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  1. Chemical analysis and the domains of reality: Wilhelm Homberg's Essais de chimie, 1702–1709.Mi Gyung Kim - 2000 - Studies in History and Philosophy of Science Part A 31 (4):37-69.
  • Miracles and Models: Why reports of the death of Structural Realism may be exaggerated.John Worrall - 2007 - Royal Institute of Philosophy Supplement 61:125-154.
    What is it reasonable to believe about our most successful scientific theories such as the general theory of relativity or quantum mechanics? That they are true, or at any rate approximately true? Or only that they successfully ‘save the phenomena’, by being ‘empirically adequate’? In earlier work I explored the attractions of a view called Structural Scientific Realism (hereafter: SSR). This holds that it is reasonable to believe that our successful theories are (approximately) structurally correct (and also that this is (...)
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  • ‘Revolution in Permanence’: Popper on Theory-Change in Science.John Worrall - 1995 - Royal Institute of Philosophy Supplement 39:75-102.
    Science, and in particular the process of theory-change in science, formed the major inspiration for Karl Popper's whole philosophy. Popper learned about the success of Einstein's revolutionary new theory in 1919, and Einstein ‘became a dominant influence on my thinking—in the long run perhaps the most important influence of all.’ Popper explained why:In May, 1919, Einstein's eclipse predictions were successfully tested by two British expeditions. With these tests a new theory of gravitation and a new cosmology suddenly appeared, not just (...)
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  • One dimensional experimental science. [REVIEW]J. E. Tiles - 1994 - British Journal for the Philosophy of Science 45 (1):341-352.
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  • PowerPoint in Public.David Stark & Verena Paravel - 2008 - Theory, Culture and Society 25 (5):30-55.
    When policy issues involve complex technical questions, demonstrations are more likely to marshal charts, graphs, models, and simulations than to mobilize popular movements in the streets. In this paper we analyze PowerPoint demonstrations, the most ubiquitous form of digital demonstrations. Our first set of demonstrations are the PowerPoint presentations made in December 2002 by the seven finalist architectural teams in the Innovative Design competition for rebuilding the World Trade Center. Our second case occurred some blocks away, several months later: Colin (...)
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  • Taking the Peppered Moth with a Grain of Salt.David Wÿss Rudge - 1999 - Biology and Philosophy 14 (1):9-37.
    H. B. D. Kettlewell's (1955, 1956) classic field experiments on industrial melanism in polluted and unpolluted settings using the peppered moth, Biston betularia, are routinely cited as establishing that the melanic (dark) form of the moth rose in frequency downwind of industrial centers because of the cryptic advantage dark coloration provides against visual predators in soot-darkened environments. This paper critiques three common myths surrounding these investigations: (1) that Kettlewell used a model that identified crypsis as the only selective force responsible (...)
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  • New philosophies of science in north America — twenty years later.Joseph Rouse - 1998 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 29 (1):71-122.
    This survey of major developments in North American philosophy of science begins with the mid-1960s consolidation of the disciplinary synthesis of internalist history and philosophy of science (HPS) as a response to criticisms of logical empiricism. These developments are grouped for discussion under the following headings: historical metamethodologies, scientific realisms, philosophies of the special sciences, revivals of empiricism, cognitivist naturalisms, social epistemologies, feminist theories of science, studies of experiment and the disunity of science, and studies of science as practice and (...)
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  • Filling the Space of Possibilities: Eighteenth-Century Chemistry's Transition from Art to Science.Lissa Roberts - 1993 - Science in Context 6 (2):511-553.
    The ArgumentThis paper charts eighteenth-century chemistry's transition from its definition as an art to its proclaimed status as a science. Both the general concept of art and specific practices of eighteenth-century chemists are explored to account for this transition. As a disciplined activity, art orients practitioners' attention toward particular directions and away from others, providing a structured space of possibilities within which their discipline develops. Consequently, while chemists throughout the eighteenth century aspired to reveal nature's “true voice,” the path of (...)
