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How Experiments End

Synthese 82 (1):157-162 (1990)

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  1. Mathematical engineering and mathematical change.Jean-Pierre Marquis - 1999 - International Studies in the Philosophy of Science 13 (3):245 – 259.
    In this paper, I introduce and examine the notion of “mathematical engineering” and its impact on mathematical change. Mathematical engineering is an important part of contemporary mathematics and it roughly consists of the “construction” and development of various machines, probes and instruments used in numerous mathematical fields. As an example of such constructions, I briefly present the basic steps and properties of homology theory. I then try to show that this aspect of contemporary mathematics has important consequences on our conception (...)
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  • Horizon for Scientific Practice: Scientific Discovery and Progress.James A. Marcum - 2010 - International Studies in the Philosophy of Science 24 (2):187-215.
    In this article, I introduce the notion of horizon for scientific practice (HSP), representing limits or boundaries within which scientists ply their trade, to facilitate analysis of scientific discovery and progress. The notion includes not only constraints that delimit scientific practice, e.g. of bringing experimentation to a temporary conclusion, but also possibilities that open up scientific practice to additional scientific discovery and to further scientific progress. Importantly, it represents scientific practice as a dynamic and developmental integration of activities to investigate (...)
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  • Observation Versus Experiment: An Adequate Framework for Analysing Scientific Experimentation?Saira Malik - 2017 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 48 (1):71-95.
    Observation and experiment as categories for analysing scientific practice have a long pedigree in writings on science. There has, however, been little attempt to delineate observation and experiment with respect to analysing scientific practice; in particular, scientific experimentation, in a systematic manner. Someone who has presented a systematic account of observation and experiment as categories for analysing scientific experimentation is Ian Hacking. In this paper, I present a detailed analysis of Hacking’s observation versus experiment account. Using a range of cases (...)
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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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  • Why experiments matter.Arnon Levy & Adrian Currie - 2019 - Inquiry: An Interdisciplinary Journal of Philosophy 62 (9-10):1066-1090.
    ABSTRACTExperimentation is traditionally considered a privileged means of confirmation. However, why and how experiments form a better confirmatory source relative to other strategies is unclear, and recent discussions have identified experiments with various modeling strategies on the one hand, and with ‘natural’ experiments on the other hand. We argue that experiments aiming to test theories are best understood as controlled investigations of specimens. ‘Control’ involves repeated, fine-grained causal manipulation of focal properties. This capacity generates rich knowledge of the object investigated. (...)
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  • Apparatus and Experimentation Revisited.Trevor H. Levere - 2010 - Spontaneous Generations 4 (1):148-154.
    Those with knowledge about scientific instruments come from many different fields. Prominent among them are (1) collectors and dealers, (2) curators, (3) historians, (4) instrument makers, (5) philosophers, and (6) scientists (the order is alphabetical, not value-laden). The annual symposium of the Scientific Instrument Commission often brings members of each of these groups together, and they learn from one another. What follows are brief reflections on the activities of each group when its members consider instruments.
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  • Can mechanisms really replace laws of nature?Bert Leuridan - 2010 - Philosophy of Science 77 (3):317-340.
    Today, mechanisms and mechanistic explanation are very popular in philosophy of science and are deemed a welcome alternative to laws of nature and deductive‐nomological explanation. Starting from Mitchell's pragmatic notion of laws, I cast doubt on their status as a genuine alternative. I argue that (1) all complex‐systems mechanisms ontologically must rely on stable regularities, while (2) the reverse need not hold. Analogously, (3) models of mechanisms must incorporate pragmatic laws, while (4) such laws themselves need not always refer to (...)
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  • Science as technology.Srdjan Lelas - 1993 - British Journal for the Philosophy of Science 44 (3):423-442.
    It is usually believed that science goes with things like theoria, ‘knowing that’, ontology and representing, and that techne, know-how, technology and intervening are only instrumental to science or its beneficial but nonetheless accidental side effect. In this context to be instrumental means also to be eliminable, or at least transparent, something that leaves no trace. Following the historical development of experimentation, from simple observation to modern microscopic experiments. I try to show how that view loses its ground. To produce (...)
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  • How to think about informal proofs.Brendan Larvor - 2012 - Synthese 187 (2):715-730.
    It is argued in this study that (i) progress in the philosophy of mathematical practice requires a general positive account of informal proof; (ii) the best candidate is to think of informal proofs as arguments that depend on their matter as well as their logical form; (iii) articulating the dependency of informal inferences on their content requires a redefinition of logic as the general study of inferential actions; (iv) it is a decisive advantage of this conception of logic that it (...)
