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Critical rationalism and engineering: ontology

Synthese 191 (10):2255-2279 (2014)

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  1. The logic of scientific discovery.Karl Raimund Popper - 1934 - New York: Routledge. Edited by Hutchinson Publishing Group.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside The Open Society and Its Enemies as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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  • Reasoning With Safety Factor Rules.Jonas Clausen & John Cantwell - 2007 - Techné: Research in Philosophy and Technology 11 (1):55-70.
    Safety factor rules are used for drawing putatively reasonable conclusions from incomplete datasets. The paper attempts to provide answers to four questions: “How are safety factors used?”, “When are safety factors used?”, “Why are safety used?” and “How do safety factor rules relate to decision theory?”. The authors conclude that safety factor rules should be regarded as decision methods rather than as criteria of rightness and that they can be used in both practical and theoretical reasoning. Simplicity of application and (...)
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  • How the laws of physics lie.Nancy Cartwright - 1983 - New York: Oxford University Press.
    In this sequence of philosophical essays about natural science, the author argues that fundamental explanatory laws, the deepest and most admired successes of modern physics, do not in fact describe regularities that exist in nature. Cartwright draws from many real-life examples to propound a novel distinction: that theoretical entities, and the complex and localized laws that describe them, can be interpreted realistically, but the simple unifying laws of basic theory cannot.
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  • In Defense of Engineering Sciences.Mieke Boon - 2011 - Techné: Research in Philosophy and Technology 15 (1):49-71.
    This article presents an overview of discussions in the philosophy of technology on epistemological relations between science and technology, illustrating that often several mutually entangled issues are at stake. The focus is on conceptual and ideological issues concerning the relationship between scientific and technological knowledge. It argues that a widely accepted hierarchy between science and technology, which echoes classic conceptions of epistêmê and technê, engendered the need of emancipating technology from science, thus shifting focus to epistemic aspects of engineering design (...)
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  • In Defense of Engineering Sciences.Mieke Boon - 2011 - Techné: Research in Philosophy and Technology 15 (1):49-71.
    This article presents an overview of discussions in the philosophy of technology on epistemological relations between science and technology, illustrating that often several mutually entangled issues are at stake. The focus is on conceptual and ideological issues concerning the relationship between scientific and technological knowledge. It argues that a widely accepted hierarchy between science and technology, which echoes classic conceptions of epistêmê and technê, engendered the need of emancipating technology from science, thus shifting focus to epistemic aspects of engineering design (...)
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  • Scientific reasoning: the Bayesian approach.Peter Urbach & Colin Howson - 1993 - Chicago: Open Court. Edited by Peter Urbach.
    Scientific reasoning is—and ought to be—conducted in accordance with the axioms of probability. This Bayesian view—so called because of the central role it accords to a theorem first proved by Thomas Bayes in the late eighteenth ...
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  • Personal knowledge.Michael Polanyi - 1958 - Chicago,: University of Chicago Press.
    In this work the distinguished physical chemist and philosopher, Michael Polanyi, demonstrates that the scientist's personal participation in his knowledge, in ...
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  • Philosophy of Technology and Engineering Sciences.Anthonie Meijers (ed.) - 2009 - Elsevier/North Holland.
    The Handbook Philosophy of Technology and Engineering Sciences addresses numerous issues in the emerging field of the philosophy of those sciences that are involved in the technological process of designing, developing and making of new technical artifacts and systems. These issues include the nature of design, of technological knowledge, and of technical artifacts, as well as the toolbox of engineers. Most of these have thus far not been analyzed in general philosophy of science, which has traditionally but inadequately regarded technology (...)
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  • Three Kinds of Idealization.Michael Weisberg - 2007 - Journal of Philosophy 104 (12):639-659.
    Philosophers of science increasingly recognize the importance of idealization: the intentional introduction of distortion into scientific theories. Yet this recognition has not yielded consensus about the nature of idealization. e literature of the past thirty years contains disparate characterizations and justifications, but little evidence of convergence towards a common position.
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  • Knowing How and Knowing That: The Presidential Address.Gilbert Ryle - 1946 - Proceedings of the Aristotelian Society 46:1 - 16.
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  • Analytical Philosophy of Technology.F. Rapp - 1985 - Australasian Journal of Philosophy 63:520.
    How can I wright an abstract ir I can't. read the article? I'm interested in reading it because I'm writing a papel on Philosophy of Technology but I have no acesso to this. Text. It's a shame! What can I do??? -/- Luisa.
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  • The Self and Its Brain: An Argument for Interactionism.Karl Raimund Popper & John C. Eccles - 1977 - Springer.
    Physical and chemical processes may act upon the mind; and when we are writing a difficult letter, our mind acts upon our body and, through a chain of physical...
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  • Galilean Idealization.Ernan McMullin - 1985 - Studies in History and Philosophy of Science Part A 16 (3):247.
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  • Applying idealized scientific theories to engineering.Ronald Laymon - 1989 - Synthese 81 (3):353 - 371.
    The problem for the scientist created by using idealizations is to determine whether failures to achieve experimental fit are attributable to experimental error, falsity of theory, or of idealization. Even in the rare case when experimental fit within experimental error is achieved, the scientist must determine whether this is so because of a true theory and fortuitously canceling idealizations, or due to a fortuitous combination of false theory and false idealizations. For the engineer, the problem seems rather different. Experiment for (...)
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  • Produced to Use.Wybo Houkes & Pieter E. Vermaas - 2009 - Techné: Research in Philosophy and Technology 13 (2):123-136.
    In this paper we examine the possibilities of combining two central intuitions about artefacts: that they are functional objects, and that they are non-natural objects. We do so in four steps. First we argue that, contrary to common opinion, functions cannot be the cornerstone of a characterisation of artefacts. Our argument suggests an alternative view, which characterises artefacts as objects embedded in what we call use plans. Second, we show that this plan-centred successor of the function-focused view is at odds (...)
