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  1. Matters of demarcation: Philosophy, biology, and the evolving fraternity between disciplines.Andrew S. Yang - 2008 - International Studies in the Philosophy of Science 22 (2):211 – 225.
    The influence that philosophy of science has had on scientific practice is as controversial as it is undeniable, especially in the case of biology. The dynamic between philosophy and biology as disciplines has developed along two different lines that can be characterized as 'paternal', on the one hand, and more 'fraternal', on the other. The role Popperian principles of demarcation and falsifiability have played in both the systematics community as well as the ongoing evolution-creation debates illustrate these contrasting forms of (...)
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  • Mathematics and Reality. [REVIEW]Simon J. Prokhovnik - 1977 - British Journal for the Philosophy of Science 28 (2):189 - 194.
  • A filosofia da ciência e a biologia.Sergio Hugo Menna - 2018 - Prometeus: Filosofia em Revista 11 (28).
    A Biologia é diferente de outras ciências naturais? Na Filosofia da ciência existe um longo e complexo debate sobre essa questão. O objetivo deste trabalho é apresentar os argumentos das principais interpretações rivais sobre esse assunto.
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  • Why We Should Care About Universal Biology.Carlos Mariscal & Leonore Fleming - 2018 - Biological Theory 13 (2):121-130.
    Our understanding of the universe has grown rapidly in recent decades. We’ve discovered evidence of water in nearby planets, discovered planets outside our solar system, mapped the genomes of thousands of organisms, and probed the very origins and limits of life. The scientific perspective of life-as-it-could-be has expanded in part by research in astrobiology, synthetic biology, and artificial life. In the face of such scientific developments, we argue there is an ever-growing need for universal biology, life-as-it-must-be, the multidisciplinary study of (...)
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  • Fundamental laws and laws of biology.Pablo Lorenzano - 2006 - In Gerhard Ernst & Karl-Georg Niebergall (eds.), Philosophie der Wissenschaft – Wissenschaft der Philosophie. Festschrift für C.Ulises Moulines zum 60. Geburstag. Mentis. pp. 129-155.
    In this paper, I discuss the problem of scientific laws in general and laws of biology in particular. After reviewing the debate around the existence of laws in biology, I examine the subject in the light of the structuralist notion of a fundamental law and argue for the law of matching as the fundamental law of genetics.
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  • A logical empiricist looks at biology. [REVIEW]David L. Hull - 1977 - British Journal for the Philosophy of Science 28 (2):181-189.
  • A matter of individuality.David L. Hull - 1978 - Philosophy of Science 45 (3):335-360.
    Biological species have been treated traditionally as spatiotemporally unrestricted classes. If they are to perform the function which they do in the evolutionary process, they must be spatiotemporally localized individuals, historical entities. Reinterpreting biological species as historical entities solves several important anomalies in biology, in philosophy of biology, and within philosophy itself. It also has important implications for any attempt to present an "evolutionary" analysis of science and for sciences such as anthropology which are devoted to the study of single (...)
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  • The individuality thesis, essences, and laws of nature.Michael T. Ghiselin - 1988 - Biology and Philosophy 3 (4):467-474.
  • Back to class: A note on the ontology of species.Arthur L. Caplan - 1981 - Philosophy of Science 48 (1):130-140.
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  • Optimal-design models and the strategy of model building in evolutionary biology.John Beatty - 1980 - Philosophy of Science 47 (4):532-561.
    The prevalence of optimality models in the literature of evolutionary biology is testimony to their popularity and importance. Evolutionary biologist R. C. Lewontin, whose criticisms of optimality models are considered here, reflects that "optimality arguments have become extremely popular in the last fifteen years, and at present represent the dominant mode of thought." Although optimality models have received little attention in the philosophical literature, these models are very interesting from a philosophical point of view. As will be argued, optimality models (...)
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  • The Context of Explanation.Martin Bunzl - 1993 - Springer Verlag.
    In this book Martin Bunzl considers the prospects for a general and comprehensive account of explanation, given the variety of interests that prompt explanations in science. Bunzl argues that any successful account of explanation must deal with two very different contexts - one static and one dynamic. Traditionally, theories of explanation have been built for the former of these two contexts. That is to say, they are designed to show how it is that a 'finished' body of scientific knowledge can (...)
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  • On natural selection and Hume's second problem.Armando Aranda-Anzaldo - 1998 - Evolution and Cognition 4 (2):156-172.
    David Hume's famous riddle of induction implies a second problem related to the question of whether the laws and principles of nature might change in the course of time. Claims have been made that modern developments in physics and astrophysics corroborate the translational invariance of the laws of physics in time. However, the appearance of a new general principle of nature, which might not be derivable from the known laws of physics, or that might actually be a non-physical one (this (...)
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  • Laws, Models, and Theories in Biology: A Unifying Interpretation.Pablo Lorenzano - 2020 - In Lorenzo Baravalle & Luciana Zaterka (eds.), Life and Evolution, History, Philosophy and Theory of the Life Sciences. pp. 163-207.
    Three metascientific concepts that have been object of philosophical analysis are the concepts oflaw, model and theory. The aim ofthis article is to present the explication of these concepts, and of their relationships, made within the framework of Sneedean or Metatheoretical Structuralism (Balzer et al. 1987), and of their application to a case from the realm of biology: Population Dynamics. The analysis carried out will make it possible to support, contrary to what some philosophers of science in general and of (...)
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  • Lo a priori constitutivo en la ciencia y las leyes (y teorías) científicas.Pablo Lorenzano - 2008 - Revista de Filosofía (Madrid) 33 (2):21-48.
    The aim of the present paper is to contribute to the discussion on the constitutive a priori in science by linking it with the discussion on scientific laws and theories, in such a way to show how the different senses of the notion of constitutive a priori are not incompatible to each other and that they can be precised in a unified, though differentiated, manner.
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  • Samostalnost znanosti o živome.Tonći Kokić - 2010 - Filozofska Istrazivanja 30 (1-2):211-229.
    Proturječnost stavova o položaju biologije unutar ili izvan područja znanosti može se podijeliti na nekoliko osnovnih pristupa. Prvi pristup smješta biologiju izvan znanstvenog područja zbog nedostatka univerzalnosti, nedostatka strogih generalizacija i nedostatka stroge kvantitativne strukture. Drugi pristup smatra biologiju znanošću koju treba svesti na fiziku. Treći pristup vidi značajne razlike između biologije s jedne, i fizike i kemije s druge strane, ali ipak tvrdi da je biologija prava znanost, no samostalna i s vlastitim pojmovnikom i metodologijom. Poredba načela prirodne znanosti (...)
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  • Exemplars, models and principles in classical genetics.Pablo Lorenzano - 2005 - In José Luis Falguera, Concha Martínez & José Miguel Sagüillo (eds.), Current Topics in Logic and Analytic Philosophy/Temas actuales de Lógica y Filosofía Analítica. University of Santiago de Compostela. pp. 89-102.
    Taking as starting point Kuhn’s analysis of science textbooks and its application to Sinnott and Dunn’s (1925), it will be discussed the problem of the existence of laws in biology. In particular, it will be showed, in accordance with the proposals of Darden (1991) and Schaffner (1980, 1986, 1993), the relevance of the exemplars, diagrammatically or graphically represented, in the way in which is carried out the teaching and learning process of classical genetics, inasmuch as the information contained in them, (...)
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