Results for ' Scientific Illustration'

963 found
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  1.  32
    Visualizing the World. Epistemic Strategies in the History of Scientific Illustrations.Victoria Höög - 2012 - Ideas in History. The Journal of the Nordic Society of the History of Ideas 5:2010-2011.
    The history of scientific illustrations is a story that correspond the cultural, economic, political and scientific history of the world. A look into the history of sciences displays that pictures and illustrations had a decisive role for the sciences progressive success and rising societal status from the sixteenth century. The illustrations visualized the unknown to graspable facts. Without the pictures the new discovered continents, the blood circulatory system and the body’s muscles had remained theoretical proclamations. The scientific (...)
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  2.  60
    DSI: The Stuttgart Database of Scientific Illustrators 1450–1950.Klaus Hentschel - 2012 - Spontaneous Generations 6 (1):182-191.
    The main features of a new online database of scientific illustrators are portrayed. We list illustrators of scientific publications of all genres (especially atlases, articles, textbooks) who were active between 1450 and 1950, thus excluding illuminators of medieval manuscripts as well as illustrators still active. Currently (Sept. 26, 2012), we already have more than 3,461 entries, with particular emphasis on anatomy, dermatology, botany, zoology, mineralogy, astronomy, and general natural history. Access to the database with its 20 search fields (...)
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  3.  48
    Making Expert Knowledge through the Image: Connections between Antiquarian and Early Modern Scientific Illustration.Stephanie Moser - 2014 - Isis 105 (1):58-99.
    ABSTRACT This essay examines drawings of antiquities in the context of the history of early modern scientific illustration. The role of illustrations in the establishment of archaeology as a discipline is assessed, and the emergence of a graphic style for representing artifacts is shown to be closely connected to the development of scientific illustration in the seventeenth and early eighteenth centuries. The essay argues that the production of conventionalized drawings of antiquities during this period represents a (...)
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  4.  20
    Michael Sappol. Body Modern: Fritz Kahn, Scientific Illustration, and the Homuncular Subject. xv + 247 pp., figs., illus., index. Minneapolis/London: University of Minnesota Press, 2017. $30. [REVIEW]Cornelius Borck - 2018 - Isis 109 (2):428-429.
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  5. Essay review: The history of scientific illustration.Charlotte M. Porter - 1995 - Journal of the History of Biology 28 (3):545-550.
  6.  19
    Illustrating natural history: images, periodicals, and the making of nineteenth-century scientific communities.Geoffrey Belknap - 2018 - British Journal for the History of Science 51 (3):395-422.
    This paper examines how communities of naturalists in mid-nineteenth-century Britain were formed and solidified around the shared practices of public meetings, the publication and reading of periodicals, and the making and printing of images. By focusing on communities of naturalists and the sites of their communication, this article undermines the distinction between amateur and professional scientific practice. Building on the notion of imagined communities, this paper also shows that in some cases the editors and illustrators utilized imagery to construct (...)
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  7.  15
    Social-scientific criticism: Perspective, process and payoff. Evil eye accusation at Galatia as illustration of the method.John H. Elliott - 2011 - HTS Theological Studies 67 (1).
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  8.  60
    An illustrated heuristic prototype facilitates scientific inventive problem solving: A functional magnetic resonance imaging study.Dandan Tong, Wenfu Li, Chaoying Tang, Wenjing Yang, Yan Tian, Lei Zhang, Meng Zhang, Jiang Qiu, Yijun Liu & Qinglin Zhang - 2015 - Consciousness and Cognition 34:43-51.
  9.  19
    Illustrated Explanation of the Visual Communication of Frontier Scientific Results.Guo-Yan Wang & Shu-Kun Tang - 2013 - Science and Society 3:014.
  10. The Newtonian revolution: with illustrations of the transformation of scientific ideas.I. Bernard Cohen - 1980 - New York: Cambridge University Press.
     
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  11. The didactic, persuasive and scientific uses of illustrations after Descartes.Andrea Strazzoni - 2015 - Noctua 2 (1-2):432-480.
