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The Philosophy of Biology: An Episodic History

New York: Cambridge University Press. Edited by David J. Depew (2004)

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  1. John Dewey and Daoist thought.James Behuniak - 2019 - Albany: SUNY Press, State University of New York.
    In this expansive and highly original two-volume work, Jim Behuniak reformulates John Dewey's late-period "Cultural turn" and proposes that its next logical step is an "intra-Cultural philosophy" that goes beyond what is commonly known as "comparative philosophy." Each volume models itself on this new approach, arguing that early Chinese thought is poised to join forces with Dewey in meeting an urgent cultural need: namely, helping the Western tradition to correct its outdated Greek-medieval assumptions, especially where these result in pre-Darwinian inferences (...)
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  • Typology and Natural Kinds in Evo-Devo.Ingo Brigandt - 2021 - In Nuño De La Rosa Laura & Müller Gerd (eds.), Evolutionary Developmental Biology: A Reference Guide. Springer. pp. 483-493.
    The traditional practice of establishing morphological types and investigating morphological organization has found new support from evolutionary developmental biology (evo-devo), especially with respect to the notion of body plans. Despite recurring claims that typology is at odds with evolutionary thinking, evo-devo offers mechanistic explanations of the evolutionary origin, transformation, and evolvability of morphological organization. In parallel, philosophers have developed non-essentialist conceptions of natural kinds that permit kinds to exhibit variation and undergo change. This not only facilitates a construal of species (...)
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  • Dispositional Properties in Evo-Devo.Christopher J. Austin & Laura Nuño de la Rosa - 2018 - In Laura Nuño de la Rosa & G. Müller (eds.), Evolutionary Developmental Biology. Springer.
    In identifying intrinsic molecular chance and extrinsic adaptive pressures as the only causally relevant factors in the process of evolution, the theoretical perspective of the Modern Synthesis had a major impact on the perceived tenability of an ontology of dispositional properties. However, since the late 1970s, an increasing number of evolutionary biologists have challenged the descriptive and explanatory adequacy of this “chance alone, extrinsic only” understanding of evolutionary change. Because morphological studies of homology, convergence, and teratology have revealed a space (...)
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  • Nature in motion.M. Drenthen, F. W. J. Keulartz & J. Proctor - 2009 - In Martin A. M. Drenthen, F. W. Jozef Keulartz & James Proctor (eds.), New visions of nature: complexity and authenticity. New York: Springer. pp. 3-18.
    As Raymond Williams famously declared, nature is one of the most complex words in the English language – and, we may confidently predict, its Germanic relatives including Dutch. The workshop that took place in June 2007 in the Netherlands, from which this volume is derived, was based on an earlier program exploring connections between our concepts of nature and related concepts of science and religion. Though one may not immediately expect these three realms to be interrelated, countless examples suggest otherwise.
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  • The Compact Compendium of Experimental Philosophy.Alexander Max Bauer & Stephan Kornmesser (eds.) - 2023 - Berlin and Boston: De Gruyter.
  • The past illuminates the present.Bruce H. Weber - 2006 - Biology and Philosophy 21 (2):287-298.
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  • Design and its discontents.Bruce H. Weber - 2011 - Synthese 178 (2):271 - 289.
    The design argument was rebutted by David Hume. He argued that the world and its contents (such as organisms) were not analogous to human artifacts. Hume further suggested that there were equally plausible alternatives to design to explain the organized complexity of the cosmos, such as random processes in multiple universes, or that matter could have inherent properties to self-organize, absent any external crafting. William Paley, writing after Hume, argued that the functional complexity of living beings, however, defied naturalistic explanations. (...)
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  • Evolutionary essentialism.Denis Walsh - 2006 - British Journal for the Philosophy of Science 57 (2):425-448.
