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  1. Critique of the power of judgment.Immanuel Kant - 2000 - New York: Cambridge University Press. Edited by Paul Guyer.
    The Critique of the Power of Judgment (a more accurate rendition of what has hitherto been translated as the Critique of Judgment) is the third of Kant's great critiques following the Critique of Pure Reason and the Critique of Practical Reason. This entirely new translation of Kant's masterpiece follows the principles and high standards of all other volumes in The Cambridge Edition of the Works of Immanuel Kant. This volume includes: for the first time the indispensable first draft of Kant's (...)
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  • Processes of Life: Essays in the Philosophy of Biology.John Dupré - 2011 - Oxford, GB: Oxford University Press.
    John Dupr explores recent revolutionary developments in biology and considers their relevance for our understanding of human nature and society. He reveals how the advance of genetic science is changing our view of the constituents of life, and shows how an understanding of microbiology will overturn standard assumptions about the living world.
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  • Of molecules and men.Francis Crick - 1966 - Seattle,: University of Washington Press.
    "In his third lecture Crick anticipates events and trends that have in fact come to pass in the past four decades, including the increasing use of computer technology and robotics in mind-brain research, explorations into right-side versus left-side uses of the brain, and controversies surrounding the existence of the soul."--BOOK JACKET.
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  • What is life? & mind and matter: the physical aspect of the living cell.Erwin Schrödinger - 1974 - Cambridge University Press.
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  • Biological Principles: A Critical Study.J. H. Woodger - 1948 - Routledge.
    First published in 2000. Routledge is an imprint of Taylor & Francis, an informa company.
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  • The trials of life: Natural selection and random drift.Denis M. Walsh, Andre Ariew & Tim Lewens - 2002 - Philosophy of Science 69 (3):452-473.
    We distinguish dynamical and statistical interpretations of evolutionary theory. We argue that only the statistical interpretation preserves the presumed relation between natural selection and drift. On these grounds we claim that the dynamical conception of evolutionary theory as a theory of forces is mistaken. Selection and drift are not forces. Nor do selection and drift explanations appeal to the (sub-population-level) causes of population level change. Instead they explain by appeal to the statistical structure of populations. We briefly discuss the implications (...)
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  • Organisms as natural purposes: The contemporary evolutionary perspective.D. M. Walsh - 2006 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 37 (4):771-791.
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  • The Selfish Gene. [REVIEW]Gunther S. Stent & Richard Dawkins - 1977 - Hastings Center Report 7 (6):33.
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  • Emergentism by default: A view from the bench.Ana M. Soto & Carlos Sonnenschein - 2006 - Synthese 151 (3):361-376.
    For the last 50 years the dominant stance in experimental biology has been reductionism in general, and genetic reductionism in particular. Philosophers were the first to realize that the belief that the Mendelian genes were reduced to DNA molecules was questionable. Soon, experimental data confirmed these misgivings. The optimism of molecular biologists, fueled by early success in tackling relatively simple problems has now been tempered by the difficulties encountered when applying the same simple ideas to complex problems. We analyze three (...)
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  • Reply to Alexander Rosenberg's Review of The Nature of Selection.Elliott Sober - 1986 - Behaviorism 14 (1):77-88.
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  • Self-re-production and functionality.Gerhard Schlosser - 1998 - Synthese 116 (3):303-354.
    Function and teleology can be naturalized either by reference to systems with a particular type of organization or by reference to a particular kind of history. As functions are generally ascribed to states or traits according to their current role and regardless of their origin, etiological accounts are inappropriate. Here, I offer a systems-theoretical interpretation as a new version of an organizational account of functionality, which is more comprehensive than traditional cybernetic views and provides explicit criteria for empirically testable function (...)
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  • Biological Organization and Cross-Generation Functions.Cristian Saborido, Matteo Mossio & Alvaro Moreno - 2011 - British Journal for the Philosophy of Science 62 (3):583-606.
