Results for 'Robert Brandon Arnold'

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  1.  9
    Scientific fact and metaphysical reality.Robert Brandon Arnold - 1904 - New York and London,: The Macmillan company.
    This book explores the relationship between scientific fact and metaphysical reality, offering a fresh perspective on the intersection of these two seemingly disparate fields. This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work is in the "public domain in the United States of America, and possibly other nations. Within the United States, you may freely copy and distribute this work, as no entity (individual (...)
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  2.  9
    Grounding a Pragmatic Theory of Vagueness on Experimental Data: Semi-orders and Weber’s Law.Robert van Rooij & Arnold Kochari - 2019 - In Richard Dietz (ed.), Vagueness and Rationality in Language Use and Cognition. Springer Verlag. pp. 153-183.
    One of the traditional pragmatic approaches to vagueness suggests that there needs to be a significant gap between individuals or objects that can be described using a vague adjective like tall and those that cannot. In contrast, intuitively, an explicit comparative like taller does not require fulfillment of the gap requirement. Our starting point for this paper is the consideration that people cannot make precise measures under time pressure and their ability to discriminate approximate heights obeys Weber’s law. We formulate (...)
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  3.  33
    Fiftieth Anniversary Celebration of the Society.John Greene, Robert Multhauf, Arnold Thackray, George Basalla & Derek de Solla Price - 1975 - Isis 66:442-482.
  4.  21
    Concepts and Methods in Evolutionary Biology.Robert N. Brandon - 1995 - Cambridge University Press.
    Robert Brandon is one of the most important and influential of contemporary philosophers of biology. This collection of his recent essays covers all the traditional topics in the philosophy of evolutionary biology and as such could serve as an introduction to the field. There are essays on the nature of fitness, teleology, the structure of the theory of natural selection, and the levels of selection. The book also deals with newer topics that are less frequently discussed but are (...)
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  5. Sober on Brandon on screening-off and the levels of selection.Robert N. Brandon, Janis Antonovics, Richard Burian, Scott Carson, Greg Cooper, Paul Sheldon Davies, Christopher Horvath, Brent D. Mishler, Robert C. Richardson, Kelly Smith & Peter Thrall - 1994 - Philosophy of Science 61 (3):475-486.
    Sober (1992) has recently evaluated Brandon's (1982, 1990; see also 1985, 1988) use of Salmon's (1971) concept of screening-off in the philosophy of biology. He critiques three particular issues, each of which will be considered in this discussion.
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  6. Genes, Organisms, Populations: Controversies Over the Units of Selection.Robert N. Brandon & Richard M. Burian (eds.) - 1984 - Bradford.
    This anthology collects some of the most important papers on what is believed to be the major force in evolution, natural selection. An issue of great consequence in the philosophy of biology concerns the levels at which, and the units upon which selection acts. In recent years, biologists and philosophers have published a large number of papers bearing on this subject. The papers selected for inclusion in this book are divided into three main sections covering the history of the subject, (...)
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  7. Adaptation and Evolutionary Theory.Robert N. Brandon - 1978 - Studies in History and Philosophy of Science Part A 9 (3):181.
  8.  52
    The Nature of Selection: Evolutionary Theory in Philosophical Focus.Robert N. Brandon - 1986 - Philosophical Review 95 (4):614.
  9. Does biology have laws? The experimental evidence.Robert N. Brandon - 1997 - Philosophy of Science 64 (4):457.
    In this paper I argue that we can best make sense of the practice of experimental evolutionary biology if we see it as investigating contingent, rather than lawlike, regularities. This understanding is contrasted with the experimental practice of certain areas of physics. However, this presents a problem for those who accept the Logical Positivist conception of law and its essential role in scientific explanation. I address this problem by arguing that the contingent regularities of evolutionary biology have a limited range (...)
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  10. The indeterministic character of evolutionary theory: No "no hidden variables proof" but no room for determinism either.Robert N. Brandon & Scott Carson - 1996 - Philosophy of Science 63 (3):315-337.
