Results for 'Mark Ereshefsky'

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  1. Foundational issues concerning taxa and taxon names.Mark Ereshefsky - 2007 - Systematic Biology 56 (2):295-301.
    In a series of articles, Rieppel (2005, Biol. Philos. 20:465–487; 2006a, Cladistics 22:186–197; 2006b, Systematist 26:5–9), Keller et al. (2003, Bot. Rev. 69:93–110), and Nixon and Carpenter (2000, Cladistics 16:298–318) criticize the philosophical foundations of the PhyloCode. They argue that species and higher taxa are not individuals, and they reject the view that taxon names are rigid designators. Furthermore, they charge supporters of the individuality thesis and rigid designator theory with assuming essentialism, committing logical inconsistencies, and offering proposals that render (...)
     
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  2. Natural kinds in biology.Mark Ereshefsky - manuscript
    It is commonly held that objects in the world form natural kinds. Rabbits form a natural kind and so do all pieces of gold. The traditional account of natural kinds asserts that the members of a kind share a common essence. The essence of gold, for example, is its unique atomic structure. That structure occurs in all and only pieces of gold, and it is a property that all pieces of gold must have.
     
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  3.  15
    Toward a New Philosophy of Biology.Marc Ereshefsky - 1990 - Philosophy of Science 57 (4):725-727.
  4.  5
    Hume's reception in early America.Mark G. Spencer (ed.) - 2017 - New York: Bloomsbury Academic.
    Hume's Reception in Early America: Expanded Edition brings together the original American responses to one of Britain's greatest men of letters, David Hume. Now available as a single volume paperback, this new edition includes updated further readings suggestions and dozens of additional primary sources gathered together in a completely new concluding section. From complete pamphlets and booklets, to poems, reviews, and letters, to extracts from newspapers, religious magazines and literary and political journals, this book's contents come from a wide variety (...)
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    How human is God?: seven questions about God and humanity in the Bible.Mark S. Smith - 2014 - Collegeville, Minnesota: Liturgical Press.
    Prologue, invitation to thinking about God In the Hebrew Bible? -- Part I, questions about God? -- Why does God in the Bible have a body? -- What do God's body parts in the Bible mean? -- Why is God angry in the Bible? -- Does God in the Bible have gender or sexuality? -- Part II, questions about God in the world? -- What can creation tell us about God? -- Who-or what-is the Satan? -- Why do people suffer (...)
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  6.  42
    Advancing Polylogical Analysis of Large-Scale Argumentation: Disagreement Management in the Fracking Controversy.Mark Aakhus & Marcin Lewiński - 2017 - Argumentation 31 (1):179-207.
    This paper offers a new way to make sense of disagreement expansion from a polylogical perspective by incorporating various places in addition to players and positions into the analysis. The concepts build on prior implicit ideas about disagreement space by suggesting how to more fully account for argumentative context, and its construction, in large-scale complex controversies. As a basis for our polylogical analysis, we use a New York Times news story reporting on an oil train explosion—a significant point in the (...)
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  7.  74
    How to Incorporate Non-Epistemic Values into a Theory of Classification.Thomas A. C. Reydon & Marc Ereshefsky - 2022 - European Journal for Philosophy of Science 12 (1):1-28.
    Non-epistemic values play important roles in classificatory practice, such that philosophical accounts of kinds and classification should be able to accommodate them. Available accounts fail to do so, however. Our aim is to fill this lacuna by showing how non-epistemic values feature in scientific classification, and how they can be incorporated into a philosophical theory of classification and kinds. To achieve this, we present a novel account of kinds and classification, discuss examples from biological classification where non-epistemic values play decisive (...)
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  8. Scientific kinds.Marc Ereshefsky & Thomas A. C. Reydon - 2015 - Philosophical Studies 172 (4):969-986.
    Richard Boyd’s Homeostatic Property Cluster Theory is becoming the received view of natural kinds in the philosophy of science. However, a problem with HPC Theory is that it neglects many kinds highlighted by scientific classifications while at the same time endorsing kinds rejected by science. In other words, there is a mismatch between HPC kinds and the kinds of science. An adequate account of natural kinds should accurately track the classifications of successful science. We offer an alternative account of natural (...)
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  9.  68
    The Poverty of the Linnaean Hierarchy: A Philosophical Study of Biological Taxonomy.Marc Ereshefsky - 2000 - Cambridge University Press.
    The question of whether biologists should continue to use the Linnaean hierarchy has been a hotly debated issue. Invented before the introduction of evolutionary theory, Linnaeus's system of classifying organisms is based on outdated theoretical assumptions, and is thought to be unable to provide accurate biological classifications. Marc Ereshefsky argues that biologists should abandon the Linnaean system and adopt an alternative that is more in line with evolutionary theory. He traces the evolution of the Linnaean hierarchy from its introduction (...)
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  10.  29
    Deliberation digitized: Designing disagreement space through communication-information services.Mark Aakhus - 2013 - Journal of Argumentation in Context 2 (1):101-126.
    A specific issue for argumentation theory is whether information and communication technologies play any role in governing argument — that is, as parties engage in practical activities across space and time via ICTs, does technology matter for the interplay of argumentative content and process in managing disagreement? The case made here is that technologies do matter because they are not merely conduits of communication but have a role in the pragmatics of communication and argumentation. In particular, ICTs should be recognized (...)
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  11. Defining 'health' and 'disease'.Marc Ereshefsky - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (3):221-227.
    How should we define ‘health’ and ‘disease’? There are three main positions in the literature. Naturalists desire value-free definitions based on scientific theories. Normativists believe that our uses of ‘health’ and ‘disease’ reflect value judgments. Hybrid theorists offer definitions containing both normativist and naturalist elements. This paper discusses the problems with these views and offers an alternative approach to the debate over ‘health’ and ‘disease’. Instead of trying to find the correct definitions of ‘health’ and ‘disease’ we should explicitly talk (...)
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  12. Eliminative pluralism.Marc Ereshefsky - 1992 - Philosophy of Science 59 (4):671-690.
    This paper takes up the cause of species pluralism. An argument for species pluralism is provided and standard monist objections to pluralism are answered. A new form of species pluralism is developed and shown to be an improvement over previous forms. This paper also offers a general foundation on which to base a pluralistic approach to biological classification.
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  13. Species.Marc Ereshefsky - 2010 - Stanford Encyclopedia of Philosophy.
  14. Species pluralism and anti-realism.Marc Ereshefsky - 1998 - Philosophy of Science 65 (1):103-120.
    Species pluralism gives us reason to doubt the existence of the species category. The problem is not that species concepts are chosen according to our interests or that pluralism and the desire for hierarchical classifications are incompatible. The problem is that the various taxa we call 'species' lack a common unifying feature.
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  15. What's Wrong with the New Biological Essentialism.Marc Ereshefsky - 2010 - Philosophy of Science 77 (5):674-685.
    The received view in the philosophy of biology is that biological taxa (species and higher taxa) do not have essences. Recently, some philosophers (Boyd, Devitt, Griffiths, LaPorte, Okasha, and Wilson) have suggested new forms of biological essentialism. They argue that according to these new forms of essentialism, biological taxa do have essences. This article critically evaluates the new biological essentialism. This article’s thesis is that the costs of adopting the new biological essentialism are many, yet the benefits are none, so (...)
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  16. The Poverty of the Linnaean Hierarchy: A Philosophical Study of Biological Taxonomy.Marc Ereshefsky - 2001 - Journal of the History of Biology 34 (3):600-602.
     