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  • The electrical universe: Grand cosmological theory versus mundane experiments.Helge Kragh - 1997 - Perspectives on Science 5 (2):199-231.
    This article examines in detail a remarkable but short-lived cosmological theory of 1959. The theory depended crucially on a hypothesis that could be, and was, tested in the laboratory. I use the case to discuss the nature of testing in cosmology and to argue against ideas about astronomy suggested by Ian Hacking. The case of the electrical universe exemplifies how disagreements can be settled by good experiments and also how experiments of wide-ranging theoretical significance need not be biased by either (...)
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  • A terminological history of early elementary particle physics.Helge Kragh - 2023 - Archive for History of Exact Sciences 77 (1):73-120.
    By 1933, the class of generally accepted elementary particles comprised the electron, the photon, the proton as well as newcomers in the shape of the neutron, the positron, and the neutrino. During the following decade, a new and poorly understood particle, the mesotron or meson, was added to the list. By paying close attention to the names of these and other particles and to the sometimes controversial proposals of names, a novel perspective on this well-researched line of development is offered. (...)
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  • Technology in scientific practice: how H. J. Muller used the fruit fly to investigate the X-ray machine.Svit Komel - 2023 - History and Philosophy of the Life Sciences 45 (2):1-34.
    Since the practice turn, the role technologies play in the production of scientific knowledge has become a prominent topic in science studies. Much existing scholarship, however, either limits technology to merely mechanical instrumentation or uses the term for a wide variety of items. This article argues that technologies in scientific practice can be understood as a result of past scientific knowledge becoming sedimented in materials, like model organisms, synthetic reagents or mechanical instruments, through the routine use of these materials in (...)
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  • The experimenters' regress: from skepticism to argumentation.Benoı̂t Godin & Yves Gingras - 2002 - Studies in History and Philosophy of Science Part A 33 (1):133-148.
    Harry Collins' central argument about experimental practice revolves around the thesis that facts can only be generated by good instruments but good instruments can only be recognized as such if they produce facts. This is what Collins calls the experimenters' regress. For Collins, scientific controversies cannot be closed by the ‘facts’ themselves because there are no formal criteria independent of the outcome of the experiment that scientists can apply to decide whether an experimental apparatus works properly or not.No one seems (...)
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  • Berzelian formulas as paper tools in early nineteenth-century chemistry.Ursula Klein - 2001 - Foundations of Chemistry 3 (1):7-32.
    This paper studies the semiotic,epistemological and historical aspects of Berzelianformulas in early nineteenth-century organicchemistry. I argue that Berzelian formulas wereenormously productive `paper tools' for representingchemical reactions of organic substances, and forcreating different pathways of reactions. Moreover, myanalysis of Jean Dumas's application of Berzelianformulas to model the creation of chloral from alcoholand chlorine exemplifies the role played by chemicalformulas in conceptual development (the concept ofsubstitution). Studying the dialectic of chemists'collectively shared goals and tools, I argue thatpaper tools, like laboratory instruments, areresources (...)
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  • Philosophy without borders, naturally: an interview with Harold Kincaid.Harold Kincaid - 2017 - Erasmus Journal for Philosophy and Economics 10 (1):83-100.
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  • Explanations and candidate explanations in physics.Martin King - 2020 - European Journal for Philosophy of Science 10 (1):1-17.
    There has been a growing trend to include non-causal models in accounts of scientific explanation. A worry addressed in this paper is that without a higher threshold for explanation there are no tools for distinguishing between models that provide genuine explanations and those that provide merely potential explanations. To remedy this, a condition is introduced that extends a veridicality requirement to models that are empirically underdetermined, highly-idealised, or otherwise non-causal. This condition is applied to models of electroweak symmetry breaking beyond (...)
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  • Science Artisans and Open Science Hardware.Denisa Kera - 2017 - Bulletin of Science, Technology and Society 37 (2):97-111.
    Open science hardware (OSH) are prototypes of laboratory instruments that use open source hardware to extend the purely epistemic (improving knowledge about nature) and normative (improving society) ideals of science and emphasize the importance of technology. They remind us of Zilsel’s 1942 thesis about the artisanal origins of science and instrument making that bridged disciplinary and social barriers in the 16th century. The emphasis on making, tinkering, and design transcends research, reproducibility, and corroboration in science and pushes to the forefront (...)
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  • The Strong and Weak Senses of Theory-Ladenness of Experimentation: Theory-Driven versus Exploratory Experiments in the History of High-Energy Particle Physics.Koray Karaca - 2013 - Science in Context 26 (1):93-136.