    The organizational account of biological functions interprets functions as contributions of a trait to the maintenance of the organization that, in turn, maintains the trait. As has been recently argued, however, the account seems unable to provide a unified grounding for both intra- and cross-generation functions, since the latter do not contribute to the maintenance of the same organization which produces them. To face this ‘ontological problem’, a splitting account has been proposed, according to which the two kinds of functions (...)
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  • Autonomy in evolution: from minimal to complex life.Kepa Ruiz-Mirazo & Alvaro Moreno - 2012 - Synthese 185 (1):21-52.
    Our aim in the present paper is to approach the nature of life from the perspective of autonomy, showing that this perspective can be helpful for overcoming the traditional Cartesian gap between the physical and cognitive domains. We first argue that, although the phenomenon of life manifests itself as highly complex and multidimensional, requiring various levels of description, individual organisms constitute the core of this multifarious phenomenology. Thereafter, our discussion focuses on the nature of the organization of individual living entities, (...)
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  • Organisms, Traits, and Population Subdivisions: Two Arguments against the Causal Conception of Fitness?Grant Ramsey - 2013 - British Journal for the Philosophy of Science 64 (3):589-608.
    A major debate in the philosophy of biology centers on the question of how we should understand the causal structure of natural selection. This debate is polarized into the causal and statistical positions. The main arguments from the statistical side are that a causal construal of the theory of natural selection's central concept, fitness, either (i) leads to inaccurate predictions about population dynamics, or (ii) leads to an incoherent set of causal commitments. In this essay, I argue that neither the (...)
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  • Organisms, Traits, and Population Subdivisions: Two Arguments against the Causal Conception of Fitness?Grant30 Ramsey - 2013 - British Journal for the Philosophy of Science 64 (3):589-608.
    A major debate in the philosophy of biology centers on the question of how we should understand the causal structure of natural selection. This debate is polarized into the causal and statistical positions. The main arguments from the statistical side are that a causal construal of the theory of natural selection's central concept, fitness, either (i) leads to inaccurate predictions about population dynamics, or (ii) leads to an incoherent set of causal commitments. In this essay, I argue that neither the (...)
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  • From molecules to systems: the importance of looking both ways.Alexander Powell & John Dupré - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (1):54-64.
    Although molecular biology has meant different things at different times, the term is often associated with a tendency to view cellular causation as conforming to simple linear schemas in which macro-scale effects are specified by micro-scale structures. The early achievements of molecular biologists were important for the formation of such an outlook, one to which the discovery of recombinant DNA techniques, and a number of other findings, gave new life even after the complexity of genotype–phenotype
    relations had become apparent. Against this (...)
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  • A New Foundation for the Propensity Interpretation of Fitness.Charles H. Pence & Grant Ramsey - 2013 - British Journal for the Philosophy of Science 64 (4):851-881.
    The propensity interpretation of fitness (PIF) is commonly taken to be subject to a set of simple counterexamples. We argue that three of the most important of these are not counterexamples to the PIF itself, but only to the traditional mathematical model of this propensity: fitness as expected number of offspring. They fail to demonstrate that a new mathematical model of the PIF could not succeed where this older model fails. We then propose a new formalization of the PIF that (...)
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  • The Concept of Mechanism in Biology.Daniel J. Nicholson - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):152-163.
    The concept of mechanism in biology has three distinct meanings. It may refer to a philosophical thesis about the nature of life and biology (‘mechanicism’), to the internal workings of a machine-like structure (‘machine mechanism’), or to the causal explanation of a particular phenomenon (‘causal mechanism’). In this paper I trace the conceptual evolution of ‘mechanism’ in the history of biology, and I examine how the three meanings of this term have come to be featured in the philosophy of biology, (...)
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  • Organisms ≠ Machines.Daniel J. Nicholson - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):669-678.
    The machine conception of the organism (MCO) is one of the most pervasive notions in modern biology. However, it has not yet received much attention by philosophers of biology. The MCO has its origins in Cartesian natural philosophy, and it is based on the metaphorical redescription of the organism as a machine. In this paper I argue that although organisms and machines resemble each other in some basic respects, they are actually very different kinds of systems. I submit that the (...)
