Results for ' Natural selection'

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  1.  21
    Natural selection requires no teleology in addition to heritable variation in fitness.Nathan Cofnas - 2024 - Biology and Philosophy 39 (4):1-19.
    According to the standard formulation, natural selection requires variation, differential fitness, and heritability. I argue that this formulation is inadequate because it fails to distinguish natural selection from artificial selection, intelligent design, forward-looking orthogenetic selection, and adaptation via the selection of nonrandom variation. I suggest adding a _no teleology_ condition. The no teleology condition says that the evolutionary process is not guided toward an endpoint represented in the mind of an agent, variation is (...)
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  2.  9
    On natural selection.Charles Darwin - 2004 - New York: Penguin Books.
    Struggle for existence -- Natural selection -- Difficulties on theory -- Conclusion.
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  3. Natural selection and the traits of individual organisms.Joel Pust - 2004 - Biology and Philosophy 19 (5):765-779.
    I have recently argued that origin essentialism regarding individual organisms entails that natural selection does not explain why individual organisms have the traits that they do. This paper defends this and related theses against Mohan Matthen's recent objections.
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  4. Natural selection and the problem of evil.Paul Draper - 2008 - In God or Blind Nature? Philosophers Debate the Evidence. The Secular Web.
    This chapter appeals to natural selection in order to show that the failure of many humans and animals to flourish is strong evidence against the existence of an omnipotent, omniscient, and morally perfect God. Treating theism and naturalism as hypotheses that aim to explain certain features of our world, Draper sets out to test each hypothesis against various known facts, including facts about human and animal suffering. After demonstrating that, prior to such testing, naturalism is more probable than (...)
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  5. Natural selection and distributive explanation: A reply to Neander.Elliott Sober - 1995 - British Journal for the Philosophy of Science 46 (3):384-397.
    The thesis that natural selection explains the frequencies of traits in populations, but not why individual organisms have the traits tehy do, is here defended and elaborated. A general concept of ‘distributive explanation’ is discussed.
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  6. Natural selection as a population-level causal process.Roberta L. Millstein - 2006 - British Journal for the Philosophy of Science 57 (4):627-653.
    Recent discussions in the philosophy of biology have brought into question some fundamental assumptions regarding evolutionary processes, natural selection in particular. Some authors argue that natural selection is nothing but a population-level, statistical consequence of lower-level events (Matthen and Ariew [2002]; Walsh et al. [2002]). On this view, natural selection itself does not involve forces. Other authors reject this purely statistical, population-level account for an individual-level, causal account of natural selection (Bouchard and (...)
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  7.  16
    Natural selections: selfish altruists, honest liars, and other realities of evolution.David P. Barash - 2008 - New York: Bellevue Literary Press.
    Through a series of essays, the author discusses the conflict between cultural and biological evolution, covering intelligent design, gender differences, and the meaning of life while offering insight into the ethical aspects of civilization.
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  8. Natural Selection and Contrastive Explanation.Joeri Witteveen - 2019 - Philosophy of Science 86 (3):412-430.
    This article defends the Negative View of natural selection explanation, according to which natural selection cannot explain of any given individual why it has the traits it does. Over the years, this view has been criticized on empirical, metaphysical, and explanatory grounds. I review the debate and offer additional reasons for rejecting the empirical and metaphysical objections. The explanatory objection, which holds that the Negative View is rooted in a flawed account of contrastive explanation, initially seems (...)
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  9. Natural selection and the emergence of mind.Karl Popper - 1978 - Dialectica 32 (3‐4):339-55.
  10.  63
    Natural Selection and Drift as Individual-Level Causes of Evolution.Pierrick Bourrat - 2018 - Acta Biotheoretica 66 (3):159-176.
    In this paper I critically evaluate Reisman and Forber’s :1113–1123, 2005) arguments that drift and natural selection are population-level causes of evolution based on what they call the manipulation condition. Although I agree that this condition is an important step for identifying causes for evolutionary change, it is insufficient. Following Woodward, I argue that the invariance of a relationship is another crucial parameter to take into consideration for causal explanations. Starting from Reisman and Forber’s example on drift and (...)
