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  1. How Did Darwin Arrive at His Theory? The Secondary Literature to 1982.David R. Oldroyd - 1984 - History of Science 22 (4):325-374.
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  • Narratives, mechanisms and progress in historical science.Adrian Mitchell Currie - 2014 - Synthese 191 (6):1-21.
    Geologists, Paleontologists and other historical scientists are frequently concerned with narrative explanations targeting single cases. I show that two distinct explanatory strategies are employed in narratives, simple and complex. A simple narrative has minimal causal detail and is embedded in a regularity, whereas a complex narrative is more detailed and not embedded. The distinction is illustrated through two case studies: the ‘snowball earth’ explanation of Neoproterozoic glaciation and recent attempts to explain gigantism in Sauropods. This distinction is revelatory of historical (...)
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  • Religion, polygenism and the early science of human origins.Terence D. Keel - 2013 - History of the Human Sciences 26 (2):3-32.
    American polygenism was a provocative scientific movement whose controversial claim that humankind did not share a common ancestor caused a firestorm among naturalists and the lay public beginning in the 1830s. This article gives specific attention to the largely overlooked religious ideas marshaled by American polygenists in their effort to construct race as a unit of analysis. I focus specifically on the thought of the American polygenist and renowned surgeon Dr Josiah Clark Nott (1804–73) of Mobile, Alabama. Scholars have claimed (...)
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  • Biological Individuals and Natural Kinds.Olivier Rieppel - 2013 - Biological Theory 7 (2):162-169.
    This paper takes a hierarchical approach to the question whether species are individuals or natural kinds. The thesis defended here is that species are spatiotemporally located complex wholes (individuals), that are composed of (i.e., include) causally interdependent parts, which collectively also instantiate a homeostatic property cluster (HPC) natural kind. Species may form open or closed genetic systems that are dynamic in nature, that have fuzzy boundaries due to the processual nature of speciation, that may have leaky boundaries as is manifest (...)
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  • On the Moral Considerability of Homo sapiens and Other Species.Ronald Sandler & Judith Crane - 2006 - Environmental Values 15 (1):69 - 84.
    It is sometimes claimed that as members of the species Homo sapiens we have a responsibility to promote the good of Homo sapiens itself (distinct from the good of its individual members). Lawrence Johnson has recently defended this claim as part of his approach to resolving the problem of future generations. We show that there are several difficulties with Johnson's argument, many of which are likely to attend any attempt to establish the moral considerability of Homo sapiens or species generally. (...)
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  • Darwinism Extended: A Survey of How the Idea of Cultural Evolution Evolved.Chris Buskes - 2013 - Philosophia 41 (3):661-691.
    In the past 150 years there have been many attempts to draw parallels between cultural and biological evolution. Most of these attempts were flawed due to lack of knowledge and false ideas about evolution. In recent decades these shortcomings have been cleared away, thus triggering a renewed interest in the subject. This paper offers a critical survey of the main issues and arguments in that discussion. The paper starts with an explication of the Darwinian algorithm of evolution. It is argued (...)
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  • Narratives & Mechanisms.Adrian Currie - unknown
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  • Towards a processual microbial ontology.Eric Bapteste & John Dupre - 2013 - Biology and Philosophy 28 (2):379-404.
    Standard microbial evolutionary ontology is organized according to a nested hierarchy of entities at various levels of biological organization. It typically detects and defines these entities in relation to the most stable aspects of evolutionary processes, by identifying lineages evolving by a process of vertical inheritance from an ancestral entity. However, recent advances in microbiology indicate that such an ontology has important limitations. The various dynamics detected within microbiological systems reveal that a focus on the most stable entities (or features (...)
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  • Science, metaphysics and method.James Ladyman - 2012 - Philosophical Studies 160 (1):31-51.
    While there are many examples of metaphysical theorising being heuristically and intellectually important in the progress of scientific knowledge, many people wonder how metaphysics not closely informed and inspired by empirical science could lead to rival or even supplementary knowledge about the world. This paper assesses the merits of a popular defence of the a priori methodology of metaphysics that goes as follows. The first task of the metaphysician, like the scientist, is to construct a hypothesis that accounts for the (...)
