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Radiocarbon Dating in Archaeology: Triangulation and Traceability

In Sabina Leonelli & Niccolò Tempini (eds.), Data Journeys in the Sciences. Springer. pp. 285-301 (2020)

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  1. Does matter really matter? Computer simulations, experiments, and materiality.Wendy S. Parker - 2009 - Synthese 169 (3):483-496.
    A number of recent discussions comparing computer simulation and traditional experimentation have focused on the significance of “materiality.” I challenge several claims emerging from this work and suggest that computer simulation studies are material experiments in a straightforward sense. After discussing some of the implications of this material status for the epistemology of computer simulation, I consider the extent to which materiality (in a particular sense) is important when it comes to making justified inferences about target systems on the basis (...)
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  • Of lymphocytes and pixels: The techno-visual production of cell populations.Alberto Cambrosio & Peter Keating - 2000 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 31 (2):233-270.
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  • Disease-mongering through clinical trials.María González-Moreno, Cristian Saborido & David Teira - 2015 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 51:11-18.
    Our goal in this paper is to articulate a precise concept of at least a certain kind of disease-mongering, showing how pharmaceutical marketing can commercially exploit certain diseases when their best definition is given through the success of a treatment in a clinical trial. We distinguish two types of disease-mongering according to the way they exploit the definition of the trial population for marketing purposes. We argue that behind these two forms of disease-mongering there are two well-known problems in the (...)
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  • Reconstructing Reality: Models, Mathematics, and Simulations.Margaret Morrison - 2014 - New York, US: Oup Usa.
    The book examines issues related to the way modeling and simulation enable us to reconstruct aspects of the world we are investigating. It also investigates the processes by which we extract concrete knowledge from those reconstructions and how that knowledge is legitimated.
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  • Do We See Through a Microscope?Ian Hacking - 1981 - Pacific Philosophical Quarterly 62 (4):305-322.
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  • Toward a History of Epistemic Things: Synthesizing Proteins in the Test Tube.Hans-Jörg Rheinberger - 1997 - Stanford University Press.
    In this powerful work of conceptual and analytical originality, the author argues for the primacy of the material arrangements of the laboratory in the dynamics of modern molecular biology. In a post-Kuhnian move away from the hegemony of theory, he develops a new epistemology of experimentation in which research is treated as a process for producing epistemic things. A central concern of the book is the basic question of how novelty is generated in the empirical sciences. In addressing this question, (...)
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  • Phenomenology of the Social World.Alfred Schutz - 1967 - Northwestern University Press.
    In this book, his major work, Alfred Schutz attempts to provide a sound philosophical basis for the sociological theories of Max Weber. Using a Husserlian phenomenology, Schutz provides a complete and original analysis of human action and its "intended meaning.".
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  • Resituating Knowledge: Generic Strategies and Case Studies.Mary S. Morgan - 2014 - Philosophy of Science 81 (5):1012-1024.
    This paper addresses the problem of how scientific knowledge, which is always locally generated, becomes accepted in other sites. The analysis suggests that there are a small number of strategies that enable scientists to resituate knowledge and that these strategies are generic: they are not restricted to specific disciplines or modes of doing science but rather are found in a variety of different forms across the sciences.
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  • Being-in-the-World: A Commentary on Heidegger's Being in Time, Division I.Hubert L. Dreyfus - 1990 - Bradford.
    Essays discuss the themes of worldliness, affectedness, understanding, and the care-structure found in Heidegger's work on the nature of existence.
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  • The self-vindication of the laboratory sciences.Ian Hacking - 1992 - In Andrew Pickering (ed.), Science as practice and culture. Chicago: University of Chicago Press. pp. 29--64.
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  • Thinking from Things: Essays in the Philosophy of Archaeology.Alison Wylie - 2002 - University of California Press.
    In this long-awaited compendium of new and newly revised essays, Alison Wylie explores how archaeologists know what they know. -/- Preprints available for download. Please see entry for specific article of interest.
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  • (1 other version)What is a Digital Object?Yuk Hui - 2012 - Metaphilosophy 43 (4):380-395.