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  • Defending realism on the proper ground.Athanassios Raftopoulos - 2006 - Philosophical Psychology 19 (1):47-77.
    'Epistemological constructivism' holds that vision is mediated by background preconceptions and is theory-laden. Hence, two persons with differing theoretical commitments see the world differently and they could agree on what they see only if they both espoused the same conceptual framework. This, in its turn, undermines the possibility of theory testing and choice on a common theory-neutral empirical basis. In this paper, I claim that the cognitive sciences suggest that a part of vision may be only indirectly penetrated by cognition (...)
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  • We Have Never Been “New Experimentalists”: On the Rise and Fall of the Turn to Experimentation in the 1980s.Jan Potters & Massimiliano Simons - 2023 - Hopos: The Journal of the International Society for the History of Philosophy of Science 13 (1):91-119.
    The 1980s, it is often claimed, was the decade when experimentation finally became a philosophical topic. This was the responsibility, the claim continues, of one particular movement within philosophy of science, called “new experimentalism.” The aim of this article is to complicate this historical narrative. We argue that in the 1980s, the study of experimentation was carried out not by one movement with one particular aim but rather in a diverse and open-ended way by people with different aims and backgrounds. (...)
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  • Non-passivity of perceptual experience.Isabelle Peschard - 2010 - Contemporary Pragmatism 7 (1):149-164.
    The main problems faced by a conception of perception as passive will be introduced through a critical examination of John McDowell's account of 'empirical thinking'. Overcoming these difficulties will lead to a conception of perception as involving an active cognitive participation of the perceiver, and an account of how observational judgment is warranted that is focused on the conditions of experience. In both cases, analogies to inquiry in scientific experimental practice will be explored.
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  • No Title available: Reviews.Mark Peacock - 2011 - Economics and Philosophy 27 (3):352-358.
  • Deflationary Methodology and Rationality of Science.Thomas Nickles - 1996 - Philosophica 58 (2).
    The last forty years have produced a dramatic reversal in leading accounts of science. Once thought necessary to (explain) scientific progress, a rigid method of science is now widely considered impossible. Study of products yields to study of processes and practices, .unity gives way to diversity, generality to particularity, logic to luck, and final justification to heuristic scaffolding. I sketch the story, from Bacon and Descartes to the present, of the decline and fall of traditional scientific method, conceived as The (...)
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  • There Is "Noise," and Noise.Eleonora Montuschi - 2017 - Perspectives on Science 25 (2):204-225.
    What is noise? A tumultuous crowd is noisy or, more cheerfully, a group of students on holiday, or a flock of migrating birds. A loud conversation or loud laughter can be noisy if we are reading a philosophy article, or we are performing a physics experiment, or we are concentrating on a yoga exercise. In all such cases, noise is something that others do and that we unwillingly suffer, something that we perceive as an invasion of our perceptual space, or (...)
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  • Civilization and Its Discounts.Philip Mirowski - 1995 - Dialogue 34 (3):541-.
    Recent breakthroughs in the history and sociology of science have begun to help us to appreciate the vast complexity and intricate character of empirical endeavours in the sciences. The days when philosophers could blandly gesture towards “observation statements” or “falsification,” as if they were some readily understood phenomena or set of procedures, are gone, happily. This does not mean we can merely use the Duhem-Quine thesis as a shibboleth, however: we are now much more sensitive to immense difficulties in establishing (...)
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  • A Visible Hand in the Marketplace of Ideas: Precision Measurement as Arbitage.Philip Mirowski - 1994 - Science in Context 7 (3):563-589.
    The ArgumentWhile there has been muchattention given to experiment in modern science studies, there has been astoundingly little concern spared over the practice ofquanitataivemeasurment.Thus myths about the unreasonable effectiveness of mathematice in science still abound. This paper presents: An explicit mathematical model of the stabilization of quantitative constants in a mathematical science to rival older Bayesian and classical accounts;a framework for writing a history of pracitces with regard to treatment of quantitative measurement erroe; resourece for the comparative sociology of differing (...)