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  11.  53
    Natural selection and metaphors of “selection”.Adolf Heschl - 2001 - Behavioral and Brain Sciences 24 (3):539-540.
    Natural selection in the sense of Darwin always means physical propagation (positive case) or disappearance (negative case) of living organisms due to differential reproduction. If one concentrates on this simple materialist principle, one arrives at a much better method of discerning true selection processes from largely nonrandom processes of internal rearrangement (somatic mutations) and reorganisation (operant learning).
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  12.  63
    Missing Concepts in Natural Selection Theory Reconstructions.Santiago Ginnobili - 2016 - History and Philosophy of the Life Sciences 38 (3):1-33.
    The concept of fitness has generated a lot of discussion in philosophy of biology. There is, however, relative agreement about the need to distinguish at least two uses of the term: ecological fitness on the one hand, and population genetics fitness on the other. The goal of this paper is to give an explication of the concept of ecological fitness by providing a reconstruction of the theory of natural selection in which this concept was framed, that is, based (...)
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  13. Natural Selection and Indexical Representation.Clarke Murray - 1996 - In Robert S. Cohen Mathieu Marion (ed.), Quebec Studies in the Philosophy of Science. Springer Press. pp. 50-61.
    In this defense of Reliabilism, I argue that there has been 'selection for' accurate indexical beliefs. I offer empirical evidence and examples to suggest that Steve Stich's defense of the opposite claim in The Fragmentation of Reason is misguided.
     
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  14.  31
    Natural selection and the reference grain problem.Pierrick Bourrat - 2020 - Studies in History and Philosophy of Science Part A 80:1-8.
  15.  54
    Natural Selection, Mechanism, and the Statistical Interpretation.Fermín C. Fulda - 2017 - Philosophy of Science 84 (5):1080-1092.
    What is natural selection? I address this question by exploring the relation between two debates: Is natural selection a mechanism? Is natural selection a causal or a statistical theory? I argue that the first can be assessed only relative to a model and that, following the second, there are two fundamentally different and independent kinds of models, Modern-Synthesis and Darwinian models. MS-models, I argue, are not mechanistic even if they are causal. D-models, in contrast, (...)
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  16.  38
    The Causal Structure of Natural Selection.Charles H. Pence - 2021 - Cambridge: Cambridge University Press.
    Recent arguments concerning the nature of causation in evolutionary theory, now often known as the debate between the 'causalist' and 'statisticalist' positions, have involved answers to a variety of independent questions – definitions of key evolutionary concepts like natural selection, fitness, and genetic drift; causation in multi-level systems; or the nature of evolutionary explanations, among others. This Element offers a way to disentangle one set of these questions surrounding the causal structure of natural selection. Doing so (...)
  17.  44
    Natural selection or the non-survival of the non-fit.P. J. den Boer - 1999 - Acta Biotheoretica 47 (2):83-97.
    The effects of natural selection as a process in natural populations differs from ''survival of the fittest'' as it was formulated by Darwin in his ''Origin of Species''. The environment of a population exists of continuous changing conditions, which are heterogeneous in space. During its life each individual successively meets with differing conditions. During these confrontations the individual may appear to be ''unfit'' or ''unlucky'' and may die. If it survives it will meet the following conditions to (...)
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  18. Natural Selection and Multi-Level Causation.Maximiliano Martínez & Andrés Moya - 2011 - Philosophy, Theory, and Practice in Biology 3 (20130604).
    In this paper, using a multilevel approach, we defend the positive role of natural selection in the generation of organismal form. Despite the currently widespread opinion that natural selection only plays a negative role in the evolution of form, we argue, in contrast, that the Darwinian factor is a crucial (but not exclusive) factor in morphological organization. Analyzing some classic arguments, we propose incorporating the notion of ‘downward causation’ into the concept of ‘natural selection.’ (...)
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  19.  31
    Natural selection and operative conditioning: a critique of Fodor and Piatelli-Palmarini's analogy.Julio Torres Meléndez - 2015 - Scientiae Studia 13 (3):599-614.