    We find ourselves in a media-intensive milieu comprising networks, images, sounds, and text, which we generalize as data and metadata. How can we understand this digital milieu and make sense of these data, not only focusing on their functionalities but also reflecting on our everyday life and existence? How do these material constructions demand a new philosophical understanding? Instead of following the reductionist approaches, which understand the digital milieu as abstract entities such as information and data, this article proposes to (...)
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  • Classificatory Theory in Data-intensive Science: The Case of Open Biomedical Ontologies.Sabina Leonelli - 2012 - International Studies in the Philosophy of Science 26 (1):47 - 65.
    Knowledge-making practices in biology are being strongly affected by the availability of data on an unprecedented scale, the insistence on systemic approaches and growing reliance on bioinformatics and digital infrastructures. What role does theory play within data-intensive science, and what does that tell us about scientific theories in general? To answer these questions, I focus on Open Biomedical Ontologies, digital classification tools that have become crucial to sharing results across research contexts in the biological and biomedical sciences, and argue that (...)
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  • Historical Perspectives on Climate Change.James Rodger Fleming - 2005 - Oup Usa.
    This intriguing volume provides a thorough examination of the historical roots of global climate change as a field of inquiry, from the Enlightenment to the late twentieth century. Based on primary and archival sources, the book is filled with interesting perspectives on what people have understood, experienced, and feared about the climate and its changes in the past. Chapters explore climate and culture in Enlightenment thought; climate debates in early America; the development of international networks of observation; the scientific transformation (...)
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  • Inventing Temperature: Measurement and Scientific Progress.Hasok Chang - 2004 - New York, US: OUP Usa.
    This book presents the concept of “complementary science” which contributes to scientific knowledge through historical and philosophical investigations. It emphasizes the fact that many simple items of knowledge that we take for granted were actually spectacular achievements obtained only after a great deal of innovative thinking, painstaking experiments, bold conjectures, and serious controversies. Each chapter in the book consists of two parts: a narrative part that states the philosophical puzzle and gives a problem-centred narrative on the historical attempts to solve (...)
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  • (1 other version)Material Models in Biology.James R. Griesemer - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:79 - 93.
    Propositions alone are not constitutive of science. But is the "non-propositional" side of science theoretically superfluous: must philosophy of science consider it in order to adequately account for science? I explore the boundary between the propositional and non-propositional sides of biological theory, drawing on three cases: Grinnell's remnant models of faunas, Wright's path analysis, and Weismannism's role in the generalization of evolutionary theory. I propose a picture of material model-building in biology in which manipulated systems of material objects function as (...)
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  • The philosophy of information.Luciano Floridi - 2011 - New York: Oxford University Press.
    Luciano Floridi presents a book that will set the agenda for the philosophy of information. PI is the philosophical field concerned with the critical investigation of the conceptual nature and basic principles of information, including its dynamics, utilisation, and sciences, and the elaboration and application of information-theoretic and computational methodologies to philosophical problems. This book lays down, for the first time, the conceptual foundations for this new area of research. It does so systematically, by pursuing three goals. Its metatheoretical goal (...)
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  • Histories of scientific observation.Lorraine Daston & Elizabeth Lunbeck (eds.) - 2011 - London: University of Chicago Press.
    This book makes a compelling case for the significance of the long, surprising, and epistemologically significant history of scientific observation, a history ...
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  • There and back again, or the problem of locality in biodiversity surveys.Ayelet Shavit & James Griesemer - 2009 - Philosophy of Science 76 (3):273-294.
    We argue that ‘locality’, perhaps the most mundane term in ecology, holds a basic ambiguity: two concepts of space—nomothetic and idiographic—which are both necessary for a rigorous resurvey to “the same” locality in the field, are committed to different practices with no common measurement. A case study unfolds the failure of the standard assumption that an exogenous grid of longitude and latitude, as fine‐grained as one wishes, suffices for revisiting a species locality. We briefly suggest a scale‐dependent “resolution” for this (...)
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  • Data and phenomena: a restatement and defense.James F. Woodward - 2011 - Synthese 182 (1):165-179.
    This paper provides a restatement and defense of the data/ phenomena distinction introduced by Jim Bogen and me several decades ago (e.g., Bogen and Woodward, The Philosophical Review, 303–352, 1988). Additional motivation for the distinction is introduced, ideas surrounding the distinction are clarified, and an attempt is made to respond to several criticisms.
