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  1. Historical Reconstruction: Gaining Epistemic Access to the Deep Past.Patrick Forber - 2011 - Philosophy, Theory, and Practice in Biology 3 (20130604).
    We discuss the scientific task of historical reconstruction and the problem of epistemic access. We argue that strong epistemic support for historical claims consists in the consilience of multiple independent lines of evidence, and analyze the impact hypothesis for the End-Cretaceous mass extinction to illustrate the accrual of epistemic support. Although there are elements of the impact hypothesis that enjoy strong epistemic support, the general conditions for this are strict, and help to clarify the difficulties associated with reconstructing the deep (...)
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  • Should We Aim for Consensus?Alfred Moore & John Beatty - 2010 - Episteme 7 (3):198-214.
    There can be good reasons to doubt the authority of a group of scientists. But those reasons do not include lack of unanimity among them. Indeed, holding science to a unanimity or near-unanimity standard has a pernicious effect on scientific deliberation, and on the transparency that is so crucial to the authority of science in a democracy. What authorizes a conclusion is the quality of the deliberation that produced it, which is enhanced by the presence of a non-dismissible minority. Scientists (...)
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  • Objectivity and Underdetermination in Statistical Model Selection.Beckett Sterner & Scott Lidgard - 2024 - British Journal for the Philosophy of Science 75 (3):717-739.
    The growing range of methods for statistical model selection is inspiring new debates about how to handle the potential for conflicting results when different methods are applied to the same data. While many factors enter into choosing a model selection method, we focus on the implications of disagreements among scientists about whether, and in what sense, the true probability distribution is included in the candidate set of models. While this question can be addressed empirically, the data often provide inconclusive results (...)
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  • La paléontologie: distancer le temps.John Huss - 2018 - In Christophe Bouton & Philippe Huneman (eds.), Temps de la nature, nature du temps: Etudes philosophiques sur le temps dans les sciences naturelles. CNRS Editions. pp. 239-266.
    Dans La Paléontologie : distancer le temps, John Huss examine les défis de la compréhension des échelles de temps géologiques en paléontologie. Les profondeurs du temps, comparables aux vastes distances spatiales, nécessitent des heuristiques uniques pour être conceptualisées. Huss explore la "spatialisation du temps", où les fossiles et les strates géologiques servent d'archives physiques de processus s'étendant sur des millions d'années. Cette approche permet aux paléontologues de reconstruire l'histoire de la Terre et de comprendre les changements évolutifs. -/- L'article aborde (...)
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  • (1 other version)Paleontology: Outrunning Time.John E. Huss - 2017 - Boston Studies in the Philosophy and History of Science 326:211-235.
    In this paper, I discuss several temporal aspects of paleontology from a philosophical perspective. I begin by presenting the general problem of “taming” deep time to make it comprehensible at a human scale, starting with the traditional geologic time scale: an event-based, relative time scale consisting of a hierarchy of chronological units. Not only does the relative timescale provide a basis for reconstructing many of the general features of the history of life, but it is also consonant with the cognitive (...)
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  • (1 other version)Practice oriented controversies and borrowed epistemic support in current evolutionary biology. The case of phylogeography.Alfonso Arroyo-Santos, Mark E. Olson & Francisco Vergara-Silva - 2015 - Perspectives on Science 23 (3):310-334.
    Although there is increasing recognition that theory and practice in science are often inseparably intertwined, discussions of scientific controversies often continue to focus on theory, and not practice or methodologies. As a contribution to constructing a framework towards understanding controversies linked to scientific practices, we introduce the notion of borrowed epistemic credibility, to describe the situation in which scientists exploit fallacious similarities between accepted tenets in other fields to garner support for a given position in their own field. Our proposal (...)
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  • Rate variation during molecular evolution: creationism and the cytochrome c molecular clock.R. Hofmann James - 2017 - Evolution: Education and Outreach 10 (1).
    Molecular clocks based upon amino acid sequences in proteins have played a major role in the clarification of evolutionary phylogenies. Creationist criticisms of these methods sometimes rely upon data that might initially seem to be paradoxical. For example, human cytochrome c differs from that of an alligator by 13 amino acids but differs by 14 amino acids from a much more closely related primate, Otolemur garnettii. The apparent anomaly is resolved by taking into consideration the variable substitution rate of cytochrome (...)
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  • How to study adaptation (and why to do it that way).Mark E. Olson & Alfonso Arroyo-Santos - 2015 - Quarterly Review of Biology 90 (2):167-191.
    Some adaptationist explanations are regarded as maximally solid and others fanciful just-so stories. Just-so stories are explanations based on very little evidence. Lack of evidence leads to circular-sounding reasoning: “this trait was shaped by selection in unseen ancestral populations and this selection must have occurred because the trait is present.” Well-supported adaptationist explanations include evidence that is not only abundant but selected from comparative, populational, and optimality perspectives, the three adaptationist subdisciplines. Each subdiscipline obtains its broad relevance in evolutionary biology (...)