    According to Aristotelian essentialism, the nature of an organism is constituted of a particular goal-directed disposition to produce an organism typical of its kind. This paper argues—against the prevailing orthodoxy—that essentialism of this sort is indispensable to evolutionary biology. The most powerful anti-essentialist arguments purport to show that the natures of organisms play no explanatory role in modern synthesis biology. I argue that recent evolutionary developmental biology provides compelling evidence to the contrary. Developmental biology shows that one must appeal to (...)
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  • The Current Status of the Philosophy of Biology.Peter Takacs & Michael Ruse - 2013 - Science & Education 22 (1):5-48.
  • What Was Kant’s Contribution to the Understanding of Biology?Idan Shimony - 2017 - Kant Yearbook 9 (1):159-178.
    Kant’s theory of biology in the Critique of the Power of Judgment may be rejected as obsolete and attacked from two opposite perspectives. In light of recent advances in biology one can claim contra Kant, on the one hand, that biological phenomena, which Kant held could only be explicated with the help of teleological principles, can in fact be explained in an entirely mechanical manner, or on the other, that despite the irreducibility of biology to physico-mechanical explanations, it is nonetheless (...)
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  • William Bateson from "Balanoglossus" to "Materials for the Study of Variation": The Transatlantic Roots of Discontinuity and the (Un)naturalness of Selection. [REVIEW]Erik L. Peterson - 2008 - Journal of the History of Biology 41 (2):267 - 305.
    William Bateson (1861-1926) has long occupied a controversial role in the history of biology at the turn of the twentieth century. For the most part, Bateson has been situated as the British translator of Mendel or as the outspoken antagonist of W. F. R. Weldon and Karl Pearson's biometrics program. Less has been made of Bateson's transition from embryologist to advocate for discontinuous variation, and the precise role of British and American influences in that transition, in the years leading up (...)
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  • Canguilhem’s Concepts.David Marcelo Peña-Guzmán - 2018 - Transversal: International Journal for the Historiography of Science 4:27.
    In the 1950s, George Canguilhem became known in France as a vocal exponent of the philosophy of the concept, an approach to epistemology that treated science as the highest expression of human rationality and scientific concepts as the necessary preconditions for the manifestation of scientific truth. Philosophers of the concept, Canguilhem included, viewed concepts as the key to the study of science; and science, in turn, as the key to a substantive theory of reason. This article explains what concepts are (...)
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  • Ernst Mayr, the tree of life, and philosophy of biology.Maureen A. O’Malley - 2010 - Biology and Philosophy 25 (4):529-552.
    Ernst Mayr’s influence on philosophy of biology has given the field a particular perspective on evolution, phylogeny and life in general. Using debates about the tree of life as a guide, I show how Mayrian evolutionary biology excludes numerous forms of life and many important evolutionary processes. Hybridization and lateral gene transfer are two of these processes, and they occur frequently, with important outcomes in all domains of life. Eukaryotes appear to have a more tree-like history because successful lateral events (...)
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  • ¿Fue Darwin el «Newton de la brizna de hierba»? La herencia de Kant en la teoría darwinista de la evolución.Laura Nuño de la Rosa & Arantza Etxeberria - 2010 - Endoxa 24:185-216.
    La crítica kantiana legó una doble herencia a la biología decimonónica: su noción de ciencia basada en el mecanicismo newtoniano configuró epistemológicamente la teoría de la evolución darwinista, mientras que su comprensión de los organismos se tradujo en una morfología teleológica. En este artículo planteamos dos cuestiones en torno la relación entre las ideas de Kant y Darwin: 1) si Kant habría considerado a Darwin el Newton de la biología, a lo que, con matices, respondemos afirmativamente; 2) si la física (...)
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  • Rethinking Woodger’s Legacy in the Philosophy of Biology.Daniel J. Nicholson & Richard Gawne - 2014 - Journal of the History of Biology 47 (2):243-292.
