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  1. Using Evaluation Research as a Means for Policy Analysis in a ‘New’ Mission-Oriented Policy Context.Effie Amanatidou, Paul Cunningham, Abdullah Gök & Ioanna Garefi - 2014 - Minerva 52 (4):419-438.
    Grand challenges stress the importance of multi-disciplinary research, a multi-actor approach in examining the current state of affairs and exploring possible solutions, multi-level governance and policy coordination across geographical boundaries and policy areas, and a policy environment for enabling change both in science and technology and in society. The special nature of grand challenges poses certain needs in evaluation practice: the need for learning at the operational, policy and, especially, system level; and the importance of a wider set of impacts (...)
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  • Research Portfolio Analysis in Science Policy: Moving from Financial Returns to Societal Benefits.Matthew L. Wallace & Ismael Rafols - 2015 - Minerva 53 (2):89-115.
    Funding agencies and large public scientific institutions are increasingly using the term “research portfolio” as a means of characterizing their research. While portfolios have long been used as a heuristic for managing corporate R&D, they remain ill-defined in a science policy context where research is aimed at achieving societal outcomes. In this article we analyze the discursive uses of the term “research portfolio” and propose some general considerations for their application in science policy. We explore the use of the term (...)
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  • The Ivory Tower: the history of a figure of speech and its cultural uses.Steven Shapin - 2012 - British Journal for the History of Science 45 (1):1-27.
    This is a historical survey of how and why the notion of the Ivory Tower became part of twentieth- and twenty-first-century cultural vocabularies. It very briefly tracks the origins of the tag in antiquity, documents its nineteenth-century resurgence in literary and aesthetic culture, and more carefully assesses the political and intellectual circumstances, especially in the 1930s and 1940s, in which it became a common phrase attached to universities and to features of science and in which it became a way of (...)
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  • Modernity as a functionally differentiated capitalist society: A general theoretical model.Uwe Schimank - 2015 - European Journal of Social Theory 18 (4):413-430.
    A conceptualization of capitalism as a consequence of functional differentiation is proposed. The general theoretical model of a functionally differentiated capitalist society is outlined in four steps based on these keywords: functional differentiation; capitalist economy; capitalist society; welfare state. This model grasps the essential characteristics of the analytical prototype of a capitalist society. What are its basic components that, working together, generate this kind of society’s structural dynamics?
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  • The Linear Model of Innovation: The Historical Construction of an Analytical Framework.Benoît Godin - 2006 - Science, Technology, and Human Values 31 (6):639-667.
    One of the first frameworks developed for understanding the relation of science and technology to the economy has been the linear model of innovation. The model postulated that innovation starts with basic research, is followed by applied research and development, and ends with production and diffusion. The precise source of the model remains nebulous, having never been documented. Several authors who have used, improved, or criticized the model in the past fifty years rarely acknowledged or cited any original source. The (...)
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  • (1 other version)The Origins of Pure and Applied Science in Gilded Age America.Paul Lucier - 2012 - Isis 103 (3):527-536.
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  • (1 other version)The Origins of Pure and Applied Science in Gilded Age America.Paul Lucier - 2012 - Isis 103 (3):527-536.
    “Pure science” and “applied science” have peculiar histories in the United States. Both terms were in use in the early part of the nineteenth century, but it was only in the last decades that they took on new meanings and became commonplace in the discourse of American scientists. The rise in their currency reflected an acute concern about the corruption of character and the real possibilities of commercializing scientific knowledge. “Pure” was the preference of scientists who wanted to emphasize their (...)
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  • Is it possible to give scientific solutions to Grand Challenges? On the idea of grand challenges for life science research.Sophia Efstathiou - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 56:46-61.
    This paper argues that challenges that are grand in scope such as "lifelong health and wellbeing", "climate action", or "food security" cannot be addressed through scientific research only. Indeed scientific research could inhibit addressing such challenges if scientific analysis constrains the multiple possible understandings of these challenges into already available scientific categories and concepts without translating between these and everyday concerns. This argument builds on work in philosophy of science and race to postulate a process through which non-scientific notions become (...)
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  • Grand Challenges and Small Steps. Introduction to the Special Issue 'Interdisciplinary Integration: The Real Grand Challenge for the Life Sciences?'.Giovanni De Grandis & Sophia Efstathiou - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 56:39-47.
    This collection addresses two different audiences: 1) historians and philosophers of the life sciences reflecting on collaborations across disciplines, especially as regards defining and addressing Grand Challenges; 2) researchers and other stakeholders involved in cross-disciplinary collaborations aimed at tackling Grand Challenges in the life and medical sciences. The essays collected here offer ideas and resources both for the study and for the practice of goal-driven cross-disciplinary research in the life and medical sciences. We organise this introduction in three sections. The (...)
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  • (4 other versions)The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. Research (...)
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  • Engineering ethics: balancing cost, schedule, and risk--lessons learned from the space shuttle.Rosa Lynn B. Pinkus (ed.) - 1997 - New York: Cambridge University Press.
    How do engineers respond to ethical dilemmas that occur in practice? How do they view their individual and collective responsibilities? How do they make decisions before all the facts are in? Using the space shuttle programme as the framework, this book examines the role of ethical decision making in the practice of engineering. In particular, the book considers the design and development of the main engines of the space shuttle as a paradigm for how individual engineers perceive, articulate, and resolve (...)
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  • RoboCup: the World Cup Initiative.H. Kitano, M. Asada, Y. Kuniyoshi, I. Noda & E. Osawa - forthcoming - Proceedings of Japanese Society for Ai Symposium.
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  • Futures Past: On the Semantics of Historical Time.Reinhart Koselleck - 1985 - MIT Press.
    In these fifteen essays, one Of Germany's most distinguished philosophers of history invokes an extraordinary array of witnesses and texts to explore the concept of historical time. The witnesses include politicians, philosophers, theologians, and poets, and the texts range from Renaissance paintings to the dreams of German citizens in the 1930s. Using these remarkable materials, Koselleck investigates the relationship of history to language, and of language to the deeper movements of human understanding.Reinhart Koselleck is Professor of the Theory of History (...)
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  • (2 other versions)All Life is Problem Solving.Karl Popper - 1999 - Routledge.
    _'Never before has there been so many and such dreadful weapons in so many irresponsible hands.'__ - Karl Popper, from the Preface_ _All Life is Problem Solving_ is a stimulating and provocative selection of Popper's writings on his main preoccupations during the last twenty-five years of his life. This collection illuminates Popper's process of working out key formulations in his theory of science, and indicates his view of the state of the world at the end of the Cold War and (...)
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  • (2 other versions)All Life is Problem Solving.Karl Raimund Popper - 1999 - Routledge.
    'Never before has there been so many and such dreadful weapons in so many irresponsible hands.' - Karl Popper, from the Preface All Life is Problem Solving is a stimulating and provocative selection of Popper's writings on his main preoccupations during the last twenty-five years of his life. This collection illuminates Popper's process of working out key formulations in his theory of science, and indicates his view of the state of the world at the end of the Cold War and (...)
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