    RESUMENMe propongo examinar críticamente la analogía entre selección natural y condicionamiento operante que Fodor y Piattelli-Palmarini utilizan para sostener que los mismos argumentos que desacreditan la teoría conductista desacreditan la teoría de la selección natural. Estas teorías no son independientes ni conceptual ni históricamente y, por eso, no es razonable hacer una analogía entre ambas con las intenciones que se proponen Fodor y Piattelli-Palmarini. La selección natural es una condición causal del me­ca­nismo de condicionamiento operante, motivo por (...)
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  20.  25
    Natural Selection at New College: The Evolution of Science and Theology at a Scottish Presbyterian Seminary.Mark Harris - 2022 - Zygon 57 (3):525-544.
    The contemporary creation–evolution debate has become so polarized (over the issue of either Genesis or evolutionary science) as to obscure the more nuanced questions that have arisen in the historical and theological reception of Darwinism. Edinburgh's New College has been the academic home to some prominent scientists and theologians who have grappled with these questions since the early days of evolutionary science in the first half of the nineteenth century. Most obviously, this activity was focused on the decision to create (...)
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  21. Natural Selection and the Maximization of Fitness.Jonathan Birch - 2015 - Biological Reviews 91 (3):712-727.
    The notion that natural selection is a process of fitness maximization gets a bad press in population genetics, yet in other areas of biology the view that organisms behave as if attempting to maximize their fitness remains widespread. Here I critically appraise the prospects for reconciliation. I first distinguish four varieties of fitness maximization. I then examine two recent developments that may appear to vindicate at least one of these varieties. The first is the ‘new’ interpretation of Fisher's (...)
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  22. Autonomous-Statistical Explanations and Natural Selection.André Ariew, Collin Rice & Yasha Rohwer - 2015 - British Journal for the Philosophy of Science 66 (3):635-658.
    Shapiro and Sober claim that Walsh, Ariew, Lewens, and Matthen give a mistaken, a priori defense of natural selection and drift as epiphenomenal. Contrary to Shapiro and Sober’s claims, we first argue that WALM’s explanatory doctrine does not require a defense of epiphenomenalism. We then defend WALM’s explanatory doctrine by arguing that the explanations provided by the modern genetical theory of natural selection are ‘autonomous-statistical explanations’ analogous to Galton’s explanation of reversion to mediocrity and an explanation (...)
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  23.  70
    Natural selection of asymmetric traits operates at multiple levels.Michael K. Mcbeath & Thomas G. Sugar - 2005 - Behavioral and Brain Sciences 28 (4):605-606.
    Natural selection of asymmetric traits operates at multiple levels. Some asymmetric traits (like having a dominant eye) are tied to more universal aspects of the environment and are coded genetically, while others (like pedestrian turning biases) are tied to more ephemeral patterns and are largely learned. Species-wide trends of asymmetry can be better modeled when different levels of natural selection are specified.
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  24. Natural selection and self-organization.Bruce H. Weber & David J. Depew - 1996 - Biology and Philosophy 11 (1):33-65.
    The Darwinian concept of natural selection was conceived within a set of Newtonian background assumptions about systems dynamics. Mendelian genetics at first did not sit well with the gradualist assumptions of the Darwinian theory. Eventually, however, Mendelism and Darwinism were fused by reformulating natural selection in statistical terms. This reflected a shift to a more probabilistic set of background assumptions based upon Boltzmannian systems dynamics. Recent developments in molecular genetics and paleontology have put pressure on Darwinism (...)
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  25.  60
    Natural Selection and Self-Organization Do Not Make Meaning, while the Agent’s Choice Does.Kalevi Kull - 2021 - Biosemiotics 14 (1):49-53.
    Demonstration of illusiveness of basic beliefs of the Modern Synthesis implies the existence of evolutionary mechanisms that do not require natural selection for the origin of adaptations. This requires adaptive changes that occur independently from replication, but can occasionally become heritable. Plastic self-organizational changes regulated by genome are largely incorporable into the old theory. A fundamentally different source of adaptability is semiosis which includes the agent’s free choice. Adding semiosis into the theory of Extended Evolutionary Synthesis completes the (...)