    The writings of Joseph Henry Woodger (1894–1981) are often taken to exemplify everything that was wrongheaded, misguided, and just plain wrong with early twentieth-century philosophy of biology. Over the years, commentators have said of Woodger: (a) that he was a fervent logical empiricist who tried to impose the explanatory gold standards of physics onto biology, (b) that his philosophical work was completely disconnected from biological science, (c) that he possessed no scientific or philosophical credentials, and (d) that his work was (...)
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  • Biological atomism and cell theory.Daniel J. Nicholson - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):202-211.
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  • Redundancy, Plasticity, and Detachment: The Implications of Comparative Genomics for Evolutionary Thinking.Lenny Moss - 2006 - Philosophy of Science 73 (5):930-946.
    Radically new or unexpected findings in a science demand an openness to new concepts and styles of explanation. The time is more than ripe for asking ourselves what we have learned from the research program of comparative genomics. Where not long ago the human genome was expected to reveal a close association of complexity with the quantitative expansion of the roster of unique genes, more recent findings, especially in relation to comparisons between human and chimp, have raised the bracing possibility (...)
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  • Nuance Lost in Translation: Interpretations of J. F. Blumenbach’s Anthropology in the English Speaking World.John S. Michael - 2017 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 25 (3):281-309.
    Johann Friedrich Blumenbach has been called ‘The Father of Physical Anthropology’ because of his pioneering publications describing human racial variation. He proposed a racial typology consisting of five ‘major varieties/races’ of humanity. Since the 1990s, Londa Schiebinger and other Anglophone scholars have argued that Blumenbach’s writings on race show evidence that he was significantly influenced by nineteenth-century race supremacist beliefs which held Europeans/caucasians to be the highest ranked and most beautiful race. However, these modern authors relied largely on Thomas Bendyshe’s (...)
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  • Agamben’s Fictions.Colin McQuillan - 2012 - Philosophy Compass 7 (6):376-387.
    This article argues that Agamben’s conception of fiction is crucial for understanding his recent works. I suggest that the key to understanding Agamben conception of fiction is to be found in a few curious remarks at the end of Language and Death. These remarks explain why the distinctions between life and death, animal life and human life, bare life and political forms of life, the outlaw and the sovereign, and the norm and the exception that continue to preoccupy Agamben are (...)
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  • Revisiting three decades of Biology and Philosophy: a computational topic-modeling perspective.Christophe Malaterre, Davide Pulizzotto & Francis Lareau - 2020 - Biology and Philosophy 35 (1):5.
    Though only established as a discipline since the 1970s, philosophy of biology has already triggered investigations about its own history The Oxford handbook of philosophy of biology, Oxford University Press, New York, pp 11–33, 2008). When it comes to assessing the road since travelled—the research questions that have been pursued—manuals and ontologies also offer specific viewpoints, highlighting dedicated domains of inquiry and select work. In this article, we propose to approach the history of the philosophy of biology with a complementary (...)
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  • Managing variation in the investigation of organismal development: problems and opportunities.James W. E. Lowe - 2015 - History and Philosophy of the Life Sciences 37 (4):449-473.
    This paper aims to clarify the consequences of new scientific and philosophical approaches for the practical-theoretical framework of modern developmental biology. I highlight normal development, and the instructive-permissive distinction, as key parts of this framework which shape how variation is conceptualised and managed. Furthermore, I establish the different dimensions of biological variation: the units, temporality and mode of variation. Using the analytical frame established by this, I interpret a selection of examples as challenges to the instructive-permissive distinction. These examples include (...)
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  • Philosophies of particular biological research programs.Ulrich Krohs - 2006 - Biological Theory 1 (2):182-187.
    There is a trend within philosophy of biology to concentrate on questions that are strongly related to particular biological research programs rather than on the general scope of the field and its relation to other sciences. Projects of the latter kind, of course, are followed as well but will not be the topic of this review. Shifting the focus to particular research programs reflects philosophers’ increased interest in knowledge of, and contribution to, actual biological research, which is organized in such (...)
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  • Darwin’s empirical claim and the janiform character of fitness proxies.Ulrich Krohs - 2022 - Biology and Philosophy 37 (2):1-23.