    ArgumentIn the theory-dominated view of scientific experimentation, all relations of theory and experiment are taken on a par; namely, that experiments are performed solely to ascertain the conclusions of scientific theories. As a result, different aspects of experimentation and of the relations of theory to experiment remain undifferentiated. This in turn fosters a notion of theory-ladenness of experimentation (TLE) that is toocoarse-grainedto accurately describe the relations of theory and experiment in scientific practice. By contrast, in this article, I suggest that (...)
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  • What is a Beautiful Experiment?Milena Ivanova - 2022 - Erkenntnis 88 (8):3419-3437.
    This article starts an engagement on the aesthetics of experiments and offers an account for analysing how aesthetics features in the design, evaluation and reception of experiments. I identify two dimensions of aesthetic evaluation of experiments: design and significance. When it comes to design, a number of qualities, such as simplicity, economy and aptness, are analysed and illustrated with the famous Meselson-Stahl experiment. Beautiful experiments are also regarded to make significant discoveries, but I argue against a narrow construal of experimental (...)
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  • The aesthetics of scientific experiments.Milena Ivanova - 2021 - Philosophy Compass 16 (3):e12730.
    This article explores the aesthetic dimensions of scientific experimentation, addressing specifically how aesthetic features enter the construction, evaluation and reception of an experiment. I highlight the relationship between experiments and artistic acts in the early years of the Royal Society where experiments do not serve only epistemic aims but also aim to generate feelings of awe and pleasure. I turn to analysing which aspects of experiments are appreciated aesthetically, identifying several contenders, from the ability of an experiment to uncover nature’s (...)
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  • Has the philosophy of technology arrived? A state‐of‐the‐art review.Don Ihde - 2004 - Philosophy of Science 71 (1):117-131.
    Using the occasion of the publication of a Blackwell anthology in the philosophy of technology, Philosophy of Technology: The Technological Condition (2003), as a key to the contemporary role of this subdiscipline, this article reviews the current state-of-this-art. Both philosophy of science and philosophy of technology are twentieth century inventions, but each has followed a somewhat different set of philosophical traditions and pursued sometimes divergent questions. Here the primary developments of recent philosophy of technology are examined with emphasis upon issues (...)
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  • Reliability, pragmatic and epistemic.Robert G. Hudson - 1994 - Erkenntnis 40 (1):71 - 86.
    Experimental data are often acclaimed on the grounds that they can be consistently generated. They are, it is said, reproducible. In this paper I describe how this feature of experimental-data (their pragmatic reliability) leads to their epistemic worth (their epistemic reliability). An important part of my description is the supposition that experimental procedures are to certain extent fixed and stable. Various illustrations from the actual practice of science are introduced, the most important coming at the end of the paper with (...)
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  • Rationality as Effective Organisation of Interaction and Its Naturalist Framework.Cliff Hooker - 2011 - Axiomathes 21 (1):99-172.
    The point of this paper is to provide a principled framework for a naturalistic, interactivist-constructivist model of rational capacity and a sketch of the model itself, indicating its merits. Being naturalistic, it takes its orientation from scientific understanding. In particular, it adopts the developing interactivist-constructivist understanding of the functional capacities of biological organisms as a useful naturalistic platform for constructing such higher order capacities as reason and cognition. Further, both the framework and model are marked by the finitude and fallibility (...)
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  • That’s Not Science! The Role of Moral Philosophy in the Science/Non-science Divide.Bjørn Hofmann - 2007 - Theoretical Medicine and Bioethics 28 (3):243-256.
    The science/non-science distinction has become increasingly blurred. This paper investigates whether recent cases of fraud in science can shed light on the distinction. First, it investigates whether there is an absolute distinction between science and non-science with respect to fraud, and in particular with regards to manipulation and fabrication of data. Finding that it is very hard to make such a distinction leads to the second step: scrutinizing whether there is a normative distinction between science and non-science. This is done (...)
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  • Truth does not explain predictive success.Carsten Held - 2011 - Analysis 71 (2):232-234.
    Laudan famously argued that neither truth nor approximate truth can be part of an explanation of a scientific theory's predictive success because in the history of science there were theories that enjoyed some limited success but now are considered outright false. The power of his argument lay in the many historic examples he listed . Realists have disputed that all theories on Laudan's list can be regarded as predictively successful but let's suppose momentarily that at least some exist that support (...)
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  • Quantum mechanics and the social sciences: After hermeneutics.Patrick A. Heelan - 1995 - Science & Education 4 (2):127-136.
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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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  • Neuroscience and the Art of Single Cell Recordings.Valerie Gray Hardcastle & C. Matthew Stewart - 2003 - Biology and Philosophy 18 (1):195-208.