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  • Selection without replicators: the origin of genes, and the replicator/interactor distinction in etiobiology.John S. Wilkins, Ian Musgrave & Clem Stanyon - 2012 - Biology and Philosophy 27 (2):215-239.
    Genes are thought to have evolved from long-lived and multiply-interactive molecules in the early stages of the origins of life. However, at that stage there were no replicators, and the distinction between interactors and replicators did not yet apply. Nevertheless, the process of evolution that proceeded from initial autocatalytic hypercycles to full organisms was a Darwinian process of selection of favourable variants. We distinguish therefore between Neo-Darwinian evolution and the related Weismannian and Central Dogma divisions, on the one hand, and (...)
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  • Evo-Devo as a Trading Zone.Rasmus Grønfeldt Winther - 2015 - In Alan C. Love (ed.), Conceptual Change in Biology: Scientific and Philosophical Perspectives on Evolution and Development. Berlin: Springer Verlag, Boston Studies in the Philosophy of Science.
    Evo-Devo exhibits a plurality of scientific “cultures” of practice and theory. When are the cultures acting—individually or collectively—in ways that actually move research forward, empirically, theoretically, and ethically? When do they become imperialistic, in the sense of excluding and subordinating other cultures? This chapter identifies six cultures – three /styles/ (mathematical modeling, mechanism, and history) and three /paradigms/ (adaptationism, structuralism, and cladism). The key assumptions standing behind, under, or within each of these cultures are explored. Characterizing the internal structure of (...)
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  • Initial Conditions as Exogenous Factors in Spatial Explanation.Clint Ballinger - 2008 - Dissertation, University of Cambridge
    This dissertation shows how initial conditions play a special role in the explanation of contingent and irregular outcomes, including, in the form of geographic context, the special case of uneven development in the social sciences. The dissertation develops a general theory of this role, recognizes its empirical limitations in the social sciences, and considers how it might be applied to the question of uneven development. The primary purpose of the dissertation is to identify and correct theoretical problems in the study (...)
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  • David Hull: A memoir.Michael Ruse - 2010 - Biology and Philosophy 25 (5):739-747.
    David Hull: a memoir Content Type Journal Article DOI 10.1007/s10539-010-9236-0 Authors Michael Ruse, Department of Philosophy, Florida State University, Tallahassee, FL 32306, USA Journal Biology and Philosophy Online ISSN 1572-8404 Print ISSN 0169-3867.
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  • Biological Species Are Natural Kinds.Crawford L. Elder - 2008 - Southern Journal of Philosophy 46 (3):339-362.
    This paper argues that typical biological species are natural kinds, on a familiar realist understanding of natural kinds—classes of individuals across which certain properties cluster together, in virtue of the causal workings of the world. But the clustering is far from exceptionless. Virtually no properties, or property-combinations, characterize every last member of a typical species—unless they can also appear outside the species. This motivates some to hold that what ties together the members of a species is the ability to interbreed, (...)
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  • Individuals versus Individualities: A Darwinian Approach.Jorge Wagensberg, Ambrosio García Leal & Henrique G. P. Lins Barrodes - 2010 - Biological Theory 5 (1):87-95.
    The idea that natural selection acts on many levels—and not only at the level of organisms or individual genes—is increasingly accepted among biologists. However, it is not easy to reconcile this idea with the strictly “individualistic” conception of the evolutionary process that has always characterized Darwinian thought. Moreover, the individuality of some forms of life is a vague concept and therefore controversial. This is the case of Candidatus Magnetoglobus multicellularis, whose discovery immediately inspired the following question: Does the concept of (...)
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  • Relatedness: Capturing Cohesion in Biological Systems.Jürgen Gadau & Manfred D. Laubichler - 2006 - Biological Theory 1 (4):414-417.
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  • Intrinsic Value of Species.Frank Glen Avantaggio - 1993 - Dissertation, University of Hawai'i
    This is an essay about ethics and environmental responsibility. The thesis is that biologic species qua species--not only as collections of individuals or as elements of ecosystems--deserve moral regard. The argument establishes moral considerability on powers and freedoms of relative self-determination and autonomy. It is argued that species are living beings in their own right with their own projects and interests which deserve special regard. The essay draws from the arguments of Plato, Aristotle, Plotinus, Boethius, Avicenna, Maimonides, Leibniz, Spinoza, Kant, (...)