    In this paper we first briefly review Bell's (1964, 1966) Theorem to see how it invalidates any deterministic "hidden variable" account of the apparent indeterminacy of quantum mechanics (QM). Then we show that quantum uncertainty, at the level of DNA mutations, can "percolate" up to have major populational effects. Interesting as this point may be it does not show any autonomous indeterminism of the evolutionary process. In the next two sections we investigate drift and natural selection as the locus of (...)
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  11. Biological Teleology: Questions and Explanations.Robert N. Brandon - 1981 - Studies in History and Philosophy of Science Part A 12 (2):91.
    This paper gives an account of evolutionary explanations in biology. Briefly, the explanations I am primarily concerned with are explanations of adaptations. These explanations are contrasted with other nonteleological evolutionary explanations. The distinction is made by distinguishing the different kinds of questions these different explanations serve to answer. The sense in which explanations of adaptations are teleological is spelled out.
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  12.  86
    The Levels of Selection.Robert N. Brandon - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:315 - 323.
    In this paper Wimsatt's analysis of units of selection is taken as defining the units of selection question. A definition of levels of selection is offered and it is shown that the levels of selection question is quite different from the units of selection question. Some of the relations between units and levels are briefly explored. It is argued that the levels of selection question is the question relevant to explanatory concerns, and it is suggested that it is the question (...)
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  13. The principle of drift: Biology's first law.Robert N. Brandon - 2006 - Journal of Philosophy 103 (7):319-335.
    Drift is to evolution as inertia is to Newtonian mechanics. Both are the "natural" or default states of the systems to which they apply. Both are governed by zero-force laws. The zero-force law in biology is stated here for the first time.
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  14.  49
    A Structural Description of Evolutionary Theory.Robert N. Brandon - 1980 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1980:427 - 439.
    The principle of natural selection is stated. It connects fitness values (actual reproductive success) with expected fitness values. The term 'adaptedness' is used for expected fitness values. The principle of natural selection explains differential fitness in terms of relative adaptedness. It is argued that this principle is absolutely central to Darwinian evolutionary theory. The empirical content of the principle of natural selection is examined. It is argued that the principle itself has no empirical biological content, but that the presuppositions of (...)
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  15. Contributions of empirical research to medical ethics.Robert A. Pearlman, Steven H. Miles & Robert M. Arnold - 1993 - Theoretical Medicine and Bioethics 14 (3).
    Empirical research pertaining to cardiopulmonary resuscitation (CPR), clinician behaviors related to do-not-resuscitate (DNR) orders and substituted judgment suggests potential contributions to medical ethics. Research quantifying the likelihood of surviving CPR points to the need for further philosophical analysis of the limitations of the patient autonomy in decision making, the nature and definition of medical futility, and the relationship between futility and professional standards. Research on DNR orders has identified barriers to the goal of patient involvement in these life and death (...)
     
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  16.  44
    On Discipline Building: The Paradoxes of George Sarton.Arnold Thackray & Robert Merton - 1972 - Isis 63 (4):473-495.
  17.  41
    A general case for functional pluralism.Robert N. Brandon - 2013 - In Philippe Huneman (ed.), Functions: selection and mechanisms. Springer. pp. 97--104.
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  18. The Propensity Interpretation of ‘Fitness‘—No Interpretation is No Substitute.Robert Brandon & John Beatty - 1984 - Philosophy of Science 51 (2):342-347.
  19. Natural selection.Robert Brandon - 2008 - Stanford Encyclopedia of Philosophy.
    Darwin's theory of evolution by natural selection provided the first, and only, causal-mechanistic account of the existence of adaptations in nature. As such, it provided the first, and only, scientific alternative to the “argument from design”. That alone would account for its philosophical significance. But the theory also raises other philosophical questions not encountered in the study of the theories of physics. Unfortunately the concept of natural selection is intimately intertwined with the other basic concepts of evolutionary theory—such as the (...)