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  • Science in the age of mechanical reproduction: Moral and epistemic relations between diagrams and photographs. [REVIEW]Michael Lynch - 1991 - Biology and Philosophy 6 (2):205-226.
    Sociologists, philosophers and historians of science are gradually recognizing the importance of visual representation. This is part of a more general movement away from a theory-centric view of science and towards an interest in practical aspects of observation and experimentation. Rather than treating science as a matter of demonstrating the logical connection between theoretical and empirical statements, an increasing number of investigations are examining how scientists compose and use diagrams, graphs, photographs, micrographs, maps, charts, and related visual displays. This paper (...)
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  • Inference to the Best explanation.Peter Lipton - 2004 - In Martin Curd & Stathis Psillos (eds.), The Routledge Companion to Philosophy of Science. Routledge. pp. 193.
    Science depends on judgments of the bearing of evidence on theory. Scientists must judge whether an observation or the result of an experiment supports, disconfirms, or is simply irrelevant to a given hypothesis. Similarly, scientists may judge that, given all the available evidence, a hypothesis ought to be accepted as correct or nearly so, rejected as false, or neither. Occasionally, these evidential judgments can be made on deductive grounds. If an experimental result strictly contradicts a hypothesis, then the truth of (...)
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  • Scientific Practices as Social Knowledge.Juho Lindholm - 2023 - International Studies in the Philosophy of Science 35 (3):223-242.
    Practice-based philosophy of science has gradually arisen in the sociology of scientific knowledge (SSK) and science and technology studies (STS) during the past decades. It studies science as an ensemble of practices and theorising as one of these practices. A recent study has shown how the practice-based approach can be methodologically justified with reference to Peirce and Dewey. In this article, I will explore one consequence of that notion: science, as practice, is necessarily social. I will disambiguate five different senses (...)
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  • Scientific Practices as Social Knowledge.Juho Lindholm - 2022 - International Studies in the Philosophy of Science 35 (3):223-242.
    Practice-based philosophy of science has gradually arisen in the sociology of scientific knowledge (SSK) and science and technology studies (STS) during the past decades. It studies science as an ensemble of practices and theorising as one of these practices. A recent study has shown how the practice-based approach can be methodologically justified with reference to Peirce and Dewey. In this article, I will explore one consequence of that notion: science, as practice, is necessarily social. I will disambiguate five different senses (...)
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  • Computer simulation: The cooperation between experimenting and modeling.Johannes Lenhard - 2007 - Philosophy of Science 74 (2):176-194.
    The goal of the present article is to contribute to the epistemology and methodology of computer simulations. The central thesis is that the process of simulation modeling takes the form of an explorative cooperation between experimenting and modeling. This characteristic mode of modeling turns simulations into autonomous mediators in a specific way; namely, it makes it possible for the phenomena and the data to exert a direct influence on the model. The argumentation will be illustrated by a case study of (...)
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  • The construction of colorimetry by committee.Sean F. Johnston - 1996 - Science in Context 9 (4):387-420.
    This paper explores the confrontation of physical and contextual factors involved in the emergence of the subject of color measurement, which stabilized in essentially its present form during the interwar period. The contentions surrounding the specialty had both a national and a disciplinary dimension. German dominance was curtailed by American and British contributions after World War I. Particularly in America, communities of physicists and psychologists had different commitments to divergent views of nature and human perception. They therefore had to negotiate (...)
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  • The Construction of Colorimetry by Committee.Sean F. Johnston - 1996 - Science in Context 9 (4):387-420.
    The ArgumentThis paper explores the confrontation of physical and contextual factors involved in the emergence of the subject of color measurement, which stabilized in essentially its present form during the interwar period. The contentions surrounding the specialty had both a national and a disciplinary dimension. German dominance was curtailed by American and British contributions after World War I. Particularly in America, communities of physicists and psychologists had different commitments to divergent views of nature and human perception. They therefore had to (...)
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  • Molyneux' question redux.Alessandra Jacomuzzi, Pietro Kobau & Nicolo Bruno - 2003 - Phenomenology and the Cognitive Sciences 2 (4):255-280.