    Darwin’s claim about natural selection is reconstructed as an empirical claim about a causal connection leading from the match of the physiology of an individual and its environment to leaving surviving progeny. Variations in this match, Darwin claims, cause differences in the survival of the progeny. Modern concepts of fitness focus the survival side of this chain. Therefore, the assumption that evolutionary theory wants to explain reproductive success in terms of a modern concept of fitness has given rise to the (...)
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  • Debates in Philosophy of Biology: One Long Argument, or Many?Catherine Kendig - 2011 - International Studies in the Philosophy of Science 25 (1):73 - 81.
    Philosophy of biology, perhaps more than any other philosophy of science, is a discipline in flux. What counts as consensus and key arguments in certain areas changes rapidly.The publication of Contemporary Debates in Philosophy of Biology (2010 Wiley-Blackwell) is reviewed and is used as a catalyst to a discussion of the recent expansion of subjects and perspectives in the philosophy of biology as well as their diverse epistemological and methodological commitments.
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  • Charles Darwin and Evolution: Illustrating Human Aspects of Science. [REVIEW]Kostas Kampourakis & William F. McComas - 2010 - Science & Education 19 (6-8):637-654.
    Recently, the nature of science (NOS) has become recognized as an important element within the K-12 science curriculum. Despite differences in the ultimate lists of recommended aspects, a consensus is emerging on what specific NOS elements should be the focus of science instruction and inform textbook writers and curriculum developers. In this article, we suggest a contextualized, explicit approach addressing one core NOS aspect: the human aspects of science that include the domains of creativity, social influences and subjectivity. To illustrate (...)
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  • Analysis and/or Interpretation in Neurophysiology? A Transatlantic Discussion Between F. J. J. Buytendijk and K. S. Lashley, 1929–1932. [REVIEW]Julia Gruevska - 2022 - Journal of the History of Biology 55 (2):321-347.
    In the interwar period, biologists employed a diverse set of holistic approaches that were connected to different research methodologies. Against this background, this article explores attempts in the 1920s and 1930s to negotiate quantitative and qualitative methods in the field of neurophysiology. It focuses on the work of two scientists on different sides of the Atlantic: the Dutch animal psychologist and physiologist Frederik J.J. Buytendijk and the American neuropsychologist Karl S. Lashley, specifically analyzing their critical correspondence, 1929–1932, on the problems (...)
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  • Does Cognitive Structure Ground Social Structure? The Case of the Radical Enlightenment.Laurence Fiddick - 2020 - Journal of Cognition and Culture 20 (3-4):317-337.
    Cross-culturally two widely observed forms of social structure are individualism and ascribed hierarchies. Associated with these two types of social structure are a wide range of recurrent concomitant features. It is proposed that these two forms of social structure are common, in part, because they are associated with modular forms of understanding that lend intuitive support to them. In particular, it is proposed that individualistic open societies are associated with a folk-physics mode of construal whereas closed societies are associated with (...)
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  • The Fate of Darwinism: Evolution After the Modern Synthesis.David J. Depew & Bruce H. Weber - 2011 - Biological Theory 6 (1):89-102.
    We trace the history of the Modern Evolutionary Synthesis, and of genetic Darwinism generally, with a view to showing why, even in its current versions, it can no longer serve as a general framework for evolutionary theory. The main reason is empirical. Genetical Darwinism cannot accommodate the role of development (and of genes in development) in many evolutionary processes. We go on to discuss two conceptual issues: whether natural selection can be the “creative factor” in a new, more general framework (...)
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  • ¿Fue Darwin el Newton de la brizna de hierba?Gustavo Caponi - 2012 - Principia: An International Journal of Epistemology 16 (1):53-79.
    http://dx.doi.org/10.5007/1808-1711.2012v16n1p53 Ratifying Haeckel and contradicting Kant’s negative prophesy, in this paper I try to show that Darwin was, really, the Newton of the blade of grass . Darwin showed how the configurations according to goals of the living beings, could be explained from a naturalistic point of view, without having to postulate the existence of an intentional agent that had arranged or prearranged then. This achievement, nevertheless, was obtained by a way that Kant could not foresee and that Haeckel could (...)