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  20. Theory and experiment in evolutionary biology.Robert N. Brandon - 1994 - Synthese 99 (1):59 - 73.
  21.  65
    What's wrong with the emergentist statistical interpretation of natural selection and random drift.Robert N. Brandon & Grant Ramsey - 2007 - In David L. Hull & Michael Ruse (eds.), The Cambridge Companion to the Philosophy of Biology. New York: Cambridge University Press. pp. 66--84.
    Population-level theories of evolution—the stock and trade of population genetics—are statistical theories par excellence. But what accounts for the statistical character of population-level phenomena? One view is that the population-level statistics are a product of, are generated by, probabilities that attach to the individuals in the population. On this conception, population-level phenomena are explained by individual-level probabilities and their population-level combinations. Another view, which arguably goes back to Fisher but has been defended recently, is that the population-level statistics are sui (...)
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  22.  43
    Compliant Rebellion: The Vanguard in American Art: Essay ReviewThe Painted WordSocial Realism: Art as a WeaponThe New York School: A Cultural ReckoningMarxism and ArtTopics in Recent American Art since 1945Good Old ModernFrench Painting 1774-1830: The Age of RevolutionAesthetics and the Theory of CriticismThe Academy and French Painting in the Nineteenth Century. [REVIEW]John Adkins Richardson, Tom Wolfe, David Shapiro, Dore Ashton, Berel Lang, Forrest Williams, Lawrence Alloway, Russell Lynes, Pierre Rosenberg, Frederick Cummings, Anoine Schnapper, Robert Rosenblum, Arnold Isenberg, Albert Boime, Renato Poggioli, John Jacobus, Sam Hunter & Barbara Rose - 1976 - Journal of Aesthetic Education 10 (3/4):225.
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  23.  53
    Grene on Mechanism and Reductionism: More Than Just a Side Issue.Robert N. Brandon - 1984 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1984:345 - 353.
    In this paper the common association between ontological reductionism and a methodological position called 'Mechanism' is discussed. Three major points are argued for: (1) Mechanism is not to be identified with reductionism in any of its forms; in fact, mechanism leads to a non-reductionist ontology. (2) Biological methodology is thoroughly mechanistic. (3) Mechanism is compatible with at least one form of teleology. Along the way the nature and value of scientific explanations, some recent controversies in biology and why reductionism has (...)
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  24.  86
    A Non-Newtonian Newtonian Model of Evolution: The ZFEL View.Robert N. Brandon - 2010 - Philosophy of Science 77 (5):702-715.
    Recently philosophers of biology have argued over whether or not Newtonian mechanics provides a useful analogy for thinking about evolutionary theory. For philosophers, the canonical presentation of this analogy is Sober's. Matthen and Ariew and Walsh, Lewins, and Ariew argue that this analogy is deeply wrong-headed. Here I argue that the analogy is indeed useful, however, not in the way it is usually interpreted. The Newtonian analogy depends on having the proper analogue of Newton's First Law. That analogue is what (...)
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  25.  76
    Four solutions for four puzzles.Robert N. Brandon & Daniel W. McShea - 2012 - Biology and Philosophy 27 (5):737-744.
    Barrett et al. present four puzzles for the ZFEL-view of evolution that we present in our 2010 book, Biology’s First Law: The Tendency for Diversity and Complexity to Increase in Evolutionary Systems. Our intent in writing this book was to present a radically different way to think about evolution. To the extent that it really is radical, it will be easy to misunderstand. We think Barrett et al. have misunderstood several crucial points and so we welcome the opportunity to clarify.
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  26.  29
    Biology’s First Law: The Tendency for Diversity and Complexity to Increase in Evolutionary Systems.Daniel W. McShea & Robert N. Brandon - 2010 - University of Chicago Press.