    After more than three centuries, Molyneux's question continues to challenge our understanding of cognition and perceptual systems. Locke, the original recipient of the question, approached it as a theoretical exercise relevant to long-standing philosophical issues, such as nativism, the possibility of common sensibles, and the empiricism-rationalism debate. However, philosophers were quick to adopt the experimentalist's stance as soon as they became aware of recoveries from congenital blindness through ophtalmic surgery. Such recoveries were widely reported to support empiricist positions, suggesting that (...)
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  • Molyneux's question redux.Alessandra C. Jacomuzzi, Pietro Kobau & Nicola Bruno - 2003 - Phenomenology and the Cognitive Sciences 2 (4):255-280.
    After more than three centuries, Molyneux's question continues to challenge our understanding of cognition and perceptual systems. Locke, the original recipient of the question, approached it as a theoretical exercise relevant to long-standing philosophical issues, such as nativism, the possibility of common sensibles, and the empiricism-rationalism debate. However, philosophers were quick to adopt the experimentalist's stance as soon as they became aware of recoveries from congenital blindness through ophtalmic surgery. Such recoveries were widely reported to support empiricist positions, suggesting that (...)
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  • The Interplay of Instrumentation, Experiment, and Theory: Patterns Emerging from Case Studies on Solar Redshift, 1890–1960.Klaus Hentschel - 1997 - Philosophy of Science 64 (4):64.
    This paper discusses a series of case studies on observations, experiments, and the theoretical interpretation between 1890 and 1960 of a shift of dark Fraunhofer lines in the solar spectrum. I argue for the use of flow charts to analyze interconnections and to identify sequences of research strategies. Also I advocate using a newly-developed tool called "block diagram" representation of experimental systems as an appropriate method to identify recurrent patterns in the interplay of instrumentation, experiment, and theory in research episodes.
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  • Measurements of gravitational redshift between 1959 and 1971.Klaus Hentschel - 1996 - Annals of Science 53 (3):269-295.
    The paper presents and discusses measurements of gravitational redshift made between 1959 and 1971 by Pound and Rebka, Schiffer and Marshall, Brault, Blamont and Roddier, and finally by Snider. It emphasizes the importance of new measurement techniques such as wavelength modulation, electronic amplification, and scattering of atomic beams to the emergence of new tests of Einstein's GRS prediction, which were perceived by the scientific community as the first ‘clean’ verifications of GRS. In particular, the race to be the first to (...)
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  • An Historical Perspective on Instruments and Experiments in Science Education.Peter Heering & Roland Wittje - 2012 - Science & Education 21 (2):151-155.
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  • Retelling Experiments: H. B. D. Kettlewell’s Studies of Industrial Melanism in Peppered Moths. [REVIEW]Joel B. Hagen - 1999 - Biology and Philosophy 14 (1):39-54.
    H. B. D. Kettlewell's field experiments on industrial melanism in the peppered moth, Biston betularia, have become the best known demonstration of natural selection in action. I argue that textbook accounts routinely portray this research as an example of controlled experimentation, even though this is historically misleading. I examine how idealized accounts of Kettlewell's research have been used by professional biologists and biology teachers. I also respond to some criticisms of David Rudge to my earlier discussions of this case study, (...)
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  • Theory and observation: The experimental nexus.David Gooding - 1990 - International Studies in the Philosophy of Science 4 (2):131 – 148.
    Abstract Philosophical discussions of experiment usually focus exclusively on testing predictions. In this paper I compare G. Morpurgo's experimental test of the Gell?Mann/ Zweig quark hypothesis with two neglected uses of experiment: constructing representations of new phenomena and inventing the instruments that produce such phenomena. These roles are illustrated by J. B. Biot's 1821 observations of electromagnetism and by Michael Faraday's invention of the first electromagnetic motor, also in 1821. The comparison identifies similarities between observation and experiment, showing how both (...)
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  • Imaginary science. [REVIEW]David Gooding - 1994 - British Journal for the Philosophy of Science 45 (4):1029-1045.