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  • Why was Darwin’s view of species rejected by twentieth century biologists?James Mallet - 2010 - Biology and Philosophy 25 (4):497-527.
    Historians and philosophers of science agree that Darwin had an understanding of species which led to a workable theory of their origins. To Darwin species did not differ essentially from ‘varieties’ within species, but were distinguishable in that they had developed gaps in formerly continuous morphological variation. Similar ideas can be defended today after updating them with modern population genetics. Why then, in the 1930s and 1940s, did Dobzhansky, Mayr and others argue that Darwin failed to understand species and speciation? (...)
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  • The series, the network, and the tree: changing metaphors of order in nature.Olivier Rieppel - 2010 - Biology and Philosophy 25 (4):475-496.
    The history of biological systematics documents a continuing tension between classifications in terms of nested hierarchies congruent with branching diagrams (the ‘Tree of Life’) versus reticulated relations. The recognition of conflicting character distribution led to the dissolution of the scala naturae into reticulated systems, which were then transformed into phylogenetic trees by the addition of a vertical axis. The cladistic revolution in systematics resulted in a representation of phylogeny as a strictly bifurcating pattern (cladogram). Due to the ubiquity of character (...)
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  • Prediction in selectionist evolutionary theory.Rasmus Gr⊘Nfeldt Winther - 2009 - Philosophy of Science 76 (5):889-901.
    Selectionist evolutionary theory has often been faulted for not making novel predictions that are surprising, risky, and correct. I argue that it in fact exhibits the theoretical virtue of predictive capacity in addition to two other virtues: explanatory unification and model fitting. Two case studies show the predictive capacity of selectionist evolutionary theory: parallel evolutionary change in E. coli, and the origin of eukaryotic cells through endosymbiosis.
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  • What philosophy of biology should be: Rosenberg, McShea: Philosophy of biology. A contemporary introduction. Routledge, 2008.Thomas Pradeu - 2011 - Biology and Philosophy 26 (1):119-127.
    This paper reviews Rosenberg’s and McShea’s textbook in philosophy of biology, entitled Philosophy of Biology. A Contemporary Introduction. I insist on the excellent quality of this textbook, then I turn to more critical comments, which deal mainly with what philosophy of biology is, and what it should be.
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  • Species as a process.Olivier Rieppel - 2008 - Acta Biotheoretica (1-2):33-49.
    Species are generally considered to be the basic units of evolution, and hence to constitute spatio-temporally bounded entities. In addition, it has been argued that species also instantiate a natural kind. Evolution is fundamentally about change. The question then is how species can remain the same through evolutionary change. Proponents of the species qua individuals thesis individuate species through their unique evolutionary origin. Individuals, or spatio-temporally located particulars in general, can be bodies, objects, events, or processes, or a combination of (...)
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  • Causal regularities in the biological world of contingent distributions.C. Kenneth Waters - 1998 - Biology and Philosophy 13 (1):5-36.
    Former discussions of biological generalizations have focused on the question of whether there are universal laws of biology. These discussions typically analyzed generalizations out of their investigative and explanatory contexts and concluded that whatever biological generalizations are, they are not universal laws. The aim of this paper is to explain what biological generalizations are by shifting attention towards the contexts in which they are drawn. I argue that within the context of any particular biological explanation or investigation, biologists employ two (...)
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  • Bacteria at the high table.Kim Sterelny - 1999 - Biology and Philosophy 14 (3):459-470.
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  • Answers to these comments.Ernst Mayr - 1987 - Biology and Philosophy 2 (2):212-225.
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  • Taxonomy and philosophy of names.Mikael Härlin & Per Sundberg - 1998 - Biology and Philosophy 13 (2):233-244.