    1 The Zero-Force Evolutionary Law 2 Randomness, Hierarchy, and Constraint 3 Diversity 4 Complexity 5 Evidence, Predictions, and Tests 6 Philosophical Foundations 7 Implications.
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  27.  38
    What's Wrong with the Emergentist Statistical Interpretation of Natural Selection and Random Drift?Robert N. Brandon & Grant Ramsey - 2007 - In David L. Hull & Michael Ruse (eds.), The Cambridge Companion to the Philosophy of Biology. New York: Cambridge University Press. pp. 66-84.
    Population-level theories of evolution—the stock and trade of population genetics—are statistical theories par excellence. But what accounts for the statistical character of population-level phenomena? One view is that the population-level statistics are a product of, are generated by, probabilities that attach to the individuals in the population. On this conception, population-level phenomena are explained by individual-level probabilities and their population-level combinations. Another view, which arguably goes back to Fisher but has been defended recently, is that the population-level statistics are sui (...)
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  28. The Empirical Nonequivalence of Genic and Genotypic Models of Selection: A (Decisive) Refutation of Genic Selectionism and Pluralistic Genic Selectionism.Robert N. Brandon & H. Frederik Nijhout - 2006 - Philosophy of Science 73 (3):277-297.
    Genic selectionists (Williams 1966; Dawkins 1976) defend the view that genes are the (unique) units of selection and that all evolutionary events can be adequately represented at the genic level. Pluralistic genic selectionists (Sterelny and Kitcher 1988; Waters 1991; Dawkins 1982) defend the weaker view that in many cases there are multiple equally adequate accounts of evolutionary events, but that always among the set of equally adequate representations will be one at the genic level. We describe a range of cases (...)
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  29.  49
    Philosophy of biology.Robert Brandon & Alex Rosenberg - 2003 - In Peter Clark & Katherine Hawley (eds.), Philosophy of science today. New York: Oxford University Press. pp. 147--180.
  30.  57
    Drift sometimes dominates selection, and vice versa: a reply to Clatterbuck, Sober and Lewontin.Robert Brandon & Leonore Fleming - 2014 - Biology and Philosophy 29 (4):577-585.
    Clatterbuck et al. (Biol Philos 28: 577–592, 2013) argue that there is no fact of the matter whether selection dominates drift or vice versa in any particular case of evolution. Their reasons are not empirically based; rather, they are purely conceptual. We show that their conceptual presuppositions are unmotivated, unnecessary and overly complex. We also show that their conclusion runs contrary to current biological practice. The solution is to recognize that evolution involves a probabilistic sampling process, and that drift is (...)
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  31.  97
    Evolution.Robert N. Brandon - 1978 - Philosophy of Science 45 (1):96-109.
    These days 'evolution' is usually defined as any change in the relative frequencies of genes in a population over time. This definition and some obvious alternatives are examined and rejected. The criticism of these definitions points out the need for a more holistic analysis of genotypes. I attempt such analysis by introducing measures of similarity of whole genotypes and then by grouping genotypes into similarity classes. Three sorts of measures of similarity are examined: a measure of structural similarity, a measure (...)
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  32. Genes, Organisms, and Populations.Robert Brandon & Richard Burian - 1986 - Behaviorism 14 (1):69-76.
     
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  33.  72
    So It Is, So It Shall Be: Group Regularities License Children's Prescriptive Judgments.Steven O. Roberts, Susan A. Gelman & Arnold K. Ho - 2017 - Cognitive Science 41 (S3):576-600.
    When do descriptive regularities become prescriptive norms? We examined children's and adults' use of group regularities to make prescriptive judgments, employing novel groups that engaged in morally neutral behaviors. Participants were introduced to conforming or non-conforming individuals. Children negatively evaluated non-conformity, with negative evaluations declining with age. These effects were replicable across competitive and cooperative intergroup contexts and stemmed from reasoning about group regularities rather than reasoning about individual regularities. These data provide new insights into children's group concepts and have (...)
