference in philosophy of science, when he pointed out the implications of the Skolem-Löwenheim theorem. He said that besides the (...)
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