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  17. Self, no self?: perspectives from analytical, phenomenological, and Indian traditions.Mark Siderits, Evan Thompson & Dan Zahavi (eds.) - 2011 - Oxford: Oxford University Press.
    It is time to bring the rich resources of these traditions into the contemporary debate about the nature of self. This volume is the first of its kind.
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  18. Biological individuality: the case of biofilms.Marc Ereshefsky & Makmiller Pedroso - 2013 - Biology and Philosophy 28 (2):331-349.
    This paper examines David Hull’s and Peter Godfrey-Smith’s accounts of biological individuality using the case of biofilms. Biofilms fail standard criteria for individuality, such as having reproductive bottlenecks and forming parent-offspring lineages. Nevertheless, biofilms are good candidates for individuals. The nature of biofilms shows that Godfrey-Smith’s account of individuality, with its reliance on reproduction, is too restrictive. Hull’s interactor notion of individuality better captures biofilms, and we argue that it offers a better account of biological individuality. However, Hull’s notion of (...)
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  19. Microbiology and the species problem.Marc Ereshefsky - 2010 - Biology and Philosophy 25 (4):553-568.
    This paper examines the species problem in microbiology and its implications for the species problem more generally. Given the different meanings of ‘species’ in microbiology, the use of ‘species’ in biology is more multifarious and problematic than commonly recognized. So much so, that recent work in microbial systematics casts doubt on the existence of a prokaryote species category in nature. It also casts doubt on the existence of a general species category for all of life (one that includes both prokaryotes (...)
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  20. Taxonomy, Polymorphism, and History: An Introduction to Population Structure Theory.Marc Ereshefsky & Mohan Matthen - 2005 - Philosophy of Science 72 (1):1-21.
    Homeostatic Property Cluster (HPC) theory suggests that species and other biological taxa consist of organisms that share certain similarities. HPC theory acknowledges the existence of Darwinian variation within biological taxa. The claim is that “homeostatic mechanisms” acting on the members of such taxa nonetheless ensure a significant cluster of similarities. The HPC theorist’s focus on individual similarities is inadequate to account for stable polymorphism within taxa, and fails properly to capture their historical nature. A better approach is to treat distributions (...)
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    Natural Kinds, Mind Independence, and Defeasibility.Marc Ereshefsky - 2018 - Philosophy of Science 85 (5):845-856.
    A standard requirement on natural kinds is that they be mind independent. However, many kinds in the human and social sciences, even the natural sciences, depend on human thought. This article suggests that the mind independence requirement on natural kinds be replaced with the requirement that natural kind classifications be defeasible. The defeasibility requirement does not require that natural kinds be mind independent, so it does not exclude mind dependent scientific kinds from being natural kinds. Furthermore, the defeasibility requirement captures (...)
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  22. The Units of Evolution: Essays on the Nature of Species.Marc Ereshefsky - 1992 - Journal of the History of Biology 25 (3):500-501.
     