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  34.  44
    Introduction.Robert N. Brandon - 1999 - Biology and Philosophy 14 (1):1-7.
  35. Individuality, pluralism, and the phylogenetic species concept.Brent D. Mishler & Robert N. Brandon - 1987 - Biology and Philosophy 2 (4):397-414.
    The concept of individuality as applied to species, an important advance in the philosophy of evolutionary biology, is nevertheless in need of refinement. Four important subparts of this concept must be recognized: spatial boundaries, temporal boundaries, integration, and cohesion. Not all species necessarily meet all of these. Two very different types of pluralism have been advocated with respect to species, only one of which is satisfactory. An often unrecognized distinction between grouping and ranking components of any species concept is necessary. (...)
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  36.  73
    Discussion: Reply to Hitchcock.Robert N. Brandon - 1997 - Biology and Philosophy 12 (4):531-538.
    Christopher Hitchcocks discussion of my use of screening-off in analyzing the causal process of natural selection raises some interesting issues to which I am pleased to reply. The bulk of his article is devoted to some fairly general points in the theory of explanation. In particular, he questions whether or not my point that phenotype screens off genotype from reproductive success (in cases of organismic selection) supports my claim that the explanation of differential reproductive success should be in terms of (...)
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  37.  98
    From icons to symbols: Some speculations on the origins of language. [REVIEW]Robert N. Brandon & Norbert Hornstein - 1986 - Biology and Philosophy 1 (2):169-189.
    This paper is divided into three sections. In the first section we offer a retooling of some traditional concepts, namely icons and symbols, which allows us to describe an evolutionary continuum of communication systems. The second section consists of an argument from theoretical biology. In it we explore the advantages and disadvantages of phenotypic plasticity. We argue that a range of the conditions that selectively favor phenotypic plasticity also favor a nongenetic transmission system that would allow for the inheritance of (...)
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  38.  24
    The Missing Two-Thirds of Evolutionary Theory.Robert Brandon & Daniel W. McShea - 2020 - Cambridge University Press.
    In this Element, we extend our earlier treatment of biology's first law. The law says that in any evolutionary system in which there is variation and heredity, there is a tendency for diversity and complexity to increase. The law plays the same role in biology that Newton's first law plays in physics, explaining what biological systems are expected to do when no forces act, in other words, what happens when nothing happens. Here we offer a deeper explanation of certain features (...)
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  39.  22
    Recency judgments as measures of temporal coding.Robert A. Malmi, Arnold M. Lund & Benton J. Underwood - 1978 - Bulletin of the Psychonomic Society 12 (1):67-68.
  40. Recent Work in Ethical Theory and its Implications for Business Ethics.Denis G. Arnold, Robert Audi & Matt Zwolinski - 2010 - Business Ethics Quarterly 20 (4):559-581.
    We review recent developments in ethical pluralism, ethical particularism, Kantian intuitionism, rights theory, and climate change ethics, and show the relevance of these developments in ethical theory to contemporary business ethics. This paper explains why pluralists think that ethical decisions should be guided by multiple standards and why particularists emphasize the crucial role of context in determining sound moral judgments. We explain why Kantian intuitionism emphasizes the discerning power of intuitive reason and seek to integrate that with the comprehensiveness of (...)
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  41.  21
    Generics and Alternatives.Arnold Kochari, Robert Van Rooij & Katrin Schulz - 2020 - Frontiers in Psychology 11.
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  42.  35
    Symposium: Are There Laws in Biology?John Beatty, Robert Brandon, Elliott Sober & Sandra D. Mitchell - 1997 - Philosophy of Science 64 (4):S432 - S479.
    This is a collection of papers presented at the Symposium "Are There are Laws of Biology?", in the 1996 Biennial Meetings of the Philosophy of Science Association. It includes four separate papers: "Why Do Biologists Argue Like They Do?" by John Beatty, "Does Biology Have Laws? The Experimental Evidence" by Robert Brandon, "Two Outbreaks of Lawlessness in Recent Philosophy of Biology" by Elliott Sober, and "Pragmatic Laws" by Sandra D. Mitchell.