  • History, Philosophy, and the Central Metaphor.Peter Galison - 1988 - Science in Context 2 (1):197-212.
    The ArgumentBehind the dispute over the relative priority of theory and experiment lie conflicting philosophical images of the nature of scientific inquiry. One crucial image arose in the 1920s, when the logical positivists agitated for a “unity of science” that would ground all meaningful scientific activity on an observational foundation. Their goals and rhetoric dovetailed with the larger movements of architectural, literary, and philosophical modernism. Historians of science followed the positivists by tracking experimental science as the basis for scientific progress. (...)
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  • Experimental questions.Allan Franklin - 1993 - Perspectives on Science 1 (1):127-46.
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  • Technology and the civil epistemology of democracy.Yaron Ezrahi - 1992 - Inquiry: An Interdisciplinary Journal of Philosophy 35 (3-4):363 – 376.
    In analogy with Rousseau's concept of ?civil religion? as a system of ?positive dogmas?, ?without which?, as he observed, ?a man cannot be a good citizen?, this paper advances the concept of ?civil epistemology? as the positive dogmas without which the agents of government actions cannot be held accountable by democratic citizens. The civil epistemology of democracy shapes the citizen's views on the nature of political reality, on how the facts of political reality can be known and by whom. Modern (...)
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  • Introduction: Demarcation Socialized: Constructing Boundaries and Recognizing Difference.Robert Evans - 2005 - Science, Technology, and Human Values 30 (1):3-16.
    Given what we know about the nature of knowledge and scientific work it no longer makes sense to think of scientific knowledge as demarcated from “ordinary” knowledge through its methods or the characteristics of the scientific community. As the social studies of science have shown, boundaries become ambiguous when viewed close up so that science merges with ordinary knowledge. But does this mean that distinctions between knowledge claims rest on nothing more than social conventions, powerful as these might be? The (...)
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  • Death and Furniture: the rhetoric, politics and theology of bottom line arguments against relativism.Derek Edwards, Malcolm Ashmore & Jonathan Potter - 1995 - History of the Human Sciences 8 (2):25-49.
    ’Death’ and ’Furniture’ are emblems for two very common (predictable, even) objections to relativism. When relativists talk about the social construction of reality, truth, cognition, scientific knowledge, technical capacity, social structure and so on, their realist opponents sooner or later start hitting the furniture, invoking the Holocaust, talking about rocks, guns, killings, human misery, tables and chairs. The force of these objections is to introduce a bottom line, a bedrock of reality that places limits on what may be treated as (...)
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  • Death and Furniture: the rhetoric, politics and theology of bottom line arguments against relativism.Derek Edwards, Malcolm Ashmore & Jonathan Potter - 1995 - History of the Human Sciences 8 (2):25-49.
  • Socializing naturalized philosophy of science.Stephen M. Downes - 1993 - Philosophy of Science 60 (3):452-468.
    I propose an approach to naturalized philosophy of science that takes the social nature of scientific practice seriously. I criticize several prominent naturalistic approaches for adopting "cognitive individualism", which limits the study of science to an examination of the internal psychological mechanisms of scientists. I argue that this limits the explanatory capacity of these approaches. I then propose a three-level model of the social nature of scientific practice, and use the model to defend the claim that scientific knowledge is socially (...)
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  • Introduction: Humans, Animals, and Machines.H. M. Collins & Michael Lynch - 1998 - Science, Technology and Human Values 23 (4):371-383.
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  • Why Do Scientists Have Disagreements about Experiment?: Incommensurability in the Use of Goal-Derived Categories.Xiang Chen - 1994 - Perspectives on Science 2 (3):275-301.
    In this article I explain why scientists cannot always resolve their disagreements about experiments even if they do not hold conflicting theoretical assumptions, and how incommensurability in experiments can occur even if experiments are not deeply encumbered by theoretical assumptions. On the basis of recent discoveries in cognitive psychology and an extended analysis of a historical case, I explore a cognitive mechanism that may generate incommensurability in experiment appraisal. I find that, because of the involvement of goal-derived categories, incommensurability in (...)