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  • Kinds of People: Moving Targets.Ian Hacking - 2007 - In Hacking Ian (ed.), Proceedings of the British Academy, Volume 151, 2006 Lectures. pp. 285-318.
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  • Scientific perspectivism.Ronald N. Giere - 2006 - Chicago: University of Chicago Press.
    Many people assume that the claims of scientists are objective truths. But historians, sociologists, and philosophers of science have long argued that scientific claims reflect the particular historical, cultural, and social context in which those claims were made. The nature of scientific knowledge is not absolute because it is influenced by the practice and perspective of human agents. Scientific Perspectivism argues that the acts of observing and theorizing are both perspectival, and this nature makes scientific knowledge contingent, as Thomas Kuhn (...)
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  • Epistemic cultures: how the sciences make knowledge.Karin Knorr-Cetina - 1999 - Cambridge: Harvard University Press.
    How does science create knowledge? Epistemic cultures, shaped by affinity, necessity, and historical coincidence, determine how we know what we know. In this book, Karin Knorr Cetina compares two of the most important and intriguing epistemic cultures of our day, those in high energy physics and molecular biology. Her work highlights the diversity of these cultures of knowing and, in its depiction of their differences--in the meaning of the empirical, the enactment of object relations, and the fashioning of social relations--challenges (...)
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  • On the Heavens.384-322 B. C. Aristotle - 1939 - Heinemann Harvard University Press.
    Aristotle, great Greek philosopher, researcher, reasoner, and writer, born at Stagirus in 384 BCE, was the son of Nicomachus, a physician, and Phaestis. He studied under Plato at Athens and taught there ; subsequently he spent three years at the court of a former pupil, Hermeias, in Asia Minor and at this time married Pythias, one of Hermeias's relations. After some time at Mitylene, in 343?2 he was appointed by King Philip of Macedon to be tutor of his teen-aged son (...)
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  • Measurement Outside the Laboratory.Marcel Boumans - 2005 - Philosophy of Science 72 (5):850-863.
    The kinds of models discussed in this paper function as measuring instruments. We will concentrate on two necessary steps for measurement: (1) the search of a mathematical representation of the phenomenon; (2) this representation should cover an invariant relationship between the properties of the phenomenon to be measured and observable accociated attributes of a measuring instrument. Therefore, the measuring instrument should function as a nomological machine. However, invariant relationships are not necessarily ceteris paribus regularities, but could also occur when the (...)
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  • Sorting Things out: Classification and Its Consequences.Geoffrey C. Bowker & Susan Leigh Star - 2001 - Journal of the History of Biology 34 (1):212-214.
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  • A material theory of induction.John D. Norton - 2003 - Philosophy of Science 70 (4):647-670.
    Contrary to formal theories of induction, I argue that there are no universal inductive inference schemas. The inductive inferences of science are grounded in matters of fact that hold only in particular domains, so that all inductive inference is local. Some are so localized as to defy familiar characterization. Since inductive inference schemas are underwritten by facts, we can assess and control the inductive risk taken in an induction by investigating the warrant for its underwriting facts. In learning more facts, (...)
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  • Saving the phenomena.James Bogen & James Woodward - 1988 - Philosophical Review 97 (3):303-352.
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  • The Ecological Approach to Visual Perception: Classic Edition.James J. Gibson - 1979 - Houghton Mifflin.
    This is a book about how we see: the environment around us (its surfaces, their layout, and their colors and textures); where we are in the environment; whether or not we are moving and, if we are, where we are going; what things are good for; how to do things (to thread a needle or drive an automobile); or why things look as they do.The basic assumption is that vision depends on the eye which is connected to the brain. The (...)
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  • Data-Centric Biology: A Philosophical Study.Sabina Leonelli - 2016 - London: University of Chicago Press.
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  • La Ricerca Scientifica nell'Era dei Big Data.Sabina Leonelli - 2018 - Meltemi.
    "Scientific Research in the Era of Big Data" - this book was also published in French (Mimesis) in 2019 and in Portuguese in 2022 (FIOCRUZ editors).
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  • Concretizing Simondon and Constructivism: A Recursive Contribution to the Theory of Concretization.Andrew Lewis Feenberg - 2017 - Science, Technology, and Human Values 42 (1):62-85.