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  • An organizational account of biological functions.Matteo Mossio, Cristian Saborido & Alvaro Moreno - 2009 - British Journal for the Philosophy of Science 60 (4):813-841.
    In this paper, we develop an organizational account that defines biological functions as causal relations subject to closure in living systems, interpreted as the most typical example of organizationally closed and differentiated self-maintaining systems. We argue that this account adequately grounds the teleological and normative dimensions of functions in the current organization of a system, insofar as it provides an explanation for the existence of the function bearer and, at the same time, identifies in a non-arbitrary way the norms that (...)
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  • What Functions Explain: Functional Explanation and Self-Reproducing Systems.Beth Preston - 2002 - Mind 111 (444):888-891.
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  • 1953 and all that. A tale of two sciences.Philip Kitcher - 1984 - Philosophical Review 93 (3):335-373.
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  • 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 endurance of the mechanism—vitalism controversy.Hilde Hein - 1972 - Journal of the History of Biology 5 (1):159-188.
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  • The Endurance of the Mechanism: Vitalism Controversy.Hilde Hein - 1972 - Journal of the History of Biology 5 (1):159 - 188.
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  • Critique of the Power of Judgment.Hannah Ginsborg, Immanuel Kant, Paul Guyer & Eric Matthews - 2002 - Philosophical Review 111 (3):429.
    This new translation is an extremely welcome addition to the continuing Cambridge Edition of Kant’s works. English-speaking readers of the third Critique have long been hampered by the lack of an adequate translation of this important and difficult work. James Creed Meredith’s much-reprinted translation has charm and elegance, but it is often too loose to be useful for scholarly purposes. Moreover it does not include the first version of Kant’s introduction, the so-called “First Introduction,” which is now recognized as indispensable (...)
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  • Assigning biological functions: making sense of causal chains.Benoni B. Edin - 2008 - Synthese 161 (2):203-218.
    A meaningful distinction can be made between functions and mere effects in biological systems without resorting to teleological arguments: (i) biological systems must cope with a multitude of problems or they will cease to exist; (ii) the solutions to these problems invariably depend on circular causal chains (“feedback loops”); and (iii) biological functions are attributes of elements in biological systems that have an effect which, by contributing to the correcting behavior of a feedback control system, assists in solving a biological (...)
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  • Organisms as natural purposes: The contemporary evolutionary perspective.D. M. Walsh - 2006 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 37 (4):771-791.
    I argue that recent advances in developmental biology demonstrate the inadequacy of suborganismal mechanism. The category of the organism, construed as a ’natural purpose’ should play an ineliminable role in explaining ontogenetic development and adaptive evolution. According to Kant the natural purposiveness of organisms cannot be demonstrated to be an objective principle in nature, nor can purposiveness figure in genuine explain. I attempt to argue, by appeal to recent work on self-organization, that the purposiveness of organisms is a natural phenomenon (...)
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  • Living Causes.John Dupré - 2013 - Aristotelian Society Supplementary Volume 87 (1):19-37.
    This paper considers the applicability of standard accounts of causation to living systems. In particular it examines critically the increasing tendency to equate causal explanation with the identification of a mechanism. A range of differences between living systems and paradigm mechanisms are identified and discussed. While in principle it might be possible to accommodate an account of mechanism to these features, the attempt to do so risks reducing the idea of a mechanism to vacuity. It is proposed that the solution (...)
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  • I—John Dupré: Living Causes.John Dupré - 2013 - Aristotelian Society Supplementary Volume 87 (1):19-37.
    This paper considers the applicability of standard accounts of causation to living systems. In particular it examines critically the increasing tendency to equate causal explanation with the identification of a mechanism. A range of differences between living systems and paradigm mechanisms are identified and discussed. While in principle it might be possible to accommodate an account of mechanism to these features, the attempt to do so risks reducing the idea of a mechanism to vacuity. It is proposed that the solution (...)