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  26.  56
    Distinguishing Natural Selection from Other Evolutionary Processes in the Evolution of Altruism.Pierrick Bourrat - 2015 - Biological Theory 10 (4):311-321.
    Altruism is one of the most studied topics in theoretical evolutionary biology. The debate surrounding the evolution of altruism has generally focused on the conditions under which altruism can evolve and whether it is better explained by kin selection or multilevel selection. This debate has occupied the forefront of the stage and left behind a number of equally important questions. One of them, which is the subject of this article, is whether the word “selection” in “kin (...)” and “multilevel selection” necessarily refers to “evolution by natural selection.” I show, using a simple individual-centered model, that once clear conditions for natural selection and altruism are specified, one can distinguish two kinds of evolution of altruism, only one of which corresponds to the evolution of altruism by natural selection, the other resulting from other evolutionary processes. (shrink)
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  27.  98
    Explanatory unification and natural selection explanations.Stefan Petkov, Wei Wang & Yi Lei - 2016 - Biology and Philosophy 31 (5):705-725.
    The debate between the dynamical and the statistical interpretations of natural selection is centred on the question of whether all explanations that employ the concepts of natural selection and drift are reducible to causal explanations. The proponents of the statistical interpretation answer negatively, but insist on the fact that selection/drift arguments are explanatory. However, they remain unclear on where the explanatory power comes from. The proponents of the dynamical interpretation answer positively and try to reduce (...)
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  28.  88
    Are natural selection explanatory models a priori?José Díez & Pablo Lorenzano - 2015 - Biology and Philosophy 30 (6):787-809.
    The epistemic status of Natural Selection has seemed intriguing to biologists and philosophers since the very beginning of the theory to our present times. One prominent contemporary example is Elliott Sober, who claims that NS, and some other theories in biology, and maybe in economics, are peculiar in including explanatory models/conditionals that are a priori in a sense in which explanatory models/conditionals in Classical Mechanics and most other standard theories are not. Sober’s argument focuses on some “would promote” (...)
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  29. Scaffolding Natural Selection.Walter Veit - 2022 - Biological Theory 17 (2):163-180.
    Darwin provided us with a powerful theoretical framework to explain the evolution of living systems. Natural selection alone, however, has sometimes been seen as insufficient to explain the emergence of new levels of selection. The problem is one of “circularity” for evolutionary explanations: how to explain the origins of Darwinian properties without already invoking their presence at the level they emerge. That is, how does evolution by natural selection commence in the first place? Recent results (...)
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  30.  20
    Natural Selection and the Nature of Statistical Explanations.Roger Deulofeu Batllori - forthcoming - Critica:27-52.
    There is a widespread philosophical interpretation of natural selection in evolutionary theory: natural selection, like mutation, migration, and drift are seen as forces that propel the evolution of populations. Natural selection is thus a population level causal process. This account has been challenged by the Statistics, claiming that natural selection is not a population level cause but rather a statistical feature of a population. This paper examines the nature of the aforementioned ontological (...)
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  31.  39
    Natural selection as a cause: Probability, chance, and selective biases.Françoise Longy - unknown
    To what do "natural selection" and "genetic drift" refer? To causes, as is usually thought? Or to mere statistical effects? The question arises because assessing causes faces specific difficulties when stochastic processes are concerned. In this paper, I establish that a central anti-causalist argument from Matthen and Ariew (2002) does not work, because selection doesn't depend on chance (or unknown factors) in the manner that current analogies with games of chance suggest. I then explain how a clear (...)
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  32. Natural selection through survival alone, and the possibility of Gaia.W. Ford Doolittle - 2014 - Biology and Philosophy 29 (3):415-423.
    Here I advance two related evolutionary propositions. (1) Natural selection is most often considered to require competition between reproducing “individuals”, sometimes quite broadly conceived, as in cases of clonal, species or multispecies-community selection. But differential survival of non-competing and non-reproducing individuals will also result in increasing frequencies of survival-promoting “adaptations” among survivors, and thus is also a kind of natural selection. (2) Darwinists have challenged the view that the Earth’s biosphere is an evolved global homeostatic (...)
