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  1. Epistemic Cultures: How the Sciences Make Knowledge.Karin Knorr Cetina - 1999 - Harvard University Press.
    How does science create knowledge? Epistemic cultures, shaped by affinity, necessity, and historical coincidence, determine how we know what we know. In this book, Karin Knorr Cetina compares two of the most important and intriguing epistemic cultures of our day, those in high energy physics and molecular biology. The first ethnographic study to systematically compare two different scientific laboratory cultures, this book sharpens our focus on epistemic cultures as the basis of the knowledge society.
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  • Science as Social Knowledge: Values and Objectivity in Scientific Inquiry.Helen E. Longino - 1990 - Princeton University Press.
    This is an important book precisely because there is none other quite like it.
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  • Epistemic cultures: how the sciences make knowledge.Karin Knorr-Cetina - 1999 - Cambridge, Mass.: Harvard University Press.
    How does science create knowledge? Epistemic cultures, shaped by affinity, necessity, and historical coincidence, determine how we know what we know. In this book, Karin Knorr Cetina compares two of the most important and intriguing epistemic cultures of our day, those in high energy physics and molecular biology. Her work highlights the diversity of these cultures of knowing and, in its depiction of their differences--in the meaning of the empirical, the enactment of object relations, and the fashioning of social relations--challenges (...)
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  • Science in action: how to follow scientists and engineers through society.Bruno Latour - 1987 - Cambridge: Harvard University Press.
    In this book Bruno Latour brings together these different approaches to provide a lively and challenging analysis of science, demonstrating how social context..
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  • (1 other version)How to Relate Science and Religion a Multidimensional Model.Mikael Stenmark - 2005 - International Journal for Philosophy of Religion 58 (1):55-58.
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  • (1 other version)How to relate science and religion: A multidimensional model.Mikael Stenmark - 2005 - Ars Disputandi 5:55-58.
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  • From black and white to shades of grey.Lotta Leden, Lena Hansson & Andreas Redfors - 2017 - Science & Education 26 (5):483-511.
    Traditional school science has been described as focused on indisputable facts where scientific processes and factors affecting these processes become obscured or left undiscussed. In this article, we report on teachers’ perspectives on the teaching of sociocultural and subjective aspects of the nature of science as a way to accomplish a more nuanced science teaching in Swedish compulsory school. The teachers took part in a longitudinal study on NOS and NOS teaching that spanned 3 years. The data consists of recorded (...)
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  • Science as Social Knowledge: Values and Objectivity in Scientific Inquiry.Helen E. Longino - 1990 - Journal of the History of Biology 25 (2):340-341.
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  • Teachers’ Ways of Talking About Nature of Science and Its Teaching.Malin Ideland, Andreas Redfors, Lena Hansson & Lotta Leden - 2015 - Science & Education 24 (9-10):1141-1172.
    Nature of science has for a long time been regarded as a key component in science teaching. Much research has focused on students’ and teachers’ views of NOS, while less attention has been paid to teachers’ perspectives on NOS teaching. This article focuses on in-service science teachers’ ways of talking about NOS and NOS teaching, e.g. what they talk about as possible and valuable to address in the science classroom, in Swedish compulsory school. These teachers are, according to the national (...)
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  • Physics Teachers’ Challenges in Using History and Philosophy of Science in Teaching.Dietmar Höttecke & Andreas Henke - 2015 - Science & Education 24 (4):349-385.
    The inclusion of the history and philosophy of science in science teaching is widely accepted, but the actual state of implementation in schools is still poor. This article investigates possible reasons for this discrepancy. The demands science teachers associate with HPS-based teaching play an important role, since these determine teachers’ decisions towards implementing its practices and ideas. We therefore investigate the perceptions of 8 HPS-experienced German middle school physics teachers within and beyond an HPS implementation project. Within focused interviews these (...)
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  • Why Should Philosophers of Science Pay Attention to the Commercialization of Academic Science?Gürol Irzik - 2010 - In M. Dorato M. Suàrez (ed.), Epsa Epistemology and Methodology of Science. Springer. pp. 129--138.
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  • From Science Studies to Scientific Literacy: A View from the Classroom.Douglas Allchin - 2014 - Science & Education 23 (9):1911-1932.
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  • Eliciting, interpreting and developing teachers' understandings of the nature of science.Mick Nott & Jerry Wellington - 1998 - Science & Education 7 (6):579-594.
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  • Diversity and the Fate of Objectivity.Karyn L. Freedman - 2009 - Social Epistemology 23 (1):45-56.
    Helen Longino argues that the way to ensure scientific knowledge is objective is to have a diversity of scientific investigators. This is the best example of recent feminist arguments which hold that the real value of diversity is epistemic, and not political, but it only partly succeeds. In the end, Longino's objectivity amounts to intersubjective agreement about contextually based standards, and while her account gives us a good reason for wanting diversity in our scientific communities, this reason turns out to (...)
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  • The nature of science and instructional practice: Making the unnatural natural.Fouad Abd-El-Khalick, Randy L. Bell & Norman G. Lederman - 1998 - Science Education 82 (4):417-436.
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  • Teaching students “ideas‐about‐science”: Five dimensions of effective practice.Hannah Bartholomew, Jonathan Osborne & Mary Ratcliffe - 2004 - Science Education 88 (5):655-682.
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  • Science education for democratic citizenship through the use of the history of science.Stein Dankert Kolstø - 2008 - Science & Education 17 (8-9):977-997.
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  • The Story Behind the Science: Bringing Science and Scientists to Life in Post-Secondary Science Education.Michael P. Clough - 2011 - Science & Education 20 (7-8):701-717.
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  • The Minnesota Case Study Collection: New Historical Inquiry Case Studies for Nature of Science Education.Douglas Allchin - 2012 - Science & Education 21 (9):1263-1281.
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  • Why Implementing History and Philosophy in School Science Education is a Challenge: An Analysis of Obstacles.Dietmar Höttecke & Cibelle Celestino Silva - 2011 - Science & Education 20 (3-4):293-316.
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  • Urban middle‐school students' attitudes toward a defined science.Zacharias Zacharia & Angela Calabrese Barton - 2004 - Science Education 88 (2):197-222.
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  • Suchting on the nature of scientific thought: Are we anchoring curricula in quicksand?Norman G. Lederman - 1995 - Science & Education 4 (4):371-377.
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  • Scientific myth‐conceptions.Douglas Allchin - 2003 - Science Education 87 (3):329-351.
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