    The aim of this article is to unveil the ways of teaching new philosophical paradigms in Dutch Universities between Seventeenth and Eighteenth Century, by means of an analysis of the uses of illustrations in Cartesian and Newtonian natural-philosophical textbooks. This analysis allows to understand the overall functions of philosophical textbooks, where illustrations act as conceptual means, filling the gap between the premise of a theory and its actual contents; didactic means, aiming to help the reader in understanding scientific models (...)
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  12.  3
    Illustrations of the Methods of Reasoning: A Source Book in Logic and Scientific Method.Daniel Sommer Robinson - 1931 - D. Appleton and Company.
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  13.  6
    The Growth of Scientific Physiology: Physiological Method and the Mechanist-vitalist Controversy, Illustrated by the Problems of Respiration and Animal Heat.June Goodfield & Nuffield Foundation - 1960 - Hutchinson of London.
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  14.  39
    Science in the Making: Scientific Development as Chronicled by the Historic Papers in the Philosophical Magazine, with Commentaries and Illustrations. Volume 1: 1798-1850. E. A. Davis. [REVIEW]L. Williams - 1996 - Isis 87 (4):736-737.
  15. The Growth of Scientific Physiology Physiological Method and the Mechanist-Vitalist Controversy, Illustrated by the Problems of Respiration and Animal Heat.G. J. Goodfield - 1975
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  16. On Understanding: Maxwell on the Methods of Illustration and Scientific Metaphor.Jordi Cat - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (3):395-441.
    In this paper I examine the notion and role of metaphors and illustrations in Maxwell's works in exact science as a pathway into a broader and richer philosophical conception of a scientist and scientific practice. While some of these notions and methods are still at work in current scientific research-from economics and biology to quantum computation and quantum field theory-, here I have chosen to attest to their entrenchment and complexity in actual science by attempting to make some (...)
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  17.  34
    Brass and Glass: Scientific Instrument Making Workshops in Scotland as Illustrated by Instruments from the Arthur Frank Collection at the Royal Museum of ScotlandT. N. Clarke A. D. Morrison-Low A. D. C. Simpson. [REVIEW]Carlene Stephens - 1991 - Isis 82 (3):612-613.
  18.  43
    Science in the Making: Scientific Development as Chronicled by Historic Papers in the Philosophical Magazine: With Commentaries and Illustrations. Volume 2: 1851-1900. E. A. Davis. [REVIEW]L. Williams - 1999 - Isis 90 (4):817-817.
  19.  76
    Scientific Testimony. Its roles in science and society.Mikkel Gerken - 2022 - Oxford, UK: Oxford University Press.
    Scientific Testimony concerns the roles of scientific testimony in science and society. The book develops a positive alternative to a tradition famously expressed by the slogan of the Royal Society Nullius in verba ("Take nobody's word for it"). This book argues that intra-scientific testimony—i.e., testimony between collaborating scientists—is not in conflict with the spirit of science or an add-on to scientific practice. On the contrary, intra-scientific testimony is a vital part of science. This is illustrated (...)
  20. Understanding Scientific Progress: Aim-Oriented Empiricism.Nicholas Maxwell - 2017 - St. Paul, USA: Paragon House.
    "Understanding Scientific Progress constitutes a potentially enormous and revolutionary advancement in philosophy of science. It deserves to be read and studied by everyone with any interest in or connection with physics or the theory of science. Maxwell cites the work of Hume, Kant, J.S. Mill, Ludwig Bolzmann, Pierre Duhem, Einstein, Henri Poincaré, C.S. Peirce, Whitehead, Russell, Carnap, A.J. Ayer, Karl Popper, Thomas Kuhn, Imre Lakatos, Paul Feyerabend, Nelson Goodman, Bas van Fraassen, and numerous others. He lauds Popper for advancing (...)
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  21.  38
    The graphic strategy: the uses and functions of illustrations in Wundt’s Grundzüge.Douwe Draaisma & Sarah De Rijcke - 2001 - History of the Human Sciences 14 (1):1-24.