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  • Whence Philosophy of Biology?Jason M. Byron - 2007 - British Journal for the Philosophy of Science 58 (3):409-422.
    A consensus exists among contemporary philosophers of biology about the history of their field. According to the received view, mainstream philosophy of science in the 1930s, 40s, and 50s focused on physics and general epistemology, neglecting analyses of the 'special sciences', including biology. The subdiscipline of philosophy of biology emerged (and could only have emerged) after the decline of logical positivism in the 1960s and 70s. In this article, I present bibliometric data from four major philosophy of science journals (Erkenntnis, (...)
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  • Marjorie Grene: A Remembrance with Special Attention to Her Importance for ISHPSSB.Richard Burian - 2009 - Biological Theory 4 (2):183-187.
  • Functionalism and structuralism as philosophical stances: van Fraassen meets the philosophy of biology.Sandy C. Boucher - 2015 - Biology and Philosophy 30 (3):383-403.
    I consider the broad perspectives in biology known as ‘functionalism’ and ‘structuralism’, as well as a modern version of functionalism, ‘adaptationism’. I do not take a position on which of these perspectives is preferable; my concern is with the prior question, how should they be understood? Adapting van Fraassen’s argument for treating materialism as a stance, rather than a factual belief with propositional content, in the first part of the paper I offer an argument for construing functionalism and structuralism as (...)
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  • Dual Causality and the Autonomy of Biology.Walter J. Bock - 2017 - Acta Biotheoretica 65 (1):63-79.
    Ernst Mayr’s concept of dual causality in biology with the two forms of causes continues to provide an essential foundation for the philosophy of biology. They are equivalent to functional and evolutionary causes with both required for full biological explanations. The natural sciences can be classified into nomological, historical nomological and historical dual causality, the last including only biology. Because evolutionary causality is unique to biology and must be included for all complete biological explanations, biology is autonomous from the physical (...)
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  • Special Issue: Philosophical Considerations in the Teaching of Biology. Part II, Evolution, Development and Genetics.Kostas Kampourakis (ed.) - 2013 - Springer (Science & Education).
  • Aspectos metafísicos na física de Newton: Deus.Bruno Camilo de Oliveira - 2011 - In Luiz Henrique de Araújo Dutra & Alexandre Meyer Luz (eds.), Coleção rumos da epistemologia. Florianópolis, SC, Brasil: NEL/UFSC. pp. 186-201.
    CAMILO, Bruno. Aspectos metafísicos na física de Newton: Deus. In: DUTRA, Luiz Henrique de Araújo; LUZ, Alexandre Meyer (org.). Temas de filosofia do conhecimento. Florianópolis: NEL/UFSC, 2011. p. 186-201. (Coleção rumos da epistemologia; 11). Através da análise do pensamento de Isaac Newton (1642-1727) encontramos os postulados metafísicos que fundamentam a sua mecânica natural. Ao deduzir causa de efeito, ele acreditava chegar a uma causa primeira de todas as coisas. A essa primeira causa de tudo, onde toda a ordem e leis (...)
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  • Conceptual Change in the History of Science: Life, Mind, and Disease.Paul Thagard - unknown
    Biology is the study of life, psychology is the study of mind, and medicine is the investigation of the causes and treatments of disease. This chapter describes how the central concepts of life, mind, and disease have undergone fundamental changes in the past 150 years or so. There has been a progression from theological, to qualitative, to mechanistic explanations of the nature of life, mind and disease. This progression has involved both theoretical change, as new theories with greater explanatory power (...)