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  23.  50
    Historicity and explanation.Marc Ereshefsky & Derek Turner - 2020 - Studies in History and Philosophy of Science Part A 80:47-55.
  24. Homology thinking.Marc Ereshefsky - 2012 - Biology and Philosophy 27 (3):381-400.
    This paper explores an important type of biological explanation called ‘homology thinking.’ Homology thinking explains the properties of a homologue by citing the history of a homologue. Homology thinking is significant in several ways. First, it offers more detailed explanations of biological phenomena than corresponding analogy explanations. Second, it provides an important explanation of character similarity and difference. Third, homology thinking offers a promising account of multiple realizability in biology.
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  25. Value and the right kind of reason.Mark Schroeder - 2010 - Oxford Studies in Metaethics 5:25-55.
    Fitting Attitudes accounts of value analogize or equate being good with being desirable, on the premise that ‘desirable’ means not, ‘able to be desired’, as Mill has been accused of mistakenly assuming, but ‘ought to be desired’, or something similar. The appeal of this idea is visible in the critical reaction to Mill, which generally goes along with his equation of ‘good’ with ‘desirable’ and only balks at the second step, and it crosses broad boundaries in terms of philosophers’ other (...)
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  26. Species, higher taxa, and the units of evolution.Marc Ereshefsky - 1991 - Philosophy of Science 58 (1):84-101.
    A number of authors argue that while species are evolutionary units, individuals and real entities, higher taxa are not. I argue that drawing the divide between species and higher taxa along such lines has not been successful. Common conceptions of evolutionary units either include or exclude both types of taxa. Most species, like all higher taxa, are not individuals, but historical entities. Furthermore, higher taxa are neither more nor less real than species. None of this implies that there is no (...)
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  27.  12
    Ecologies: Mark Dion, Peter Fend, Dan Peterman.Mark Dion, Peter Fend, Dan Peterman, Stephanie Smith & David and Alfred Smart Museum of Art - 2001 - University of Chicago David & Alfred.
    Since the 1960s, many artists have incorporated ecological concerns into their work, an endeavor that has required new strategies in art-making. To explore recent American manifestations of these interests, the David and Alfred Smart Museum commissioned new projects from artists Mark Dion, Peter Fend, and Dan Peterman, each focusing on interrelationships between particular organisms—human beings-and a specific group of sites—a museum building, a river landscape, and a university campus. The results, exhibited at the Smart Museum during the summer of (...)
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    The hidden spring: a journey to the source of consciousness.Mark Solms - 2021 - New York, NY: W.W. Norton & Company.
    A revelatory new theory of consciousness that returns emotions to the center of mental life. For Mark Solms, one of the boldest thinkers in contemporary neuroscience, discovering how consciousness comes about has been a lifetime's quest. Scientists consider it the "hard problem" because it seems an impossible task to understand why we feel a subjective sense of self and how it arises in the brain. Venturing into the elementary physics of life, Solms has now arrived at an astonishing answer. (...)
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  29. Darwin’s solution to the species problem.Marc Ereshefsky - 2010 - Synthese 175 (3):405 - 425.
    Biologists and philosophers that debate the existence of the species category fall into two camps. Some believe that the species category does not exist and the term 'species' should be eliminated from biology. Others believe that with new biological insights or the application of philosophical ideas, we can be confident that the species category exists. This paper offers a different approach to the species problem. We should be skeptical of the species category, but not skeptical of the existence of those (...)
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    The Communicative Work of Organizations in Shaping Argumentative Realities.Mark Aakhus - 2017 - Philosophy and Technology 30 (2):191-208.
    It is argued here that large-scale organization and networked computing enable new divisions of communicative work aimed at shaping the content, direction, and outcomes of societal conversations. The challenge for argumentation theory and practice lies in attending to these new divisions of communicative work in constituting contemporary argumentative realities. Goffman’s conceptualization of participation frameworks and production formats are applied to articulate the communicative work of organizations afforded by networked computing that invents and innovates argument in all of its senses—as product, (...)
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  31. Psychological categories as homologies: lessons from ethology.Marc Ereshefsky - 2007 - Biology and Philosophy 22 (5):659-674.
  32.  21
    Science court: A case study in designing discourse to manage policy controversy.Mark Aakhus - 1999 - Knowledge, Technology & Policy 12 (2):20-37.
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  33. The grounded functionality account of natural kinds.Marc Ereshefsky & Thomas A. C. Reydon - 2023 - In William C. Bausman, Janella K. Baxter & Oliver M. Lean (eds.), From biological practice to scientific metaphysics. Minneapolis: University of Minnesota Press.
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  34. Homology: Integrating Phylogeny and Development.Marc Ereshefsky - 2009 - Biological Theory 4 (3):225-229.