    Although naming biological clades is a major activity in taxonomy, little attention has been paid to what these names actually refer to. In philosophy, definite descriptions have long been considered equivalent to the meaning of names and biological taxonomy is a scientific application of these ideas. One problem with definite descriptions as the meanings of names is that the name will refer to whatever fits the description rather than the intended individual (clade). Recent proposals for explicit phylogenetic definitions of clade (...)
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  • Sociology, selection, and success: A critique of David Hull's analysis of science and systematics. [REVIEW]Michael J. Donoghue - 1990 - Biology and Philosophy 5 (4):459-472.
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  • Towards a new metaphysics: The need for an enlarged philosophy ofscience. [REVIEW]Walter J. Bock - 2000 - Biology and Philosophy 15 (4):603-621.
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  • Evolution, population thinking, and essentialism.Elliott Sober - 1980 - Philosophy of Science 47 (3):350-383.
    Ernst Mayr has argued that Darwinian theory discredited essentialist modes of thought and replaced them with what he has called "population thinking". In this paper, I characterize essentialism as embodying a certain conception of how variation in nature is to be explained, and show how this conception was undermined by evolutionary theory. The Darwinian doctrine of evolutionary gradualism makes it impossible to say exactly where one species ends and another begins; such line-drawing problems are often taken to be the decisive (...)
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  • Darwin's evolutionary philosophy: The laws of change.Edward S. Reed - 1978 - Acta Biotheoretica 27 (3-4):201-235.
    The philosophical or metaphysical architecture of Darwin's theory of evolution by natural selection is analyzed and diflussed. It is argued that natural selection was for Darwin a paradigmatic case of a natural law of change — an exemplar of what Ghiselin (1969) has called selective retention laws. These selective retention laws lie at the basis of Darwin's revolutionary world view. In this essay special attention is paid to the consequences for Darwin's concept of species of his selective retention laws. Although (...)
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  • Terra incognita: Explanation and reduction in earth science.Maarten G. Kleinhans, Chris J. J. Buskes & Henk W. de Regt - 2005 - International Studies in the Philosophy of Science 19 (3):289 – 317.
    The present paper presents a philosophical analysis of earth science, a discipline that has received relatively little attention from philosophers of science. We focus on the question of whether earth science can be reduced to allegedly more fundamental sciences, such as chemistry or physics. In order to answer this question, we investigate the aims and methods of earth science, the laws and theories used by earth scientists, and the nature of earth-scientific explanation. Our analysis leads to the tentative conclusion that (...)
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  • Zum artbegriff.E. Gittenberger - 1972 - Acta Biotheoretica 21 (1-2):47-62.
    Die von der Beobachtung des menschlichen Auges unabhängigen genetischen Relationen zwischen den Individuen sind für die Begründung des Artbegriffs das Wesentliche. Die Tatsache, dass die Systematiker in der Praxis meist rein morphologisch arbeiten und nur in wenigen Ausnahmefällen das Verhalten der Individuen einander gegenüber direkt studieren, ändert daran durchaus nichts.Es gibt zwei grundverschiedene Weisen die Individuen und deren genetische Relationen zu betrachten. Entweder man schaut “horizontal”, d.h. innerhalb einer kurzen Zeitspanne, oder man übersieht das Ganze “vertikal”, d.h. ohne zeitliche Begrenzung.Anhand (...)
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  • On the metaphysics of species.Judith K. Crane - 2004 - Philosophy of Science 71 (2):156-173.
    This paper explains the metaphysical implications of the view that species are individuals (SAI). I first clarify SAI in light of the separate distinctions between individuals and classes, particulars and universals, and abstract and concrete things. I then show why the standard arguments given in defense of SAI are not compelling. Nonetheless, the ontological status of species is linked to the traditional "species problem," in that certain species concepts do entail that species are individuals. I develop the idea that species (...)
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  • Species as individuals.Berit Brogaard - 2004 - Biology and Philosophy 19 (2):223-242.
    There is no question that the constituents of cells and organisms are joined together by the part-whole relation. Genes are part of cells, and cells are part of organisms. Species taxa, however, have traditionally been conceived of, not as wholes with parts, but as classes with members. But why does the relation change abruptly from part-whole to class-membership above the level of organisms? Ghiselin, Hull and others have argued that it doesn't. Cells and organisms are cohesive mereological sums, and since (...)