    This article argues that Gilbert Simondon’s philosophy of technology is useful for both science and technology studies and critical theory. The synthesis has political implications. It offers an argument for the rationality of democratic interventions by citizens into decisions concerning technology. The new framework opens a perspective on the radical transformation of technology required by ecological modernization and sustainability. In so doing, it suggests new applications of STS methods to politics as well as a reconstruction of the Frankfurt School’s “rational (...)
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  • What makes Big Data, Big Data? Exploring the ontological characteristics of 26 datasets.Gavin McArdle & Rob Kitchin - 2016 - Big Data and Society 3 (1).
    Big Data has been variously defined in the literature. In the main, definitions suggest that Big Data possess a suite of key traits: volume, velocity and variety, but also exhaustivity, resolution, indexicality, relationality, extensionality and scalability. However, these definitions lack ontological clarity, with the term acting as an amorphous, catch-all label for a wide selection of data. In this paper, we consider the question ‘what makes Big Data, Big Data?’, applying Kitchin’s taxonomy of seven Big Data traits to 26 datasets (...)
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  • What distinguishes data from models?Sabina Leonelli - 2019 - European Journal for Philosophy of Science 9 (2):22.
    I propose a framework that explicates and distinguishes the epistemic roles of data and models within empirical inquiry through consideration of their use in scientific practice. After arguing that Suppes’ characterization of data models falls short in this respect, I discuss a case of data processing within exploratory research in plant phenotyping and use it to highlight the difference between practices aimed to make data usable as evidence and practices aimed to use data to represent a specific phenomenon. I then (...)
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  • The Time of Data: Timescales of Data Use in the Life Sciences.Sabina Leonelli - 2018 - Philosophy of Science 85 (5):741-754.
    This article considers the temporal dimension of data processing and use and the ways in which it affects the production and interpretation of knowledge claims. I start by distinguishing the time at which data collection, dissemination, and analysis occur from the time in which the phenomena for which data serve as evidence operate. Building on the analysis of two examples of data reuse from modeling and experimental practices in biology, I then argue that Dt affects how researchers select and interpret (...)
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  • How Archaeological Evidence Bites Back: Strategies for Putting Old Data to Work in New Ways.Alison Wylie - 2017 - Science, Technology, and Human Values 42 (2):203-225.
    Archaeological data are shadowy in a number of senses. Not only are they notoriously fragmentary but the conceptual and technical scaffolding on which archaeologists rely to constitute these data as evidence can be as constraining as it is enabling. A recurrent theme in internal archaeological debate is that reliance on sedimented layers of interpretative scaffolding carries the risk that “preunderstandings” configure what archaeologists recognize and record as primary data, and how they interpret it as evidence. The selective and destructive nature (...)
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  • Are Clusters Races? A Discussion of the Rhetorical Appropriation of Rosenberg et al.’s “Genetic Structure of Human Populations”.Melissa Wills - 2017 - Philosophy, Theory, and Practice in Biology 9 (12).
    Noah Rosenberg et al.'s 2002 article “Genetic Structure of Human Populations” reported that multivariate genomic analysis of a large cell line panel yielded reproducible groupings (clusters) suggestive of individuals' geographical origins. The paper has been repeatedly cited as evidence that traditional notions of race have a biological basis, a claim its authors do not make. Critics of this misinterpretation have often suggested that it follows from interpreters' personal biases skewing the reception of an objective piece of scientific writing. I contend, (...)
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  • Evidential Reasoning in Archaeology.Robert Chapman & Alison Wylie - 2016 - London: Bloomsbury Academic Publishing.
    Material traces of the past are notoriously inscrutable; they rarely speak with one voice, and what they say is never unmediated. They stand as evidence only given a rich scaffolding of interpretation which is, itself, always open to challenge and revision. And yet archaeological evidence has dramatically expanded what we know of the cultural past, sometimes demonstrating a striking capacity to disrupt settled assumptions. The questions we address in Evidential Reasoning are: How are these successes realized? What gives us confidence (...)
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  • (1 other version)The Uses of Argument.Stephen E. Toulmin - 1958 - Philosophy 34 (130):244-245.
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  • (1 other version)Representing and Intervening.Ian Hacking - 1983 - British Journal for the Philosophy of Science 35 (4):381-390.
