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  1. From a Logical Point of View.Willard Van Orman Quine - 1953 - Cambridge: Harvard University Press.
    Several of these essays have been printed whole in journals; others are in varying degrees new. Two main themes run through them. One is the problem of meaning, particularly as involved in the notion of an analytic statement. The other is the notion of ontological, commitment, particularly as involved in the problem of universals.
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  • Word and Object.Willard Van Orman Quine - 1960 - Les Etudes Philosophiques 17 (2):278-279.
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  • Science as a Process: An Evolutionary Account of the Social and Conceptual Development of Science.David L. Hull - 1988 - University of Chicago Press.
    "Legend is overdue for replacement, and an adequate replacement must attend to the process of science as carefully as Hull has done. I share his vision of a serious account of the social and intellectual dynamics of science that will avoid both the rosy blur of Legend and the facile charms of relativism.... Because of [Hull's] deep concern with the ways in which research is actually done, Science as a Process begins an important project in the study of science. It (...)
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  • Discovery and explanation in biology and medicine.Kenneth F. Schaffner - 1993 - Chicago: University of Chicago Press.
    Kenneth F. Schaffner compares the practice of biological and medical research and shows how traditional topics in philosophy of science—such as the nature of theories and of explanation—can illuminate the life sciences. While Schaffner pays some attention to the conceptual questions of evolutionary biology, his chief focus is on the examples that immunology, human genetics, neuroscience, and internal medicine provide for examinations of the way scientists develop, examine, test, and apply theories. Although traditional philosophy of science has regarded scientific discovery—the (...)
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  • From a Logical Point of View.Richard M. Martin - 1955 - Philosophy and Phenomenological Research 15 (4):574-575.
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  • Theory change in science: strategies from Mendelian genetics.Lindley Darden - 1991 - New York: Oxford University Press.
    This innovative book focuses on the development of the gene theory as a case study in scientific creativity.
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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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  • Interfield theories.Lindley Darden & Nancy Maull - 1977 - Philosophy of Science 44 (1):43-64.
    This paper analyzes the generation and function of hitherto ignored or misrepresented interfield theories , theories which bridge two fields of science. Interfield theories are likely to be generated when two fields share an interest in explaining different aspects of the same phenomenon and when background knowledge already exists relating the two fields. The interfield theory functions to provide a solution to a characteristic type of theoretical problem: how are the relations between fields to be explained? In solving this problem (...)
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  • Scientific Explanation.Philip Kitcher & Wesley C. Salmon (eds.) - 1962 - Univ of Minnesota Pr.
    Studdert-Kennedy, Gerald, Evidence and Explanation in Social Science. ... Kauffman, Stuart, "Articulation of Parts Explanation in Biology and the Rational ...
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  • Approaches to reduction.Kenneth F. Schaffner - 1967 - Philosophy of Science 34 (2):137-147.
    Four current accounts of theory reduction are presented, first informally and then formally: (1) an account of direct theory reduction that is based on the contributions of Nagel, Woodger, and Quine, (2) an indirect reduction paradigm due to Kemeny and Oppenheim, (3) an "isomorphic model" schema traceable to Suppes, and (4) a theory of reduction that is based on the work of Popper, Feyerabend, and Kuhn. Reference is made, in an attempt to choose between these schemas, to the explanation of (...)
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  • (3 other versions)Scientific Explanation.P. Kitcher & W. C. Salmon - 1992 - British Journal for the Philosophy of Science 43 (1):85-98.
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  • The propensity interpretation of fitness.Susan K. Mills & John H. Beatty - 1979 - Philosophy of Science 46 (2):263-286.
    The concept of "fitness" is a notion of central importance to evolutionary theory. Yet the interpretation of this concept and its role in explanations of evolutionary phenomena have remained obscure. We provide a propensity interpretation of fitness, which we argue captures the intended reference of this term as it is used by evolutionary theorists. Using the propensity interpretation of fitness, we provide a Hempelian reconstruction of explanations of evolutionary phenomena, and we show why charges of circularity which have been levelled (...)
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  • (1 other version)Discovery and Explanation in Biology and Medicine.Kenneth F. Schaffner - 1995 - Journal of the History of Biology 28 (1):172-174.
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  • Integrating Scientific Disciplines.William Bechtel (ed.) - 1986 - University of Chicago Press.
    Interdisciplinary research has been a popular idea with many people in the last 20 years. Academic administrators have admonished their faculty to become more interdisciplinary. Students often request the chance to pursue an interdisciplinary degree. While the issue of managing interdisciplinary projects has received a fair amount of attention by those interested in science management, interdisciplinary research has received little attention from historians, philosophers or sociologists of science or from scientists themselves. Yet, there l;lre a number of cases within the (...)
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  • Theory structure in the biomedical sciences.Kenneth F. Schaffner - 1980 - Journal of Medicine and Philosophy 5 (1):57-97.
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  • The Evolution of our Understanding of the Cell: A Study in the Dynamics of Scientific Progress.William Bechtel - 1984 - Studies in History and Philosophy of Science Part A 15 (4):309.
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  • Laws and Natural History in Biology.Wim J. Van Der Steen & Harmke Kamminga - 1991 - British Journal for the Philosophy of Science 42 (4):445-467.
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  • Unification and coherence as methodological objectives in the biological sciences.Richard M. Burian - 1993 - Biology and Philosophy 8 (3):301-318.
    In this paper I respond to Wim van der Steen''s arguments against the supposed current overemphasis on norms ofcoherence andinterdisciplinary integration in biology. On the normative level, I argue that these aremiddle-range norms which, although they may be misapplied in short-term attempts to solve (temporarily?) intractable problems, play a guiding role in the longer-term treatment of biological problems. This stance is supported by a case study of apartial success story, the development of the one gene — one enzyme hypothesis. As (...)