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  • Knowledge of artefact functions.Wybo Houkes - 2006 - Studies in History and Philosophy of Science Part A 37 (1):102-113.
    I argue that technological functions warrant specific epistemological attention, which they have not received thus far. From a user’s perspective, knowledge about the possible functions of an artefact is not provided exclusively by beliefs about its physical characteristics; it is primarily provided by know-how related to its use. Analysing the latter shows that standards of practical and not just theoretical reasoning are involved. Moreover, knowledge of the function of artefacts is primarily based on testimony and a social division of labour (...)
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  • Dual-Nature and collectivist frameworks for technical artefacts: a constructive comparison.Wybo Houkes, Peter Kroes, Anthonie Meijers & Pieter E. Vermaas - 2011 - Studies in History and Philosophy of Science Part A 42 (1):198-205.
    This paper systematically compares two frameworks for analysing technical artefacts: the Dual-Nature approach, exemplified by the contributions to Kroes and Meijers , and the collectivist approach advocated by Schyfter , following Kusch . After describing the main tenets of both approaches, we show that there is significant overlap between them: both frameworks analyse the most typical cases of artefact use, albeit in different terms, but to largely the same extent. Then, we describe several kinds of cases for which the frameworks (...)
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  • The Ecological Approach to Visual Perception: Classic Edition.James J. Gibson - 1979 - Houghton Mifflin.
    This is a book about how we see: the environment around us (its surfaces, their layout, and their colors and textures); where we are in the environment; whether or not we are moving and, if we are, where we are going; what things are good for; how to do things (to thread a needle or drive an automobile); or why things look as they do.The basic assumption is that vision depends on the eye which is connected to the brain. The (...)
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  • Conceptualizing Knowledge Used in Innovation: A Second Look at the Science-Technology Distinction and Industrial Innovation.Wendy Faulkner - 1994 - Science, Technology and Human Values 19 (4):425-458.
    This article reviews empirical and conceptual material from two distinct research traditions: on the science-technology relation and on industrial innovation. It aims both to shed new light on an old debate—the distinction between scientific and technological knowledge—and to refine our conceptualizations of the knowledge used by companies in the course of research and development leading to innovation. On the basis of three empirical studies, a composite categorization of different types of knowledge used in innovation is proposed, as part of a (...)
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  • The Nature of Technological Knowledge.Marc J. de Vries - 2003 - Techné: Research in Philosophy and Technology 6 (3):117-130.
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  • The Nature of Technological Knowledge.Marc J. de Vries - 2003 - Techné: Research in Philosophy and Technology 6 (3):117-130.
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  • The sciences of the artificial.Herbert Alexander Simon - 1969 - [Cambridge,: M.I.T. Press.
    Continuing his exploration of the organization of complexity and the science of design, this new edition of Herbert Simon's classic work on artificial ...
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  • Hitting the Brakes: Engineering Design and the Production of Knowledge.Ann Johnson - 2009 - Duke University Press: Durham.
    DIVLooks at the development of a particular engineering design, anti-lock braking systems for passenger cars, in order to consider how knowledge and cultures of knowledge are constructed. /div.
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  • The Philosophy of Karl Popper.Karl Raimund Popper - 1974 - Open Court Publishing Company.
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  • The Nature of Engineering: A Philosophy of Technology.Gordon Frederick Crichton Rogers - 1983
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  • What Engineers Know and how They Know it: Analytical Studies from Aeronautical History.Walter Guido Vincenti - 1990
    "The biggest contribution of Vincenti's splendidly crafted book may well be that it offers us a believably human image of the engineer."--Technology Review. Johns Hopkins Studies in the History of Technology. Merritt Roe Smith, Series Editor.
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  • Conceptualising Knowledge Used in Innovation: A Second Look at the Science-technology Distinction and Industrial Innovation.Wendy Faulkner - 1993
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  • Objective knowledge.Karl Raimund Popper - 1972 - Oxford,: Clarendon Press.
    The essays in this volume represent an approach to human knowledge that has had a profound influence on many recent thinkers. Popper breaks with a traditional commonsense theory of knowledge that can be traced back to Aristotle. A realist and fallibilist, he argues closely and in simple language that scientific knowledge, once stated in human language, is no longer part of ourselves but a separate entity that grows through critical selection.
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  • Popper's Contribution to the Philosophical Study of Artifacts.Manjari Chakrabarty - manuscript
    This paper aims to critically discuss the versatility of Popper’s theory of three worlds in the analysis of issues related to the ontological status and character of technical artifacts. Despite being discussed over years and hit with numerous criticisms it is still little known that Popper’s thesis has an important bearing on the philosophical characterization of technical artifacts. His key perspectives on the reality, autonomy, and ontological status of artifacts are rarely taken into consideration by scholars known to be engaged (...)
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  • Program verification: the very idea.James H. Fetzer - 1988 - Communications of the Acm 31 (9):1048--1063.
    The notion of program verification appears to trade upon an equivocation. Algorithms, as logical structures, are appropriate subjects for deductive verification. Programs, as causal models of those structures, are not. The success of program verification as a generally applicable and completely reliable method for guaranteeing program performance is not even a theoretical possibility.
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  • The Logic of Scientific Discovery.K. Popper - 1959 - British Journal for the Philosophy of Science 10 (37):55-57.
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  • Analytical Philosophy of Technology.F. Rapp - 1983 - British Journal for the Philosophy of Science 34 (2):190-192.
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  • Objective knowledge, an evolutionary approach.Karl R. Popper - 1976 - Revue Philosophique de la France Et de l'Etranger 166 (1):72-73.
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