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  • Explanation and teleology in Aristotle's Philosophy of Nature.Mariska Elisabeth Maria Philomena Johannes Leunissen - unknown
    This dissertation explores Aristotle’s use of teleology as a principle of explanation, especially as it is used in the natural treatises. Its main purposes are, first, to determine the function, structure, and explanatory power of teleological explanations in four of Aristotle’s natural treatises, that is, in Physica (book II), De Anima, De Partibus Animalium (including the practice in books II-IV), and De Caelo (book II). Its second purpose is to confront these findings about Aristotle’s practice in the natural treatises with (...)
     
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  • All in the Family: The History and Philosophy of Experimental Philosophy: What’s Happening in Philosophy (WHiP)-The Philosophers, September 2022.Jeff Hawley - unknown
    Experimental philosophy (x-phi) is all the rage. But shouldn't all philosophy be experimental? Jeff Hawley looks at the views of three philosophers on the role and value of x-phi. This month’s PhilosophyNews 'WHiP: The Philosophers' focuses on a chapter from The Compact Compendium of Experimental Philosophy edited by A. Bauer and S. Kornmesser (forthcoming). 'All in the Family: The History and Philosophy of Experimental Philosophy' by Justin Sytsma, Joseph Ulatowski, and Chad Gonnerman digs into the history of various philosophers who (...)
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  • All in the Family: The History and Philosophy of Experimental Philosophy.Justin Sytsma, Joseph Ulatowski & Chad Gonnerman - forthcoming - In Alexander Max Bauer & Stephan Kornmesser (eds.), The Compact Compendium of Experimental Philosophy.
    Experimental philosophy (or “x-phi”) is a way of doing philosophy. It is “traditional” philosophy, but with a little something extra: In addition to the expected philosophical arguments and engagement, x-phi involves the use of empirical methods to test the empirical claims that arise. This extra bit strikes some as a new, perhaps radical, addition to philosophical practice. We don’t think so. As this chapter will show, empirical claims have been common across the history of Western philosophy, as have appeals to (...)
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  • Téléologie et fonctions en biologie. Une approche non causale des explications téléofonctionnelles.Alberto Molina Pérez - 2017 - Dissertation, Universidad Autónoma de Madrid
    This dissertation focuses on teleology and functions in biology. More precisely, it focuses on the scientific legitimacy of teleofunctional attributions and explanations in biology. It belongs to a multi-faceted debate that can be traced back to at least the 1970s. One aspect of the debate concerns the naturalization of functions. Most authors try to reduce, translate or explain functions and teleology in terms of efficient causes so that they find their place in the framework of the natural sciences. Our approach (...)
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  • Looping kinds and social mechanisms.Jaakko Kuorikoski & Samuli Reijula - 2012 - Sociological Theory 30 (3):187-205.
    Human behavior is not always independent of the ways in which humans are scientifically classified. That there are looping effects of human kinds has been used as an argument for the methodological separation of the natural and the human sciences and to justify social constructionist claims. We suggest that these arguments rely on false presuppositions and present a mechanisms-based account of looping that provides a better way to understand the phenomenon and its theoretical and philosophical implications.
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  • Why was there no controversy over Life in the Scientific Revolution?Charles T. Wolfe - 2010 - In Victor Boantza Marcelo Dascal (ed.), Controversies in the Scientific Revolution. John Benjamins.
    Well prior to the invention of the term ‘biology’ in the early 1800s by Lamarck and Treviranus, and also prior to the appearance of terms such as ‘organism’ under the pen of Leibniz in the early 1700s, the question of ‘Life’, that is, the status of living organisms within the broader physico-mechanical universe, agitated different corners of the European intellectual scene. From modern Epicureanism to medical Newtonianism, from Stahlian animism to the discourse on the ‘animal economy’ in vitalist medicine, models (...)
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  • La función del principio de la compensación de los órganos en el transformismo de Etienne Geoffroy Saint-Hilaire.Gustavo Caponi - 2008 - Scientiae Studia 6 (2):169-178.
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