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  • Cells as irreducible wholes: the failure of mechanism and the possibility of an organicist revival.Michael J. Denton, Govindasamy Kumaramanickavel & Michael Legge - 2013 - Biology and Philosophy 28 (1):31-52.
    According to vitalism, living organisms differ from machines and all other inanimate objects by being endowed with an indwelling immaterial directive agency, ‘vital force,’ or entelechy . While support for vitalism fell away in the late nineteenth century many biologists in the early twentieth century embraced a non vitalist philosophy variously termed organicism/holism/emergentism which aimed at replacing the actions of an immaterial spirit with what was seen as an equivalent but perfectly natural agency—the emergent autonomous activity of the whole organism. (...)
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  • Ins and outs of systems biology vis-à-vis molecular biology: Continuation or clear cut?Philippe De Backer, Danny De Waele & Linda Van Speybroeck - 2009 - Acta Biotheoretica 58 (1):15-49.
    The comprehension of living organisms in all their complexity poses a major challenge to the biological sciences. Recently, systems biology has been proposed as a new candidate in the development of such a comprehension. The main objective of this paper is to address what systems biology is and how it is practised. To this end, the basic tools of a systems biological approach are explored and illustrated. In addition, it is questioned whether systems biology ‘revolutionizes’ molecular biology and ‘transcends’ its (...)
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  • Regulation, necessity, and the misinterpretation of knockouts.Jamie Davies - 2009 - Bioessays 31 (8):826-830.
    Much contemporary biology consists of identifying the molecular components that associate to perform biological functions, then discovering how these functions are controlled. The concept of control is key to biological understanding, at least of the physiological kind; identifying regulators of processes underpins ideas of causality and allows complicated, multicomponent systems to be summarized in relatively simple diagrams and models. Unfortunately, as this article demonstrates by drawing on published articles, there is a growing tendency for authors to claim that a molecule (...)
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  • The Process Dynamics of Normative Function.Wayne David Christensen & Mark H. Bickhard - 2002 - The Monist 85 (1):3-28.
    Outlines the etiological theory of normative functionality. Analysis of the autonomous system; Function of systems-oriented approaches; Specifications of system identity.
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  • From the organism of a body to the body of an organism: occurrence and meaning of the word ‘organism’ from the seventeenth to the nineteenth centuries.Tobias Cheung - 2006 - British Journal for the History of Science 39 (3):319-339.
    This paper retraces the occurrence of the word ‘organism’ in writings of different authors from the seventeenth to the nineteenth centuries. It seeks to clarify chronological and conceptual shifts in the usage and meaning of the word. After earlier uses of the word in medieval sources, the Latin word organismus appeared in 1684 in Stahl's medico-physiological writings. Around 1700 it can be found in French , English , Italian and later also in German . During the eighteenth century the word (...)
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  • Normativity, agency, and life.James Barham - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):92-103.
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  • Normativity, agency, and life.James Barham - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (1):92-103.
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  • Ins and Outs of Systems Biology vis-à-vis Molecular Biology: Continuation or Clear Cut?Philippe Backer, Danny Waele & Linda Speybroeck - 2010 - Acta Biotheoretica 58 (1):15-49.
    The comprehension of living organisms in all their complexity poses a major challenge to the biological sciences. Recently, systems biology has been proposed as a new candidate in the development of such a comprehension. The main objective of this paper is to address what systems biology is and how it is practised. To this end, the basic tools of a systems biological approach are explored and illustrated. In addition, it is questioned whether systems biology ‘revolutionizes’ molecular biology and ‘transcends’ its (...)
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  • Epigenetic Inheritance and Evolution: The Lamarckian Dimension.Eva Jablonka & Marion J. Lamb - 1995 - Oxford University Press UK.
    '...a challenging and useful book, both because it provokes a careful scrutiny of one's own basic ideas regarding evolutionary theory, and because it cuts across so many biological disciplines.' -The Quarterly Review of Biology 'In my view, this work exemplifies Theoretical Biology at its best...here is rampant speculation that is consistently based on cautious reasoning from the available data. Even more refreshing is the absence of sloganeering, grandstanding, and 'isms'.' -Biology and Philosophy 'Epigenetics is fundamental to understanding both development and (...)