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  33.  63
    The natural selection of fidelity in social learning.Dan Sperber & Nicolas Claidière - unknown
    Social learning mechanisms are usually assumed to explain both the spread and the persistence of cultural behaviour. In a recent article, we showed that the fidelity of social learning commonly found in transmission chain experiments is not high enough to explain cultural stability. Here we want to both enrich and qualify this conclusion by looking at the case of song transmission in song birds, which can be faithful to the point of being true replication. We argue that this high fidelity (...)
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  34. Natural selection and the problem of evil: An evolutionary model with application to an ancient debate.Robert K. Fleck - 2011 - Zygon 46 (3):561-587.
    Abstract. Since Darwin, scholars have contemplated what our growing understanding of natural selection, combined with the fact that great suffering occurs, allows us to infer about the possibility that a benevolent God created the universe. Building on this long line of thought, I develop a model that illustrates how undesirable characteristics of the world (stylized “evils”) can influence long-run outcomes. More specifically, the model considers an evolutionary process in which each generation faces a risk from a “natural (...)
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  35.  41
    Natural selection and religiosity: Validity issues in the empirical examination of afterlife cognitions.M. Hughes Brian - 2006 - Behavioral and Brain Sciences 29 (5):478.
    Bering's target article proposes that the tendency to believe in an afterlife emerged (in evolutionary history) in response to selective pressures unique to human societies. However, the empirical evidence presented fails to account for the broader social context that impinges upon researcher–participant interactions, and so fails to displace the more parsimonious explanation that it is childhood credulity that underlies the acquisition of afterlife beliefs through cultural exposure.
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  36. Natural selection, causality, and laws: What Fodor and piatelli-palmarini got wrong.Elliott Sober - 2010 - Philosophy of Science 77 (4):594-607.
    In their book What Darwin Got Wrong, Jerry Fodor and Massimo Piattelli-Palmarini construct an a priori philosophical argument and an empirical biological argument. The biological argument aims to show that natural selection is much less important in the evolutionary process than many biologists maintain. The a priori argument begins with the claim that there cannot be selection for one but not the other of two traits that are perfectly correlated in a population; it concludes that there cannot (...)
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  37.  64
    The natural selection of conservative science.Cailin O'Connor - 2019 - Studies in History and Philosophy of Science Part A 76:24-29.
  38. How Do Natural Selection and Random Drift Interact?Marshall Abrams - 2007 - Philosophy of Science 74 (5):666-679.
    One controversy about the existence of so called evolutionary forces such as natural selection and random genetic drift concerns the sense in which such “forces” can be said to interact. In this paper I explain how natural selection and random drift can interact. In particular, I show how population-level probabilities can be derived from individual-level probabilities, and explain the sense in which natural selection and drift are embodied in these population-level probabilities. I argue that (...)
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  39.  52
    Natural selection and mechanistic regularity.Lane DesAutels - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 57:13-23.
  40. Darwinian Populations and Natural Selection.Peter Godfrey-Smith - 2009 - Oxford, GB: Oxford University Press.
    The book presents a new way of understanding Darwinism and evolution by natural selection, combining work in biology, philosophy, and other fields.
  41.  39
    Natural Selection, Adaptive Topographies and the Problem of Statistical Inference: The Moraba scurra Controversy Under the Microscope.Jean-Baptiste Grodwohl - 2017 - Journal of the History of Biology 50 (4):753-796.
    This paper gives a detailed narrative of a controversial empirical research in postwar population genetics, the analysis of the cytological polymorphisms of an Australian grasshopper, Moraba scurra. This research intertwined key technical developments in three research areas during the 1950s and 1960s: it involved Dobzhansky’s empirical research program on cytological polymorphisms, the mathematical theory of natural selection in two-locus systems, and the building of reliable estimates of natural selection in the wild. In the mid-1950s the cytologist (...)
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  42.  41
    Natural selection and fear regulation mechanisms.Randolph M. Nesse & James L. Abelson - 1995 - Behavioral and Brain Sciences 18 (2):309-310.
