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Henry Byerly [13]Henry C. Byerly [8]H. Byerly [1]Henry Clement Byerly [1]
  1.  89
    Realist foundations of measurement.Henry C. Byerly & Vincent A. Lazara - 1973 - Philosophy of Science 40 (1):10-28.
    This paper defends a realist interpretation of theories and a modest realism concerning the existence of quantities as providing the best account both of the logic of quantity concepts and of scientific measurement practices. Various operationist analyses of measurement are shown to be inadequate accounts of measurement practices used by scientists. We argue, furthermore, that appeals to implicit definitions to provide meaning for theoretical terms over and above operational definitions fail because implicit definitions cannot generate the requisite descriptive content. The (...)
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  2. Remnants of reductionism.G. Krishna Vemulapalli & Henry Byerly - 1999 - Foundations of Chemistry 1 (1):17-41.
    Central to many issues surrounding reduction in science is the relation between a physical system and its components. In this article we examine how thermodynamic theory relates properties of whole systems to properties of their components. In order to keep the analysis general, we focus our study on universal properties like volume, heat capacity, energy and temperature. In the cases examined we find that scientific explanation requires appeal to properties of components that are spatially as extensive as the whole system. (...)
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  3. Model-structures and model-objects.Henry Byerly - 1969 - British Journal for the Philosophy of Science 20 (2):135-144.
  4.  8
    The Many Faces of Science: An Introduction to Scientists, Values, and Society.Leslie Forster Stevenson & Henry Byerly - 2000 - Routledge.
    Intended both for undergraduate students and for general readers, this introduction to the philosophy of science uses case studies, anecdotes and personal comment to portray many heroes and villains from the field of science through the ages.
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  5.  39
    Substantial causes and nomic determination.Henry Byerly - 1979 - Philosophy of Science 46 (1):57-81.
    I characterize a notion of causal agency that is the causitive component of many transitive verbs. The agency of what I call substantial causes relates objects physically to systems with which they interact. Such agent causation does not reduce to conditionship relations, nor does it cease to play a role in scientific discourse. I argue, contrary to regularity theories, that causal claims do not in general depend for their sense on generalities nor do they entail the existence of laws. Clarification (...)
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  6. Realist Foundations of Measurement.Henry C. Byerly - 1972 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1972:375-384.
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  7.  6
    A primer of logic.Henry Byerly - 1973 - New York,: Harper & Row.
  8. The Many Faces of Science.Leslie Stevenson & Henry Byerly - 1997 - Philosophical Quarterly 47 (188):404-405.
  9. Professor Nagel on the cognitive status of scientific theories.Henry C. Byerly - 1968 - Philosophy of Science 35 (4):412-423.
    1. Introduction. Professor Nagel's account of the “cognitive status” of scientific theories has been attacked by P. K. Feyerabend [5] and M. B. Hesse [8] in terms of his alledgedly misguided distinction between experimental laws and theories. The difficulty lies, these critics agree, in Nagel's attempt to find a stable basis for scientific theories in an observational basis of experimental laws. Both Feyerabend and Hesse note the vacillation in Nagel's account of the stability of the meaning of experimental terms and (...)
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  10.  39
    Causes and Laws: The Asymmetry Puzzle.Henry Byerly - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:545 - 555.
    For many laws causal asymmetries in dependencies among the variables are not reflected in functional relations of the law equation. In the case of the simple pendulum law, why can we cite the length to explain the period but not the period to explain the length? After surveying attempts to explain the asymmetries, I propose a new account based on an analysis of the relation of causes and laws. This analysis is used to criticize the very notion of causal laws (...)
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  11.  3
    Causes and Laws: The Asymmetry Puzzle.Henry Byerly - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (1):545-555.
    How are causes and laws related? Some attempt to analyze causal relations in terms of laws, others view causal explanation as quite distinct from explanation using laws. My analysis of the relations between causes and laws focuses on cases such as the simple pendulum law where asymmetries in causal relations between quantities are not reflected in the functional dependencies in the law equations. The asymmetry puzzle has elicited a variety of accounts which reflect quite different views on the relation between (...)
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  12. Evolutionsdynamik und Sexualität: der Artbegriff in neuer Perspektive.H. Byerly - 1986 - Conceptus: Zeitschrift Fur Philosophie 20 (49):101-115.
     
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  13.  14
    Fitness as a Function.Henry Byerly - 1986 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1986:494 - 501.
    Fitness in the sense of actual rate of increase of genotypes, commonly used in population genetics, is contrasted with fitness in the ordinary sense (and Darwin's) of adaptedness of organisms. Fitness as actual reproductive success is interpreted as a function of variables representing intrinsic adaptive capacities and environmental properties. Adaptive capacities causally contribute to fitness as actual reproductive success which in turn, as relative increase of genotypes, determines evolutionary change. The propensity interpretation of fitness is shown not to play a (...)
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  14.  4
    Fitness As a Function.Henry Byerly - 1986 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1986 (1):494-501.
    Recent attempts to clarify the fitness in evolutionary theory as a propensity (Brandon 1978; Brandon and Beatty 1984; Burian 1983; Mills and Beatty 1979; Sober 1984a, 1984b) or as a primitive theoretical term (Rosenberg 1983, 1985; Williams 1970, Williams and Rosenberg 1985) all miss the mark in clarifying the empirical content and explanatory power of natural selection theory.I shall argue that the crucial distinction missing in these accounts is between the sense of fitness common in population genetics as actual relative (...)
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  15.  29
    Jerry Fodor and Massimo Piattelli-Palmarini. What Darwin Got Wrong. Reviewed by.Henry Byerly - 2010 - Philosophy in Review 30 (4):255-258.
  16. Knowledge of nature and the nature of knowledge in biomedical ethics.Henry C. Byerly - 1986 - In Otto Neumaier (ed.), Wissen und Gewissen: Arbeiten zur Verantwortungsproblematik. Wien: VWGÖ.
     
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  17.  15
    New Algorithms for the Statement and Class Calculi.Henry C. Byerly & Charles J. Merchant - 1974 - Journal of Symbolic Logic 39 (2):362-362.
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  18.  18
    Robert L. Caldwell, 1923-1998.Henry Byerly, Joseph Cowan, Don Fawkes, Don Green, Ann Hickman & Ron Milo - 2001 - Proceedings and Addresses of the American Philosophical Association 75 (2):106 - 107.
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  19.  20
    New algorithms for the statement and class calculi.Henry C. Byerly & Charles J. Merchant - 1970 - Notre Dame Journal of Formal Logic 11 (2):229-240.
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  20.  21
    Carl Hempel's Philosophy of Science: How to Avoid Epistemic Discontinuity and Pedagogical Pitfalls.G. Krishna Vemulapalli & Henry C. Byerly - 2004 - Science & Education 13 (1-2):85-98.
  21. 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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  22. Jerry Fodor and Massimo Piattelli-Palmarini. What Darwin Got Wrong. [REVIEW]Henry Byerly - 2010 - Philosophy in Review 30 (3):255-258.
     
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