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  35. The nature of life: classical and contemporary perspectives from philosophy and science.Mark Bedau & Carol Cleland (eds.) - 2010 - New York: Cambridge University Press.
    Bringing together the latest scientific advances and some of the most enduring subtle philosophical puzzles and problems, this book collects original historical and contemporary sources to explore the wide range of issues surrounding the nature of life. Selections ranging from Aristotle and Descartes to Sagan and Dawkins are organised around four broad themes covering classical discussions of life, the origins and extent of natural life, contemporary artificial life creations and the definition and meaning of 'life' in its most general form. (...)
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  36.  83
    The semantic approach to evolutionary theory.Marc Ereshefsky - 1991 - Biology and Philosophy 6 (1):59-80.
    Paul Thompson, John Beatty, and Elisabeth Lloyd argue that attempts to resolve certain conceptual issues within evolutionary biology have failed because of a general adherence to the received view of scientific theories. They maintain that such issues can be clarified and resolved when one adopts a semantic approach to theories. In this paper, I argue that such conceptual issues are just as problematic on a semantic approach. Such issues arise from the complexity involved in providing formal accounts of theoretical laws (...)
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  37. Species, Historicity, and Path Dependency.Marc Ereshefsky - 2014 - Philosophy of Science 81 (5):714-726.
    This paper clarifies the historical nature of species by showing that species are path-dependent entities. A species’ identity is not determined by its intrinsic properties or its origin, but by its unique evolutionary path. Seeing that species are path-dependent entities has three implications: it shows that origin essentialism is mistaken, it rebuts two challenges to the species-are-historical-entities thesis, and it demonstrates that the identity of a species during speciation depends on future events.
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  38. Species, taxonomy, and systematics.Marc Ereshefsky - 2007 - In Michael Ruse (ed.), Philosophy of Biology. Prometheus Books. pp. 403--428.
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  39.  7
    Ethnobiological kinds and material grounding: comments on Ludwig.Thomas A. C. Reydon & Marc Ereshefsky - 2024 - European Journal for Philosophy of Science 14 (1):1-10.
    In a recent article, David Ludwig proposed to reorient the debate on natural kinds away from inquiring into the naturalness of kinds and toward elucidating the materiality of kinds. This article responds to Ludwig’s critique of a recently proposed account of kinds and classification, the Grounded Functionality Account, against which Ludwig offsets his own account, and criticizes Ludwig’s proposal to shift focus from naturalness to materiality in the philosophy of kinds and classification.
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    Disputed moral issues: a reader.Mark Timmons (ed.) - 2007 - New York: Oxford University Press.
  41.  58
    The evolution of the linnaean hierarchy.Marc Ereshefsky - 1997 - Biology and Philosophy 12 (4):493-519.
    The Linnaean system of classification is a threefold system of theoretical assumptions, sorting rules, and rules of nomenclature. Over time, that system has lost its theoretical assumptions as well as its sorting rules. Cladistic revisions have left it less and less Linnaean. And what remains of the system is flawed on pragmatic grounds. Taking all of this into account, it is time to consider alternative systems of classification.
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  42.  98
    Morality without foundations: a defense of ethical contextualism.Mark Timmons - 1999 - New York: Oxford University Press.
    In this book Timmons defends a metaethical view that exploits certain contextualist themes in philosophy of language and epistemology. He advances what he calls assertoric non-descriptivism, a view that employs semantic contextualism in giving an account of moral discourse. This view, which like traditional non-descriptivist views stresses the practical, action-guiding function of moral thought and discourse, also allows that moral sentences, as typically used, make genuine assertions. Timmons then defends a contextualist moral epistemology thus completing his overall program of contextualism (...)
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  43. Some problems with the linnaean hierarchy.Marc Ereshefsky - 1994 - Philosophy of Science 61 (2):186-205.
    Most biologists use the Linnaean system for constructing classifications of the organic world. The Linnaean system, however, has lost its theoretical basis due to the shift in biology from creationist and essentialist tenets to evolutionary theory. As a result, the Linnaean system is both cumbersome and ontologically vacuous. This paper illustrates the problems facing the Linnaean system, and ends with a brief introduction to an alternative approach to biological classification.
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  44. What does it take to "have" a reason?Mark Schroeder - 2011 - In Andrew Reisner & Asbjørn Steglich-Petersen (eds.), Reasons for Belief. New York: Cambridge University Press. pp. 201--22.
    forthcoming in reisner and steglich-peterson, eds., Reasons for Belief If I believe, for no good reason, that P and I infer (correctly) from this that Q, I don’t think we want to say that I ‘have’ P as evidence for Q. Only things that I believe (or could believe) rationally, or perhaps, with justification, count as part of the evidence that I have. It seems to me that this is a good reason to include an epistemic acceptability constraint on evidence (...)
     