    Expectations can facilitate rapid fear conditioning and this may explain some phenomena that have been attributed to preparedness. However, preparedness remains the best explanation for some aspects of clinical phobias and the difficulty of creating fears of modern dangers. Rapid fear conditioning based on expectancy is not an alternative to an evolutionary explanation, but has, like preparedness, been shaped by natural selection.
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  43. Two ways of thinking about fitness and natural selection.Mohan Matthen & André Ariew - 2002 - Journal of Philosophy 99 (2):55-83.
    How do fitness and natural selection relate to other evolutionary factors like architectural constraint, mode of reproduction, and drift? In one way of thinking, drawn from Newtonian dynamics, fitness is one force driving evolutionary change and added to other factors. In another, drawn from statistical thermodynamics, it is a statistical trend that manifests itself in natural selection histories. It is argued that the first model is incoherent, the second appropriate; a hierarchical realization model is proposed as (...)
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  44. Population Pluralism and Natural Selection.Jacob Stegenga - 2014 - British Journal for the Philosophy of Science (1):axu003.
    I defend a radical interpretation of biological populations—what I call population pluralism—which holds that there are many ways that a particular grouping of individuals can be related such that the grouping satisfies the conditions necessary for those individuals to evolve together. More constraining accounts of biological populations face empirical counter-examples and conceptual difficulties. One of the most intuitive and frequently employed conditions, causal connectivity—itself beset with numerous difficulties—is best construed by considering the relevant causal relations as ‘thick’ causal concepts. I (...)
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  45. Natural selection and the elusiveness of happiness.Randolph Nesse - 2005 - In Felicia A. Huppert, Nick Baylis & Barry Keverne (eds.), The Science of Well-Being. Oxford University Press.
     
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  46.  90
    Logic and Natural Selection.Jaroslav Peregrin - 2010 - Logica Universalis 4 (2):207-223.
    Is logic, feasibly, a product of natural selection? In this paper we treat this question as dependent upon the prior question of where logic is founded. After excluding other possibilities, we conclude that logic resides in our language, in the shape of inferential rules governing the logical vocabulary of the language. This means that knowledge of (the laws of) logic is inseparable from the possession of the logical constants they govern. In this sense, logic may be seen as (...)
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  47. Natural selection and its limits: where ecology meets evolution.Massimo Pigliucci - 2004 - In R. Casagrandi P. Melia (ed.), Atti del XIII Congresso Nazionale della Societa` Italiana di Ecologia.
    Natural selection [Darwin 1859] is perhaps the most important component of evolutionary theory, since it is the only known process that can bring about the adaptation of living organisms to their environments [Gould 2002]. And yet, its study is conceptually and methodologically complex, and much attention needs to be paid to a variety of phenomena that can limit the efficacy of selection [Antonovics 1976; Pigliucci and Kaplan 2000]. In this essay, I will use examples of recent work (...)
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  48.  22
    Natural selection for the selection task: limits to social exchange theory.Paul Pollard - 1990 - Cognition 36 (2):195-204.
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  49. Natural language and natural selection.Steven Pinker & Paul Bloom - 1990 - Behavioral and Brain Sciences 13 (4):707-27.
    Many people have argued that the evolution of the human language faculty cannot be explained by Darwinian natural selection. Chomsky and Gould have suggested that language may have evolved as the by-product of selection for other abilities or as a consequence of as-yet unknown laws of growth and form. Others have argued that a biological specialization for grammar is incompatible with every tenet of Darwinian theory – that it shows no genetic variation, could not exist in any (...)
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  50. Natural selection, plasticity, and the rationale for largest-scale trends.Hugh Desmond - 2018 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 68:25-33.
    Many have argued that there is no reason why natural selection should cause directional increases in measures such as body size or complexity across evolutionary history as a whole. In this paper I argue that this conclusion does not hold for selection for adaptations to environmental variability, and that, given the inevitability of environmental variability, trends in adaptations to variability are an expected feature of evolution by natural selection. As a concrete instance of this causal (...)
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