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  43.  76
    The Dead Donor Rule: Should We Stretch It, Bend It, or Abandon It?Robert M. Arnold & Stuart J. Youngner - 1993 - Kennedy Institute of Ethics Journal 3 (2):263-278.
    The dead donor rule—that persons must be dead before their organs are taken—is a central part of the moral framework underlying organ procurement. Efforts to increase the pool of transplantable organs have been forced either to redefine death (e.g., anencephaly) or take advantage of ambiguities in the current definition of death (e.g., the Pittsburgh protocol). Society's growing acceptance of circumstances in which health care professionals can hasten a patient's death also may weaken the symbolic importance of the dead donor rule. (...)
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  44.  28
    Integrating Evolution and Development: From Theory to Practice.Roger Sansom & Robert N. Brandon (eds.) - 2007 - MIT Press.
    Embryos, cells, genes, and organisms : reflections on the history of evolutionary developmental biology / Manfred D. Laubichler and Jane Maienschein The organismic systems approach : streamlining the naturalistic agenda / Werner Callebaut, Gerd B. Müller, and Stuart A. Newman Complex traits : genetics, development, and evolution / H. Frederik Nijhout Functional and developmental constraints on life-cycle evolution : an attempt on the architecture of constraints / Gerhard Schlosser Legacies of adaptive development / Roger Sansom Evo-devo meets the mind : (...)
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  45.  63
    Back to the Future: Obtaining Organs from Non-Heart-Beating Cadavers.Robert M. Arnold & Stuart J. Youngner - 1993 - Kennedy Institute of Ethics Journal 3 (2):103-111.
    In lieu of an abstract, here is a brief excerpt of the content:Back to the Future:Obtaining Organs from Non-Heart-Beating CadaversRobert M. Arnold (bio) and Stuart J. Youngner (bio)Organ Transplantation requires viable donor organs. This simple fact has become the Achilles' heel of transplantation programs. Progress in immunology and transplant surgery has outstripped the supply of available organs. Between 1988 and 1991, for example, the number of transplant candidates on waiting lists increased by about 55 percent, while the number of (...)
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  46.  5
    Hermann Cohen aus persönlicher erinnerung.Robert Arnold Fritzsche - 1922 - Berlin,: B., Cassirer.
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  47. A simple theory of evolution by natural selection.Robert N. Brandon - 1992 - Philosophy of Science 59 (2):276-281.
    Kary (1990) defends the view that evolution by natural selection can be adequately explained in terms of a theory incorporating only a single level of selection. Here I point out some of the inherent inadequacies of such a theory.
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  48.  61
    Session 4: Evolutionary indeterminism.Robert Brandon, Alan Love, Paul Griffths & Frederic Bouchard - manuscript
    Proceedings of the Pittsburgh Workshop in History and Philosophy of Biology, Center for Philosophy of Science, University of Pittsburgh, March 23-24 2001 Session 4: Evolutionary Indeterminism.
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  49. The difference between selection and drift: A reply to Millstein. [REVIEW]Robert N. Brandon - 2005 - Biology and Philosophy 20 (1):153-170.
    Millstein [Bio. Philos. 17 (2002) 33] correctly identies a serious problem with the view that natural selection and random drift are not conceptually distinct. She offers a solution to this problem purely in terms of differences between the processes of selection and drift. I show that this solution does not work, that it leaves the vast majority of real biological cases uncategorized. However, I do think there is a solution to the problem she raises, and I offer it here. My (...)
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  50.  7
    The focus of belief.Arnold Robert Whately - 1937 - Cambridge [Eng.]: the University press.
    Originally published in 1937, this book provides a detailed discussion of the nature of Christian faith and belief in its relationship with the concept of redemption.
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