    Illustrations played an important role in the articulation of Wundt’s experimental program. Focusing on the woodcuts of apparatus and experimental designs in the six editions of his Grundzüge der physiologischen Psychologie (published between 1873 and 1911), we investigate the uses and functions of illustrations in the experimental culture of the physiological and psychological sciences. We will first present some statistics on the increasing number of illustrations Wundt included in each new edition of his handbook. Next we will show how Wundt (...)
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  22. How scientific models can explain.Alisa Bokulich - 2011 - Synthese 180 (1):33 - 45.
    Scientific models invariably involve some degree of idealization, abstraction, or nationalization of their target system. Nonetheless, I argue that there are circumstances under which such false models can offer genuine scientific explanations. After reviewing three different proposals in the literature for how models can explain, I shall introduce a more general account of what I call model explanations, which specify the conditions under which models can be counted as explanatory. I shall illustrate this new framework by applying it (...)
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  23.  33
    The Newtonian Revolution: With Illustrations of the Transformation of Scientific IdeasI. Bernard Cohen.Margaret Osler - 1983 - Isis 74 (3):446-447.
  24. Scientific progress without increasing verisimilitude: In response to Niiniluoto.Darrell Patrick Rowbottom - 2015 - Studies in History and Philosophy of Science Part A 51:100-104.
    First, I argue that scientific progress is possible in the absence of increasing verisimilitude in science’s theories. Second, I argue that increasing theoretical verisimilitude is not the central, or primary, dimension of scientific progress. Third, I defend my previous argument that unjustified changes in scientific belief may be progressive. Fourth, I illustrate how false beliefs can promote scientific progress in ways that cannot be explicated by appeal to verisimilitude.
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  25.  61
    Using Illustrative Case Studies: A Case in Teaching Climate Ethics.Evelyn Brister - 2014 - Teaching Ethics 14 (2):17-34.
    There are benefits to organizing an introductory ethics course around the ethical, social, and political questions related to climate change. One topic such a course may fruitfully explore is the issue of whether, when, and how climate scientists should advocate for climate policy. When is scientific advocacy a failure of scientific objectivity, and what are the ethical consequences of scientists attempting to influence policy objectives? This paper lays out a method for using illustrative case studies that helps students (...)
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  26.  37
    Ioannis Scylitzae Synopsis Historiarum. Кώδιϰας Vitr. 26–2 της Έθνιϰης Вιβλιοθήϰης της Мαδϱίτης (Πανομοιότυπη εϰδοση). Codex Matritensis graecus Vitr. 26–2 (Facsimile edition). Еπιστημονιϰη επμέλεια Άγαμέμνων Тσελίϰας/Scientific consultant Agamemnon Tselikas. Athen, Мίλητος 2000. Facsimile-Band der Handschrift mit begleitendem Beiband (254 S. ) – Vasiliki Tsamakda, The illustrated chronicle of Ioannes Skylitzes in Madrid. [REVIEW]Peter Schreiner - 2005 - Byzantinische Zeitschrift 97 (1):256-260.
    Der einzige aus Byzanz erhaltene (fast) vollständig illustrierte Historikertext ist nun endlich durch eine Facsimile-Ausgabe in Originalgröße der Forschung zugänglich, während das Original leider für immer dem Tresor anvertraut wurde. So war es dem Rezensenten auch nicht möglich, die farbliche Qualität der Ausgabe mit dem Original zu vergleichen. Auf diese Weise stehen nun auch alle Textteile und die verschiedenen Randscholien (die in der Ausgabe von Thurn nicht vermerkt sind) der paläographischen und kodikologischen Forschung zur Verfügung. Ein Rückgriff auf die Illustrationen (...)
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  27.  42
    Scientific Knowledge and Sociological Theory.Barry Barnes - 1974 - Routledge.
    Originally published in 1974. Scientific Knowledge and Sociological Theory centres on the problem of explaining the manifest variety and contrast in the beliefs about nature held in different groups and societies. It maintains that the sociologist should treat all beliefs symmetrically and must investigate and account for allegedly "correct" or "scientific" beliefs just as he would "incorrect" or "unscientific" ones. From this basic position a study of scientific beliefs is constructed. The sociological interest of such beliefs is (...)