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  • Chance and necessity.Jacques Monod - 1971 - New York,: Vintage Books.
    Change and necessity is a statement of Darwinian natural selection as a process driven by chance necessity, devoid of purpose or intent.
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  • Death of Life: The Legacy of Molecular Biology.Stanley Shostak - 1998 - Palgrave-Macmillan.
    The Death of Life dissects biology's claim to be the Cinderella science that rose above its station. Early attempts to study life through observation, experiment and theory are exposed as the skeleton of ideas for controlling life, ideas which were only fleshed out by the biotech and genomic industries. Physicists- and chemists-turned biologists in alliance with biology's own eugenicists are shown to have abandoned the study of life and suppressed poststructuralist approaches ranging from neoLamarckism to biogeological/Gaia theory.
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  • What Genes Can't Do.Lenny Moss - 2003 - MIT Press.
    A historical and critical analysis of the concept of the gene that attempts to provide new perspectives and metaphors for the transformation of biology and its philosophy.
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  • An Introduction to the Study of Experimental Medicine.Claude Bernard, Henry Copley Greene & Lawrence Joseph Henderson - 1957 - Courier Corporation.
    The basic principles of scientific research from the great French physiologist whose contributions in the 19th century included the discovery of vasomotor nerves; nature of curare and other poisons in human body; more.
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  • The Philosophy of Biology.James Johnstone - 1914 - Cambridge University Press.
    Originally published in 1914, this book examines several key points of biological science through the lens of philosophy. Johnstone addresses the questions of consciousness, evolution and the activities of the organism, among others, with a special focus on the work of Driesch and Bergson. This book will be of value to anyone with an interest in the philosophy of science.
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  • Systems Biology: Philosophical Foundations.Fred C. Boogerd, Frank J. Bruggeman, Jan-Hendrik S. Hofmeyr & Hans V. Westerhoff (eds.) - 2007 - Boston: Elsevier.
    Systems biology is a vigorous and expanding discipline, in many ways a successor to genomics and perhaps unprecendented in its combination of biology with a ...
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  • The Philosophical Basis of Biology.John Scott Haldane - 1931 - [London]Hodder & Stoughton.
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  • Lifelines: biology beyond determinism.Steven Peter Russell Rose - 1998 - New York: Oxford University Press.
    Reductionism--understanding complex processes by breaking them into simpler elements--dominates scientific thinking around the world and has certainly proved a powerful tool, leading to major discoveries in every field of science. But reductionism can be taken too far, especially in the life sciences, where sociobiological thinking has bordered on biological determinism. Thus popular science writers such as Richard Dawkins, author of the highly influential The Selfish Gene, can write that human beings are just "robot vehicles blindly programmed to preserve the selfish (...)
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  • Life Explained.Michel Morange - 2008 - Yale University Press.
    In this accessible and fascinating book, Michel Morange draws on recent advances in molecular genetics, evolutionary biology, astrobiology, and other disciplines to find today’s answers to the question of life.
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  • What Functions Explain: Functional Explanation and Self-Reproducing Systems.Peter McLaughlin - 2000 - New York, NY: Cambridge University Press.
    This 2001 book offers an examination of functional explanation as it is used in biology and the social sciences, and focuses on the kinds of philosophical presuppositions that such explanations carry with them. It tackles such questions as: why are some things explained functionally while others are not? What do the functional explanations tell us about how these objects are conceptualized? What do we commit ourselves to when we give and take functional explanations in the life sciences and the social (...)
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  • Biology as ideology: the doctrine of DNA.Richard C. Lewontin - 1991 - New York, NY: HarperPerennial.
    Following in the fashion of Stephen Jay Gould and Peter Medawar, one of the world's leading scientists examines how "pure science" is in fact shaped and guided by social and political needs and assumptions.
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