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  • Interdisciplinary integration in biology? An overview.Wim J. van der Steen - 1990 - Acta Biotheoretica 38 (1):23-36.
    Philosophical theories about reduction and integration in science are at variance with what is happenign in science. A realistic approach to science show that possibilities for reduction and integration are limited. The classical ideal of a unified science has since long been rejected in philosophy. But the current emphasis on interdisciplinary integration in philosophy and in science shows that it survives in a different guise. It is necessary to redress the balance, specifically in biology. Methodological analysis shows that many of (...)
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  • A natural alliance of teaching and philosophy of science.Peter B. Sloep & Wim J. van der Steen - 1988 - Educational Philosophy and Theory 20 (2):24–32.
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  • Mere generality is not enough.Wim J. Steen & Peter B. Sloep - 1988 - Biology and Philosophy 3 (2):217-219.
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  • Mere generality is not enough.Wim J. Van Der Steen & Peter B. Sloep - 1988 - Biology and Philosophy 3 (2):217-219.
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  • (1 other version)Reduction and genetics.David L. Hull - 1981 - Journal of Medicine and Philosophy 6 (2):125-144.
    Examples of reduction outside of physics typically concern in principle possibilities; e.g., if we had a decent psychological theory of human behavior, we could reduce it to neurophysiology once we know more. However, in one instance, a reduction is actually well underway – the reduction of Mendelian genetics to molecular biology. Empirical and conceptual difficulties in setting out this reduction have led certain philosophers to modify the traditional logical empiricist analysis of theory reduction, first, to allow for necessary corrections and, (...)
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  • Methodological problems in evolutionary biology IV. Stress and stress tolerance, an excercise in definitions.Wim J. Van der Steen & Martin Scholten - 1985 - Acta Biotheoretica 34 (1):81-90.
    Grime in a recently developed theory distinguished three basic plant strategies: stress tolerance,ruderality and competition. He relates them to environments characterized in terms of stress and disturbance. Classifications of strategies and environments both are ultimately defined in terms of production. This tends to make the theory tautological. If the theory is to make sense, environments had better be defined in independent terms.
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  • A natural alliance of teaching and philosophy of science.Peter B. Sloep & Wim J. Steen - 1988 - Educational Philosophy and Theory 20 (2):24-32.
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  • Methodological problems in evolutionary biology IV. stress and stress tolerance, an excercise in definitions.Wim J. Steen & Martin Scholten - 1985 - Acta Biotheoretica 34 (1).
    Grime (1979) in a recently developed theory distinguished three basic plant strategies: stress tolerance,ruderality and competition. He relates them to environments characterized in terms of stress and disturbance. Classifications of strategies and environments both are ultimately defined in terms of production. This tends to make the theory tautological. If the theory is to make sense, environments had better be defined in independent terms.
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  • Editor's Commentary: Dobzhansky's Contribution to the Evolutionary Synthesis.William Bechtel - 1986 - In Integrating Scientific Disciplines. University of Chicago Press. pp. 137--141.
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  • A mechanism and its metaphysics: An evolutionary account of the social and conceptual development of science. [REVIEW]David L. Hull - 1988 - Biology and Philosophy 3 (2):123-155.
    The claim that conceptual systems change is a platitude. That our conceptual systems are theory-laden is no less platitudinous. Given evolutionary theory, biologists are led to divide up the living world into genes, organisms, species, etc. in a particular way. No theory-neutral individuation of individuals or partitioning of these individuals into natural kinds is possible. Parallel observations should hold for philosophical theories about scientific theories. In this paper I summarize a theory of scientific change which I set out in considerable (...)
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  • Interdisciplinary integration in biology? An overview.Wim J. Steen - 1990 - Acta Biotheoretica 38 (1).
    Philosophical theories about reduction and integration in science are at variance with what is happenign in science. A realistic approach to science show that possibilities for reduction and integration are limited. The classical ideal of a unified science has since long been rejected in philosophy. But the current emphasis on interdisciplinary integration in philosophy and in science shows that it survives in a different guise. It is necessary to redress the balance, specifically in biology. Methodological analysis shows that many of (...)
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  • Integrating sciences by creating new disciplines: The case of cell biology. [REVIEW]William Bechtel - 1993 - Biology and Philosophy 8 (3):277-299.
    Many studies of the unification of science focus on the theories of different disciplines. The model for integration is the theory reduction model. This paper argues that the embodiment of theories in scientists, and the institutions in which scientists work and the instruments they employ, are critical to the sort of integration that actually occurs in science. This paper examines the integration of scientific endeavors that emerged in cell biology in the period after World War II when the development of (...)
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  • Science as a Process: An Evolutionary Account of the Social and Conceptual Development of Science. [REVIEW]Jane Maienschein - 1989 - Journal of the History of Biology 22 (3):507-509.
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  • Editorial announcement.R. M. - 1990 - Biology and Philosophy 5 (1):1-1.
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  • Fitness and evolutionary explanation. [REVIEW]Henry C. Byerly & Richard E. Michod - 1991 - Biology and Philosophy 6 (1):45-53.
    Recent philosophical discussions have failed to clarify the roles of the concept fitness in evolutionary theory. Neither the propensity interpretation of fitness nor the construal of fitness as a primitive theoretical term succeed in explicating the empirical content and explanatory power of the theory of natural selection. By appealing to the structure of simple mathematical models of natural selection, we separate out different contrasts which have tended to confuse discussions of fitness: the distinction between what fitness is defined as versus (...)
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