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  • A Carnivorous Rejoinder to Bruers and Erdös.Timothy Hsiao - 2015 - Journal of Agricultural and Environmental Ethics 28 (6):1127-1138.
    In an earlier paper, I defended the moral permissibility of eating meat against sentience-based arguments for moral vegetarianism. The crux of my argument was that sentience is not an intrinsically morally salient property, and that animals lack moral status because they lack a root capacity for rational agency. Accordingly, it is morally permissible to consume meat even if doing so is not strictly necessary for our nutrition. This paper responds to critiques of my argument by Bruers :705–717, 2015) and Erdös. (...)
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  • Methodology in Aristotle’s Theory of Spontaneous Generation.Karen R. Zwier - 2018 - Journal of the History of Biology 51 (2):355-386.
    Aristotle’s theory of spontaneous generation offers many puzzles to those who wish to understand his theory both within the context of his biology and within the context of his more general philosophy of nature. In this paper, I approach the difficult and vague elements of Aristotle’s account of spontaneous generation not as weaknesses, but as opportunities for an interesting glimpse into the thought of an early scientist struggling to reconcile evidence and theory. The paper has two goals: to give as (...)
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  • Part-whole science.Rasmus Grønfeldt Winther - 2011 - Synthese 178 (3):397-427.
    A scientific explanatory project, part-whole explanation, and a kind of science, part-whole science are premised on identifying, investigating, and using parts and wholes. In the biological sciences, mechanistic, structuralist, and historical explanations are part-whole explanations. Each expresses different norms, explananda, and aims. Each is associated with a distinct partitioning frame for abstracting kinds of parts. These three explanatory projects can be complemented in order to provide an integrative vision of the whole system, as is shown for a detailed case study: (...)
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  • Individuals versus Individualities: A Darwinian Approach.Jorge Wagensberg, Ambrosio García Leal & Henrique G. P. Lins de Barros - 2010 - Biological Theory 5 (1):87-95.
    The idea that natural selection acts on many levels—and not only at the level of organisms or individual genes—is increasingly accepted among biologists. However, it is not easy to reconcile this idea with the strictly “individualistic” conception of the evolutionary process that has always characterized Darwinian thought. Moreover, the individuality of some forms of life is a vague concept and therefore controversial. This is the case of Candidatus Magnetoglobus multicellularis, whose discovery immediately inspired the following question: Does the concept of (...)
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  • War and peace as consequences of human nature?Lukáš Švaňa - 2023 - Ethics and Bioethics (in Central Europe) 13 (1-2):72-82.
    The issue of human nature is very complex and elusive, and mankind has been trying to unveil its elements since the beginnings of any philosophical reasoning. Whether they were questions of ontology, gnoseology, or ethics, it has been an uneasy task to uncover the complexity of the term. This article concentrates on finding ideas that support the existence of human nature and consequently searches for its possible ethical implications. I focused on the traditional issues of good vs evil, especially in (...)
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  • A Historical Taxonomy of Origin of Species Problems and Its Relevance to the Historiography of Evolutionary Thought.Koen B. Tanghe - 2017 - Journal of the History of Biology 50 (4):927-987.
    Historians tend to speak of the problem of the origin of species or the species question, as if it were a monolithic problem. In reality, the phrase refers to a, historically, surprisingly fluid and pluriform scientific issue. It has, in the course of the past five centuries, been used in no less than ten different ways or contexts. A clear taxonomy of these separate problems is useful or relevant in two ways. It certainly helps to disentangle confusions that have inevitably (...)
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  • A Historical Taxonomy of Origin of Species Problems and Its Relevance to the Historiography of Evolutionary Thought.Koen B. Tanghe - 2017 - Journal of the History of Biology 50 (4):927-987.
    Historians tend to speak of the problem of the origin of species or the species question, as if it were a monolithic problem. In reality, the phrase refers to a, historically, surprisingly fluid and pluriform scientific issue. It has, in the course of the past five centuries, been used in no less than ten different ways or contexts. A clear taxonomy of these separate problems is useful or relevant in two ways. It certainly helps to disentangle confusions that have inevitably (...)