    This article examines how scientists move from physical measurementsto actual observation of single-cell recordings in the brain. We highlight how easy it is to change the fundamental nature of ourobservations using accepted methodological techniques for manipulatingraw data. Collecting single-cell data is thoroughly pragmatic. Weconclude that there is no deep or interesting difference betweenaccounting for observations by measurements and accounting forobservations by theories.
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  • Farmers’ experiments and scientific methodology.Sven Ove Hansson - 2019 - European Journal for Philosophy of Science 9 (3):1-23.
    Farmers all over the world perform experiments, and have done so since long before modern experimental science and its recognized forerunners. There is a rich anthropological literature on these experiments, but the philosophical issues that they give rise to have not received much attention. Based on the anthropological literature, this study investigates methodological and philosophical issues pertaining to farmers’ experiments, including the choice of interventions to be tested, the planning of experiments, and the use of control fields and other means (...)
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  • Squaring the Circle: Gleb Wataghin and the Prehistory of Quantum Gravity.Amit Hagar - 2014 - Studies in the History and the Philosophy of Modern Physics 46 (2):217-227.
    The early history of the attempts to unify quantum theory with the general theory of relativity is depicted through the work of the under--appreciated Italo-Brazilian physicist Gleb Wataghin, who is responsible for many of the ideas that the quantum gravity community is entertaining today.
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  • The Evidence for the accelerating universe: endorsement and robust consistency.Genco Guralp - 2020 - European Journal for Philosophy of Science 10 (2):1-52.
    The 2011 Nobel Prize in Physics was awarded to researchers from the Supernova Cosmology Project and the High-z Supernova Search Team for the discovery of the accelerating expansion of the universe. In this paper, I provide a historical analysis of the supernova cosmology evidence put forward by these teams for the accelerating universe, in terms of an iterative model of scientific progress developed by Hasok Chang in the context of his study of the development of measurement standards. I argue, using (...)
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  • History, Philosophy, and Science in a Social Perspective: A Pedagogical Project.Andreia Guerra, Marco Braga & José Claudio Reis - 2013 - Science & Education 22 (6):1485-1503.
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  • Epistemological Issues Concerning Computer Simulations in Science and Their Implications for Science Education.Ileana M. Greca, Eugenia Seoane & Irene Arriassecq - 2014 - Science & Education 23 (4):897-921.
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  • Imaginary science. [REVIEW]David Gooding - 1994 - British Journal for the Philosophy of Science 45 (4):1029-1045.
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  • Turbulent Reactions: Impact of New Instrumentation on a Borderland Scientific Domain.Iskender Gökalp - 1990 - Science, Technology and Human Values 15 (3):284-304.
    This article addresses the problem of the impact of a major change in the "instrumentation space" of a given scientific domain. The domain under scrutiny is turbulent combustion. It has the peculcarcty of being developed, essentially since the 1940s, by the progressive interpenetration of two autonomous fields, the chemistry of combustion and the mechanics of turbulence. The analyzed change in instrumentation is a major one in that the new laser-based optical diagnostic techniques which, since the 1970s, invaded turbulent combustcon, allowed (...)
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  • From tools to theories: A heuristic of discovery in cognitive psychology.Gerd Gigerenzer - 1991 - Psychological Review 98 (2):254-267.
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  • Author's response: David gooding: The tacit, the visual, and the simulated.Peter Galison - 1999 - Metascience 8 (3):393-404.
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  • The social epistemologist in search of a position from which to argue.Steve Fuller - 1994 - Argumentation 8 (2):163-183.
    The relevance of Fuller's version of social epistemology to argumentation theory is highlighted, in response to critics who claim that I am not sufficiently critical of the social grounds of knowledge production. Responding to Lyne, I first consider the strengths and weaknesses of relying on economic images to capture the social. Then, I tackle two contrary objections: Brian Baigrie claims social epistemology is “not social enough,” while Angelo Corlett wonders whether it may be “too social.” Finally, I counter Malcolm Ashmore, (...)
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  • The Theory-Ladenness of Experiment.Allan Franklin - 2015 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 46 (1):155-166.
    Theory-ladenness is the view that observation cannot function in an unbiased way in the testing of theories because observational judgments are affected by the theoretical beliefs of the observer. Its more radical cousin, incommensurability, argues that because there is no theory-neutral language, paradigms, or worldviews, cannot be compared because in different paradigms the meaning of observational terms is different, even when the word used is the same. There are both philosophical and practical components to these problems. I argue, using a (...)
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  • Data objects for knowing.Fred Fonseca - 2022 - AI and Society 37 (1):195-204.