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  28. 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 (...)
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  29.  34
    Scientific Realism and the Hierarchical Counterfactual Path from Data to Theory.Ronald Laymon - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:107 - 121.
    Using the Schwarzschild calculation of the Relativistic bending of starlight near the sun as an illustration, it is shown that the relationship between theory and data requires a hierarchy of structures of different logical type. An essential feature of this hierarchy is the use of idealizations and approximate truths. On the basis of a counterfactual analysis of these concepts, it is shown that confirmation is possible even though statistical measures of goodness of fit are not satisfied. The consequences of (...)
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  30.  90
    Scientific/Intellectual Movements Remedying Epistemic Injustice: The Case of Indigenous Studies.Inkeri Koskinen & Kristina Rolin - 2019 - Philosophy of Science 86 (5):1052-1063.
    Whereas much of the literature in the social epistemology of scientific knowledge has focused either on scientific communities or research groups, we examine the epistemic significance of scientific/intellectual movements (SIMs). We argue that certain types of SIMs can play an important epistemic role in science: they can remedy epistemic injus- tices in scientific practices. SIMs can counteract epistemic injustices effectively because many forms of epistemic injustice require structural and not merely individual remedies. To illustrate our argument, (...)
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  31. Scientific Explanation.Erik Weber, Jeroen Van Bouwel & Leen De Vreese - 2013 - Springer.
    When scientist investigate why things happen, they aim at giving an explanation. But what does a scientific explanation look like? In the first chapter (Theories of Scientific Explanation) of this book, the milestones in the debate on how to characterize scientific explanations are exposed. The second chapter (How to Study Scientific Explanation?) scrutinizes the working-method of three important philosophers of explanation, Carl Hempel, Philip Kitcher and Wesley Salmon and shows what went wrong. Next, it is the (...)
  32. Resisting Scientific Realism.K. Brad Wray - 2018 - Cambridge: Cambridge University Press.
    In this book K. Brad Wray provides a comprehensive survey of the arguments against scientific realism. In addition to presenting logical considerations that undermine the realists' inferences to the likely truth or approximate truth of our theories, he provides a thorough assessment of the evidence from the history of science. He also examines grounds for a defence of anti-realism, including an anti-realist explanation for the success of our current theories, an account of why false theories can be empirically successful, (...)
     
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  33.  39
    The Challenge of Colour: Eighteenth-Century Botanists and the Hand-Colouring of Illustrations.Kärin Nickelsen - 2006 - Annals of Science 63 (1):3-23.
    Summary Colourful plant images are often taken as the icon of natural history illustration. However, so far, little attention has been paid to the question of how this beautiful colouring was achieved. At a case study of the eighteenth-century Nuremberg doctor and botanist, Christoph Jacob Trew, the process of how illustrations were hand-coloured, who was involved in this work, and how the colouring was supervised and evaluated is reconstructed, mostly based on Trew's correspondence with the engraver and publisher of (...)
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  34. Axiological Scientific Realism and Methodological Prescription.Timothy D. Lyons - 2011 - In Henk W. De Regt, Stephan Hartmann & Samir Okasha, EPSA Philosophy of Science: Amsterdam 2009. Springer. pp. 187--197.
    In this paper I distinguish between two kinds of meta-hypotheses, or hypotheses about science, at issue in the scientific realism debate. The first are descriptive empirical hypotheses regarding the nature of scientific inquiry. The second are epistemological theories about what individuals should / can justifiably believe about scientific theories. Favoring the realist Type-D meta-hypotheses, I argue that a particular set of realist and non-realist efforts in the debate over Type-E’s have been valuable in the quest to describe (...)
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  35.  63
    The life cycle of scientific principles—a template for characterizing physical principles.Radin Dardashti, Enno Fischer & Robert Harlander - 2025 - Synthese 205 (122).