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  • Forever beyond our grasp?: Review of P. Kyle Stanford , Exceeding Our Grasp: Science, History, and the Problem of Unconceived Alternatives.Patrick Forber - 2008 - Biology and Philosophy 23 (1):135-141.
    Does science successfully uncover the deep structure of the natural world? Or are the depths forever beyond our epistemic grasp? Since the decline of logical positivism and logical empiricism, scientific realism has become the consensus view: of course our scientific theories apprehend the deep structure of the world. What else could explain the remarkable success of science? This is the explanationist defense of scientific realism, the “ultimate argument.” Kyle Stanford starts here and, using the history of theorizing about biological inheritance (...)
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  • Making coherent senses of success in scientific modeling.Beckett Sterner & Christopher DiTeresi - 2021 - European Journal for Philosophy of Science 11 (1):1-20.
    Making sense of why something succeeded or failed is central to scientific practice: it provides an interpretation of what happened, i.e. an hypothesized explanation for the results, that informs scientists’ deliberations over their next steps. In philosophy, the realism debate has dominated the project of making sense of scientists’ success and failure claims, restricting its focus to whether truth or reliability best explain science’s most secure successes. Our aim, in contrast, will be to expand and advance the practice-oriented project sketched (...)
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  • Externalismo semántico y subdeterminación empírica. Respuesta a un desafío al realismo científico.Marc Jiménez Rolland - 2017 - Dissertation, Universidad Autónoma Metropolitana
    I offer an explicit account of the underdetermination thesis as well as of the many challenges it poses to scientific realism; a way to answer to these challenges is explored and outlined, by shifting attention to the content of theories. I argue that, even if we have solid grounds (as I contend we do) to support that some varieties of the underdetermination thesis are true, scientific realism can still offer an adequate picture of the aims and achievements of science.
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  • Monist and Pluralist Approaches on Underdetermination: A Case Study in Evolutionary Microbiology.Thomas Bonnin - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (1):135-155.
    Philosophers have usually highlighted how the weakness and paucity of historical evidence underdetermine the choice between rival historical explanations. Focusing underdetermination on the link between theory and evidence comes, I argue, with three assumptions: competing hypotheses are easy to generate, investigators agree on the constitution and interpretation of the evidence and a plurality of hypotheses is a useful evil to reach consensus. The last assumption implies that the sustained coexistence of incompatible hypotheses is considered as a scientific failure. I argue (...)
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  • (Mis)interpreting Mathematical Models: Drift as a Physical Process.Michael R. Dietrich, Robert A. Skipper Jr & Roberta L. Millstein - 2009 - Philosophy, Theory, and Practice in Biology 1 (20130604):e002.
    Recently, a number of philosophers of biology have endorsed views about random drift that, we will argue, rest on an implicit assumption that the meaning of concepts such as drift can be understood through an examination of the mathematical models in which drift appears. They also seem to implicitly assume that ontological questions about the causality of terms appearing in the models can be gleaned from the models alone. We will question these general assumptions by showing how the same equation (...)
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  • (1 other version)“Practice-Oriented Controversies and Borrowed Epistemic Credibility in Current Evolutionary Biology: Phylogeography as a Case Study.Alfonso Arroyo-Santos, Mark E. Olson & Francisco Vergara-Silva - 2017 - Perspectives on Science 25 (3):310-334.
    Philosophical treatments of scientific controversies usually focus on theory, excluding important practice related aspects. However, scientists in conflict often appeal to extra-theoretical and extra-empirical elements. To understand better the role that non-empirical elements play in scientific controversies, we introduce the notion of borrowed epistemic credibility, illustrating our proposal with a recent controversy in a field of evolutionary biology known as phylogeography. Our analysis shows how scientific controversies that spring from disagreements about methodological issues potentially involve deeper debates regarding what constitutes (...)
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  • Spandrels and a pervasive problem of evidence.Patrick Forber - 2009 - Biology and Philosophy 24 (2):247-266.
    Evolutionary biology, indeed any science that attempts to reconstruct prehistory, faces practical limitations on available data. These limitations create the problem of contrast failure: specific observations may fail to discriminate between rival evolutionary hypotheses. Assessing the risk of contrast failure provides a way to evaluate testing protocols in evolutionary science. Here I will argue that part of the methodological critique in the Spandrels paper involves diagnosing contrast failure problems. I then distinguish the problem of contrast failure from the more familiar (...)
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  • Who's Afraid of Dissent? Addressing Concerns about Undermining Scientific Consensus in Public Policy Developments.Inmaculada de Melo-Martín & Kristen Intemann - 2014 - Perspectives on Science 22 (4):593-615.
    Many have argued that allowing and encouraging public avenues for dissent and critical evaluation of scientific research is a necessary condition for promoting the objectivity of scientific communities and advancing scientific knowledge . The history of science reveals many cases where an existing scientific consensus was later shown to be wrong . Dissent plays a crucial role in uncovering potential problems and limitations of consensus views. Thus, many have argued that scientific communities ought to increase opportunities for dissenting views to (...)
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