    Although true in some aspects, the suggested characterization of today’s science as a dichotomy between traditional science and data-driven science misses some of the nuance, complexity, and possibility that exists between the two positions. Part of the problem is the claim that Data Science works without theories. There are many theories behind the data that are used in science. However, for data science, the only theories that matter are those in mathematics, statistics, and computer science. In this conceptual paper, we (...)
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  • Pragmatic Unification, Observation and Realism in Astroparticle Physics.Brigitte Falkenburg - 2012 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 43 (2):327-345.
    Astroparticle physics is a recent sub-discipline of physics that emerged from early cosmic ray studies, astrophysics, and particle physics. Its theoretical foundations range from quantum field theory to general relativity, but the underlying “standard models” of cosmology and particle physics are far from being unified. The paper explores the pragmatic strategies employed in astroparticle physics in order to unify a disunified research field, the concept of observation involved in these strategies, and their relations to scientific realism.
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  • Edgar Wind on Experiment and Metaphysics.Brigitte Falkenburg - 2021 - Journal of Transcendental Philosophy 2 (1):21-45.
    The paper presents a detailed interpretation of Edgar Wind’s Experiment and Metaphysics, a unique work on the philosophy of physics which broke with the Neo-Kantian tradition under the influence of American pragmatism. Taking up Cassirer’s interpretation of physics, Wind develops a holistic theory of the experiment and a constructivist account of empirical facts. Based on the concept of embodiment which plays a key role in Wind’s later writings on art history, he argues, however, that the outcomes of measurements are contingent. (...)
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  • Social experiments in stem cell biology.Melinda B. Fagan - 2011 - Perspectives on Science 19 (3):235-262.
    Stem cell biology is driven by experiment. Its major achievements are striking experimental productions: "immortal" human cell lines from spare embryos (Thomson et al. 1998); embryo-like cells from "reprogrammed" adult skin cells (Takahashi and Yamanaka 2006); muscle, blood and nerve tissue generated from stem cells in culture (Lanza et al. 2009, and references therein). Well-confirmed theories are not so prominent, though stem cell biologists do propose and test hypotheses at a profligate rate. 1 This paper aims to characterize the role (...)
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  • Interactive Vision and Experimental Traditions: How to Frame the Relationship.Anna Estany - 2013 - Open Journal of Philosophy 3 (2):292-301.
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  • Reconstructing Iconic Experiments in Electrochemistry: Experiences from a History of Science Course.Per-Odd Eggen, Lise Kvittingen, Annette Lykknes & Roland Wittje - 2012 - Science & Education 21 (2):179-189.
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  • Testing universal gravitation in the laboratory, or the significance of research on the mean density of the earth and big G, 1798–1898: changing pursuits and long-term methodological–experimental continuity. [REVIEW]Steffen Ducheyne - 2011 - Archive for History of Exact Sciences 65 (2):181-227.
    This article seeks to provide a historically well-informed analysis of an important post-Newtonian area of research in experimental physics between 1798 and 1898, namely the determination of the mean density of the earth and, by the end of the nineteenth century, the gravitational constant. Traditionally, research on these matters is seen as a case of “puzzle solving.” In this article, the author shows that such focus does not do justice to the evidential significance of eighteenth- and nineteenth-century experimental research on (...)
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  • The Cavendish Experiment as a Tool for Historical Understanding of Science.Steffen Ducheyne - 2012 - Science & Education 21 (1):87-108.
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  • 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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  • Is the Contingentist/Inevitabilist Debate a Matter of Degrees?Joseph D. Martin - 2013 - Philosophy of Science 80 (5):919-930.
    The contingentist/inevitabilist debate contests whether the results of successful science are contingent or inevitable. This article addresses lingering ambiguity in the way contingency is defined in this debate. I argue that contingency in science can be understood as a collection of distinct concepts, distinguished by how they hold science contingent, by what elements of science they hold contingent, and by what those elements are contingent upon. I present a preliminary taxonomy designed to characterize the full-range positions available and illustrate that (...)
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  • Computer-supported resolution of measurement conflicts: A case-study in materials science. [REVIEW]Hidde de Jong, Nicolaas Mars & Paul van der Vet - 1999 - Foundations of Science 4 (4):427-461.
    Resolving conflicts between different measurements ofa property of a physical system may be a key step in a discoveryprocess. With the emergence of large-scale databases and knowledgebases with property measurements, computer support for the task ofconflict resolution has become highly desirable. We will describe amethod for model-based conflict resolution and the accompanyingcomputer tool KIMA, which have been applied in a case-study inmaterials science. In order to be a useful aid to scientists, the toolneeds to be integrated with other tools in (...)
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