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  • Edgar Allan Poe, Eureka, and Scientific Imagination.David N. Stamos - 2017 - SUNY Press.
    Explores the science and creative process behind Poe’s cosmological treatise. Silver Winner for Philosophy, 2017 Foreword INDIES Book of the Year Awards In 1848, almost a year and a half before Edgar Allan Poe died at the age of forty, his book Eureka was published. In it, he weaved together his scientific speculations about the universe with his own literary theory, theology, and philosophy of science. Although Poe himself considered it to be his magnum opus, Eureka has mostly been overlooked (...)
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  • Right out of the box: how to situate metaphysics of science in relation to other metaphysical approaches.Alexandre Guay & Thomas Pradeu - 2020 - Synthese 197 (5):1847-1866.
    Several advocates of the lively field of “metaphysics of science” have recently argued that a naturalistic metaphysics should be based solely on current science, and that it should replace more traditional, intuition-based, forms of metaphysics. The aim of the present paper is to assess that claim by examining the relations between metaphysics of science and general metaphysics. We show that the current metaphysical battlefield is richer and more complex than a simple dichotomy between “metaphysics of science” and “traditional metaphysics”, and (...)
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  • Biogeography, evolution, and the arrogations of the Darwin industry: J. David Archibald: Origins of Darwin’s evolution: solving the species puzzle through time and place. Columbia University Press, 2017, xii+192pp, $65.00 HB.Michael A. Flannery - 2018 - Metascience 27 (2):293-296.
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  • Developing the explanatory dimensions of part–whole realization.Ronald Endicott - 2016 - Philosophical Studies 173 (12):3347-3368.
    I use Carl Gillett’s much heralded dimensioned theory of realization as a platform to develop a plausible part–whole theory. I begin with some basic desiderata for a theory of realization that its key terms should be defined and that it should be explanatory. I then argue that Gillett’s original theory violates these conditions because its explanatory force rests upon an unspecified “in virtue of” relation. I then examine Gillett’s later version that appeals instead to theoretical terms tied to “mechanisms.” Yet (...)
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  • Frameworks for Historians & Philosophers.Adrian Currie & Kirsten Walsh - 2018 - Hopos: The Journal of the International Society for the History of Philosophy of Science 9 (1):1-34.
    The past can be a stubborn subject: it is complex, heterogeneous and opaque. To understand it, one must decide which aspects of the past to emphasise and which to minimise. Enter frameworks. Frameworks foreground certain aspects of the historical record while backgrounding others. As such, they are both necessary for, and conducive to, good history as well as good philosophy. We examine the role of frameworks in the history and philosophy of science and argue that they are necessary for both (...)
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  • Big dragons on small islands: generality and particularity in science: Review of Angela Potochnik’s idealization and the aims of science.Adrian Currie - 2018 - Biology and Philosophy 33 (3-4):20.
    Angela Potochnik’s Idealization and the Aims of Science defends an ambitious and systematic account of scientific knowledge: ultimately science pursues human understanding rather than truth. Potochnik argues that idealization is rampant and unchecked in science. Further, given that idealizations involve departures from truth, this suggests science is not primarily about truth. I explore the relationship between truths about causal patterns and scientific understanding in light of this, and suggest that Potochnik underestimates the importance and power of highly particular narrative explanations.
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  • Big dragons on small islands: generality and particularity in science: Review of Angela Potochnik’s idealization and the aims of science. [REVIEW]Adrian Currie - 2018 - Biology and Philosophy 33 (3-4):1-12.
    Angela Potochnik’s Idealization and the Aims of Science (Chicago) defends an ambitious and systematic account of scientific knowledge: ultimately science pursues human understanding rather than truth. Potochnik argues that idealization is rampant and unchecked in science. Further, given that idealizations involve departures from truth, this suggests science is not primarily about truth. I explore the relationship between truths about causal patterns and scientific understanding in light of this, and suggest that Potochnik underestimates the importance and power of highly particular narrative (...)
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  • Divided We Stand.Werner Callebaut - 2010 - Biological Theory 5 (4):295-295.
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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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