    Scientific principles can undergo various developments. While philosophers of science have acknowledged that such changes occur, there is no systematic account of the development of scientific principles. Here we propose a template for analyzing the development of scientific principles called the ‘life cycle’ of principles. It includes a series of processes that principles can go through: prehistory, elevation, formalization, generalization, and challenge. The life cycle, we argue, is a useful heuristic for the analysis of the development of (...)
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  36. Scientific revolutions, specialization and the discovery of the structure of DNA: toward a new picture of the development of the sciences.Politi Vincenzo - 2018 - Synthese 195 (5):2267-2293.
    In his late years, Thomas Kuhn became interested in the process of scientific specialization, which does not seem to possess the destructive element that is characteristic of scientific revolutions. It therefore makes sense to investigate whether and how Kuhn’s insights about specialization are consistent with, and actually fit, his model of scientific progress through revolutions. In this paper, I argue that the transition toward a new specialty corresponds to a revolutionary change for the group of scientists involved (...)
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  37. Scientific knowledge: a sociological analysis.Barry Barnes - 1996 - London: Athlone. Edited by David Bloor & John Henry.
    Although science was once seen as the product of individual great men working in isolation, we now realize that, like any other creative activity, science is a highly social enterprise, influenced in subtle as well as obvious ways by the wider culture and values of its time. Scientific Knowledge is the first introduction to social studies of scientific knowledge. The authors, all noted for their contributions to science studies, have organized this book so that each chapter examines a (...)
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  38.  22
    Scientific Certitude.Stephen Braude - 2020 - Journal of Scientific Exploration 34 (4).
    I’ve been both fascinated and distressed by the arguments raging over how best to respond to the covid-19 pandemic. In particular, I’ve been struck by the way people claim scientific authority for their confident assurances of what needs to be done. And I’m especially intrigued by the scorn they often lavish on those who hold differing views on what science is telling us. The heat generated by the resulting debates is strikingly similar to the heat generated by debates over (...)
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  39.  21
    Shaping Public Perception: Polish Illustrated Press and the Image of Polish Naturalists Working in Latin America, 1844–1885.Aleksandra Kaye - 2023 - Berichte Zur Wissenschaftsgeschichte 46 (2-3):158-180.
    This article will investigate the ways in which Polish illustrated press contributed to communicating and reporting the work of Polish émigré naturalists working in Latin America to the Polish general public living in the Prussian, Russian and Austrian partitions of the Polish‐Lithuanian Commonwealth 1844–1885. It examines the ways in which illustrations were used to shape the public's opinion about the significance of these migrants’ scientific achievements. The Polish illustrated press, its authors and editors were instrumental in shaping the public's (...)
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  40.  44
    Inferential power, formalisms, and scientific models.Vincent Ardourel, Anouk Barberousse & Cyrille Imbert - unknown
    Scientific models need to be investigated if they are to provide valuable information about the systems they represent. Surprisingly, the epistemological question of what enables this investigation has hardly been investigated. Even authors who consider the inferential role of models as central, like Hughes or Bueno and Colyvan, content themselves with claiming that models contain mathematical resources that provide inferential power. We claim that these notions require further analysis and argue that mathematical formalisms contribute to this inferential role. We (...)
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  41. Understanding scientific study via process modeling.Robert W. P. Luk - 2010 - Foundations of Science 15 (1):49-78.
    This paper argues that scientific studies distinguish themselves from other studies by a combination of their processes, their (knowledge) elements and the roles of these elements. This is supported by constructing a process model. An illustrative example based on Newtonian mechanics shows how scientific knowledge is structured according to the process model. To distinguish scientific studies from research and scientific research, two additional process models are built for such processes. We apply these process models: (1) to (...)
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  42.  38
    Close encounters with scientific analogies of the third kind.Francesco Nappo - 2021 - European Journal for Philosophy of Science 11 (3):1-20.
    Arguments from non-causal analogy form a distinctive class of analogical arguments in science not recognized in authoritative classifications by, e.g., Hesse and Bartha. In this paper, I illustrate this novel class of scientific analogies by means of historical examples from physics, biology and economics, at the same time emphasizing their broader significance for contemporary debates in epistemology.