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  • (1 other version)The philosophy of information.Luciano Floridi - 2010 - The Philosophers' Magazine 50:42-43.
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  • Scientific Practice and Ordinary Action: Ethnomethodology and Social Studies of Science.Michael Lynch - 1993 - New York: Cambridge University Press.
    Philosophers, historians, and sociologists of science have grown interested in the daily practices of scientists. Recent studies have drawn linkages between scientific innovations and more ordinary procedures, craft skills, and sources of sponsorship. These studies dispute the idea that science is the application of a unified method or the outgrowth of a progressive history of ideas. This book critically reviews arguments and empirical studies in two areas of sociology that have played a significant role in the 'sociological turn' in science (...)
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  • Archaeological Facts in Transit: The ‘Eminent Mounds’ of Central North America.Alison Wylie - 2010 - In Peter Howlett & Mary S. Morgan (eds.), How well do facts travel?: the dissemination of reliable knowledge. New York: Cambridge University Press. pp. 301-322.
    Archaeological facts have a perplexing character; they are often seen as less likely to “lie,” capable of bearing tangible, material witness to actual conditions of life, actions and events, but at the same time they are notoriously fragmentary and enigmatic, and disturbingly vulnerable to dispersal and attrition. As Trouillot (1995) argues for historical inquiry, the identification, selection, interpretation and narration of archaeological facts is a radically constructive process. Rather than conclude on this basis that archaeological facts and fictions are indistinguishable, (...)
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  • The Experimenter's Museum: GenBank, Natural History, and the Moral Economies of Biomedicine.Bruno J. Strasser - 2011 - Isis 102 (1):60-96.
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  • What Counts as Scientific Data? A Relational Framework.Sabina Leonelli - 2015 - Philosophy of Science 82 (5):810-821.
    This paper proposes an account of scientific data that makes sense of recent debates on data-driven and ‘big data’ research, while also building on the history of data production and use particularly within biology. In this view, ‘data’ is a relational category applied to research outputs that are taken, at specific moments of inquiry, to provide evidence for knowledge claims of interest to the researchers involved. They do not have truth-value in and of themselves, nor can they be seen as (...)
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  • Image and Logic: A Material Culture of Microphysics.Peter Galison (ed.) - 1997 - University of Chicago Press: Chicago.
    Engages with the impact of modern technology on experimental physicists. This study reveals how the increasing scale and complexity of apparatus has distanced physicists from the very science which drew them into experimenting, and has fragmented microphysics into different technical traditions.
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  • A History of Archaeological Thought.Bruce G. Trigger - 1989 - Cambridge University Press.
    Bruce Trigger's new book is the first ever to examine the history of archaeology from medieval times to the present in world-wide perspective. At once stimulating and even-handed, it places the development of archaeological thought and theory throughout within a broad social and intellectual framework. The successive but interacting trends apparent in archaeological thought are defined and the author seeks to determine the extent to which these trends were a reflection of the personal and collective interests of archaeologists as these (...)
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  • A Contractarian Solution to the Experimenter’s Regress.David Teira - 2013 - Philosophy of Science 80 (5):709-720.
    Debiasing procedures are experimental methods aimed at correcting errors arising from the cognitive biases of the experimenter. We discuss two of these methods, the predesignation rule and randomization, showing to what extent they are open to the experimenter’s regress: there is no metarule to prove that, after implementing the procedure, the experimental data are actually free from biases. We claim that, from a contractarian perspective, these procedures are nonetheless defensible since they provide a warrant of the impartiality of the experiment: (...)
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  • What’s so special about model organisms?Rachel A. Ankeny & Sabina Leonelli - 2011 - Studies in History and Philosophy of Science Part A 42 (2):313-323.
    This paper aims to identify the key characteristics of model organisms that make them a specific type of model within the contemporary life sciences: in particular, we argue that the term “model organism” does not apply to all organisms used for the purposes of experimental research. We explore the differences between experimental and model organisms in terms of their material and epistemic features, and argue that it is essential to distinguish between their representational scope and representational target. We also examine (...)
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  • Leviathan and the Air-Pump: Hobbes, Boyle, and the Experimental Life.Steven Shapin & Simon Schaffer - 1985 - Princeton University Press.
    In a new introduction, the authors describe how science and its social context were understood when this book was first published, and how the study of the history of science has changed since then.
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