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  45. A decentered theory of governance.Mark Bevir - 2011 - In Jeremy S. Duncan (ed.), Perspectives on ethics. New York: Nova Science Publishers.
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  46. Control of education : issues and tensions in centralization and decentralization.Mark Bray - 2007 - In Robert F. Arnove & Carlos Alberto Torres (eds.), Comparative education: the dialectic of the global and the local. Lanham, MD: Rowman & Littlefield.
     
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  47. „The One and the Many and Kinds of Distinctness: The Possibility of Monism or Pantheism in the young Leibniz “.Mark Kulstad - 2005 - In Donald Rutherford & J. A. Cover (eds.), Leibniz: nature and freedom. New York: Oxford University Press. pp. 20--43.
     
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  48. The One and the Many and Kinds of Distinctness.".Mark Kulstad - 2005 - In Donald Rutherford & J. A. Cover (eds.), Leibniz: nature and freedom. New York: Oxford University Press. pp. 20--43.
     
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  49. Bridging the gap between human kinds and biological kinds.Marc Ereshefsky - 2004 - Philosophy of Science 71 (5):912-921.
    Many writers claim that human kinds are significantly different from biological and natural kinds. Some suggest that humans kinds are unique because social structures are essential for the etiology of human kinds. Others argue that human cultural evolution is decidedly different from other forms of evolution. In this paper I suggest that the gulf between humans and our biological relatives is not as wide as some argue. There is a taxonomic difference between human and nonhuman organisms, but such factors as (...)
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    Ubiquity: the science of history, or why the world is simpler than we think.Mark Buchanan - 2000 - London: Weidenfeld & Nicolson.
    Scientists have recently discovered a new law of nature. Its footprints are virtually everywhere - in the spread of forest fires, mass extinctions, traffic jams, earthquakes, stock-market fluctuations, the rise and fall of nations, and even trends in fashion, music and art. Wherever we look, the world is modelled on a simple template: like a steep pile of sand, it is poised on the brink of instability, with avalanches - in events, ideas or whatever - following a universal pattern of (...)
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