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  43.  62
    Scientific misconduct and findings against graduate and medical students.Debra M. Parrish - 2004 - Science and Engineering Ethics 10 (3):483-491.
    Allegations of scientific misconduct against graduate students appear to have unique attributes in the detection, investigation, processes used and sanctions imposed vis-à-vis other populations against which misconduct is alleged and found. An examination of the cases closed by the Department of Health and Human Services’ Office of Research Integrity and the National Science Foundation reveals that most of the allegations made against graduate and medical students are for falsification and fabrication. Further, additional processes are used in these cases, e.g., (...)
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  44. Conservatism and the Scientific State of Nature.Erich Kummerfeld & Kevin J. S. Zollman - 2016 - British Journal for the Philosophy of Science 67 (4):1057-1076.
    Those who comment on modern scientific institutions are often quick to praise institutional structures that leave scientists to their own devices. These comments reveal an underlying presumption that scientists do best when left alone—when they operate in what we call the ‘scientific state of nature’. Through computer simulation, we challenge this presumption by illustrating an inefficiency that arises in the scientific state of nature. This inefficiency suggests that one cannot simply presume that science is most efficient when (...)
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  45.  49
    Representation of the Microcosm: The Claim for Objectivity in 19th Century Scientific Microphotography.Olaf Breidbach - 2002 - Journal of the History of Biology 35 (2):221 - 250.
    Microphotography was one of the earliest applications of photography in science: The first monograph on tissue organization illustrated with microphotographs was published in 1845. In the 1860s, a large number of introductions to scientific microphotography were published by anatomists. They argued that microphotography was a means of documenting the results of microscopic analysis, uncontaminated by the subjectivity of the observer. In the early decades of the 19th century, before the general acceptance of cell theory, such a technique was of (...)
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  46.  57
    Critical Rationalism and Scientific Competition.Max Albert - 2010 - Analyse & Kritik 32 (2):247-266.
    This paper considers critical rationalism under an institutional perspective. It argues that a methodology must be incentive compatible in order to prevail in scientific competition. As shown by a formal game-theoretic model of scientific competition, incentive compatibility requires quality standards that are hereditary: using high-quality research as an input must increase a researcher’s chances to produce high-quality output. Critical rationalism is incentive compatible because of the way it deals with the Duhem-Quine problem. An example from experimental economics illustrates (...)
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  47.  13
    The Scientific Stance: Using Evidence Based Arguments Across Fields.Mario Bunge - 2017 - Hamilton Books.
    This book demonstrates that any issue or problem can be easily and efficiently evaluated with a scientific viewpoint. The author uses a number of topical cases, from gravitational waves to mental disorders to politics, to illustrate that any subject, even politics and philosophy, can be approached in a scientific manner.
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  48.  47
    Going Public: Good Scientific Conduct.Gitte Meyer & Peter Sandøe - 2012 - Science and Engineering Ethics 18 (2):173-197.
    The paper addresses issues of scientific conduct regarding relations between science and the media, relations between scientists and journalists, and attitudes towards the public at large. In the large and increasing body of literature on scientific conduct and misconduct, these issues seem underexposed as ethical challenges. Consequently, individual scientists here tend to be left alone with problems and dilemmas, with no guidance for good conduct. Ideas are presented about how to make up for this omission. Using a practical, (...)
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  49.  87
    Scientific Realism and Primordial Cosmology.Feraz Azhar & Jeremy Butterfield - unknown
    We discuss scientific realism from the perspective of modern cosmology, especially primordial cosmology: i.e. the cosmological investigation of the very early universe. We first state our allegiance to scientific realism, and discuss what insights about it cosmology might yield, as against "just" supplying scientific claims that philosophers can then evaluate. In particular, we discuss: the idea of laws of cosmology, and limitations on ascertaining the global structure of spacetime. Then we review some of what is now known (...)
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  50.  35
    The Growth of Scientific Physiology: Physiological Method and the Mechanist -- Vitalist Controversy, Illustrated by the Problems of Respiration and Animal Heat. G. J. Goodfield. [REVIEW]Leonard Wilson - 1962 - Isis 53 (4):541-542.
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