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  • Minding Matter/Mattering Mind: Knowledge and the Subject in Nineteenth-Century Psychology.John Carson - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (3):345-376.
  • Minding matter/mattering mind: Knowledge and the subject in nineteenth-century psychology.John Carson - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (3):345-376.
  • Minding Matter/Mattering Mind: Knowledge and the Subject in Nineteenth-Century Psychology.John Carson - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (3):345-376.
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  • Replication or Monopoly? The Economies of Invention and Discovery in Galileo's Observations of 1610.Mario Biagioli - 2000 - Science in Context 13 (3-4):547-590.
    The ArgumentI propose a revisionist account of the production and reception of Galileo's telescopic observations of 1609–10, an account that focuses on the relationship between credit and disclosure. Galileo, I argue, acted as though the corroboration of his observations were easy, not difficult. His primary worry was not that some people might reject his claims, but rather that those able to replicate them could too easily proceed to make further discoveries on their own and deprive him of credit. Consequently, he (...)
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  • Replication or Monopoly? The Economies of Invention and Discovery in Galileo's Observations of 1610.Mario Biagioli - 2001 - Science in Context 14 (s1):277-320.
    i propose a revisionist account of the production and reception of galileo's telescopic observations of 1609–10, an account that focuses on the relationship between credit and disclosure. galileo, i argue, acted as though the corroboration of his observations were easy, not difficult. his primary worry was not that some people might reject his claims, but rather that those able to replicate them could too easily proceed to make further discoveries on their own and deprive him of credit. consequently, he tried (...)
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  • The resisted rise of randomisation in experimental design: British agricultural science, c.1910–1930.Dominic Berry - 2015 - History and Philosophy of the Life Sciences 37 (3):242-260.
    The most conspicuous form of agricultural experiment is the field trial, and within the history of such trials, the arrival of the randomised control trial is considered revolutionary. Originating with R.A. Fisher within British agricultural science in the 1920s and 30s, the RCT has since become one of the most prodigiously used experimental techniques throughout the natural and social sciences. Philosophers of science have already scrutinised the epistemological uniqueness of RCTs, undermining their status as the ‘gold standard’ in experimental design. (...)
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  • Social Epistemology, scientific practice and the elusive social.Brian S. Baigrie - 1994 - Argumentation 8 (2):125-144.
    Social Epistemology, as formulated by Steve Fuller, is based on the suggestion that rational knowledge policy must be held accountable to ‘brute facts’ about the nature of our human cognitive pursuits, whatever these may be. One difficulty for Fuller concerns the conception of the social which underwrites social epistemology. I argue that social epistemology conflates the social with human psychological properties that are available for public scrutiny and, accordingly, that social epistemology is best viewed as a brand of psychologism. Though (...)
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  • Encapsulating knowledge: The direct reading spectrometer. [REVIEW]Davis Baird - 2000 - Foundations of Chemistry 2 (1):5-46.
    The direct reading emission spectrometer was developed during the1940s. By substituting photo-multiplier tubes and electronics forphotographic film spectrograms, the interpretation of special lineswith a densitometer was avoided. Instead, the instrument providedthe desired information concerning percentage concentration ofelements of interest directly on a dial. Such instruments `de-skill' the job of making such measurements. They do this by encapsulatingin the instrument the skills previously employed by the analyst,by `skilling' the instrument. This paper presents a history of thedevelopment of the Dow Chemical/Baird Associates (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • Historical-Investigative Approaches in Science Teaching.Peter Heering & Dietmar Höttecke - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1473-1502.
    This chapter presents the historical-investigative approach used in science teaching. Both history and philosophy of science have come to a sophisticated understanding of the role that experiments play in the generation and establishment of scientific knowledge. This recent development, called the “experimental turn,” is discussed first. Next, this chapter analyzes how practical work has been discussed among science educators in recent decades. Based on such a broad perspective, the historical-investigative approach is linked to recent advancements in history and philosophy of (...)
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