Results for 'National Genetics Foundation'

976 found
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  1.  9
    Genetics and the Law.Aubrey Milunsky, George J. Annas, National Genetics Foundation & American Society of Law and Medicine - 2012 - Springer.
    Society has historically not taken a benign view of genetic disease. The laws permitting sterilization of the mentally re tarded~ and those proscribing consanguineous marriages are but two examples. Indeed as far back as the 5th-10th centuries, B.C.E., consanguineous unions were outlawed (Leviticus XVIII, 6). Case law has traditionally tended toward the conservative. It is reactive rather than directive, exerting its influence only after an individual or group has sustained injury and brought suit. In contrast, state legislatures have not been (...)
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  2.  62
    News from the National Reference Center for Bioethics Literature (NRCBL) and the National Information Resource on Ethics and Human Genetics (NIREHG).National Reference Center for Bioet - 2007 - Kennedy Institute of Ethics Journal 17 (4):399-403.
  3.  49
    Bioethics Resources on the Web.National Reference Center for Bioethics Literature - 2000 - Kennedy Institute of Ethics Journal 10 (2):175-188.
    In lieu of an abstract, here is a brief excerpt of the content:Kennedy Institute of Ethics Journal 10.2 (2000) 175-188 [Access article in PDF] Scope Note 38 Bioethics Resources on the Web * Once described as an "enormous used book store with volumes stacked on shelves and tables and overflowing onto the floor" (Pool, Robert. 1994. Turning an Info-Glut into a Library. Science 266 (7 October): 20-22, p. 20), Internet resources now receive numerous levels of organization, from basic directory listings (...)
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  4.  16
    Universal Draft Declaration on Bioethics and Human Rights.Nations Educational United - 2005 - Developing World Bioethics 5 (3):197.
    ABSTRACTSome people might argue that there are already too many different documents, guidelines, and regulations in bioethics. Some overlap with one another, some are advisory and lack legal force, others are legally binding in countries, and still others are directed at narrow topics within bioethics, such as HIV/AIDS and human genetics. As the latest document to enter the fray, the UNESCO Declaration has the widest scope of any previous document. It embraces not only research involving human beings, but addresses (...)
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  5. Experience and nature.John Dewey & Paul Carus Foundation - 1925 - London,: Open Court Publishing Company.
    This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work was reproduced from the original artifact, and remains as true to the original work as possible. Therefore, you will see the original copyright references, library stamps (as most of these works have been housed in our most important libraries around the world), and other notations in the work. This work is in the public domain (...)
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  6.  90
    The Jónsson-Kiefer Property.Kira Adaricheva, Miklos Maróti, Ralph Mckenzie, J. B. Nation & Eric R. Zenk - 2006 - Studia Logica 83 (1-3):111-131.
    The least element 0 of a finite meet semi-distributive lattice is a meet of meet-prime elements. We investigate conditions under which the least element of an algebraic, meet semi-distributive lattice is a (complete) meet of meet-prime elements. For example, this is true if the lattice has only countably many compact elements, or if |L| < 2ℵ0, or if L is in the variety generated by a finite meet semi-distributive lattice. We give an example of an algebraic, meet semi-distributive lattice that (...)
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  7. Human Genetic Technology, Eugenics, and Social Justice.W. Malcolm Byrnes - 2001 - The National Catholic Bioethics Quarterly 1 (4):555-581.
    In this new post-genomic age of medicine and biomedical technology, there will be novel approaches to understanding disease, and to finding drugs and cures for diseases. Hundreds of new “disease genes” thought to be the causative agents of various genetic maladies will be identified and added to the list of hundreds of such genes already identified. Based on this knowledge, many new genetic tests will be developed and used in genetic screening programs. Genetic screening is the foundation upon which (...)
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  8.  14
    Knowledge - Genetic Foundations and Epistemic Coherence.Birte Schelling - 2011 - De Gruyter.
  9.  17
    Dialectical Materialism Serves Voluntarist Productivism: The Epistemic Foundation of Lysenkoism in Socialist China and North Vietnam.Jongsik Christian Yi - 2021 - Journal of the History of Biology 54 (3):513-539.
    This essay asks why Chinese and North Vietnamese agricultural scientists in the 1950s and 1960s willingly adopted the Soviet agricultural sciences represented not only by agronomists Ivan Michurin and Trofim Lysenko but soil scientist Vasili Williams. The answer, I argue, is that they were fascinated by the promise of Soviet agrobiology that I conceptualize as a combination of dialectical materialism and voluntarist productivism: if one masters the interconnectivity between plants, microbes, organic and inorganic materials, and soil, one can overcome the (...)
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  10.  42
    The National Science Foundation and philosophy of science's withdrawal from social concerns.Krist Vaesen & Joel Katzav - 2019 - Studies in History and Philosophy of Science Part A 78 (C):73-82.
    At some point during the 1950s, mainstream American philosophy of science began increasingly to avoid questions about the role of non-cognitive values in science and, accordingly, increasingly to avoid active engagement with social, political and moral concerns. Such questions and engagement eventually ceased to be part of the mainstream. Here we show that the eventual dominance of 'value-free' philosophy of science can be attributed, at least in part, to the policies of the U.S. National Science Foundation's "History and (...)
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  11.  50
    Implementation of the National Science Foundation's “Broader Impacts”: Efficiency Considerations and Alternative Approaches.Warren W. Burggren - 2009 - Social Epistemology 23 (3):221-237.
    The National Science Foundation (NSF) has, since 1997, attempted to diversify and enrich science research and education in the USA through the Broader Impacts Criterion (BIC), also known as “Criterion Two” or the “Second Criterion”. In doing so, NSF has so successfully integrated BIC into its discovery grant funding programmes that it has become difficult to assess the efficiency (in an economic sense) of BIC activities, as opposed to cataloguing its products (number of trainees, publications, etc.). Moreover, current (...)
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  12. National Science Foundation Patronage of Social Science, 1970s and 1980s: Congressional Scrutiny, Advocacy Network, and the Prestige of Economics. [REVIEW]Tiago Mata & Tom Scheiding - 2012 - Minerva 50 (4):423-449.
    Research in the social sciences received generous patronage in the late 1960s and early 1970s. Research was widely perceived as providing solutions to emerging social problems. That generosity came under increased contest in the late 1970s. Although these trends held true for all of the social sciences, this essay explores the various ways by which economists in particular reacted to and resisted the patronage cuts that were proposed in the first budgets of the Reagan administration. Economists’ response was three fold: (...)
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  13.  9
    Ethics Policies and Ethics Work in Cross-national Genetic Research and Data Sharing: Flows, Nonflows, and Overflows.Malene Bøgehus Rasmussen, Aaro Tupasela & Klaus Hoeyer - 2017 - Science, Technology, and Human Values 42 (3):381-404.
    In recent years, cross-national collaboration in medical research has gained increased policy attention. Policies are developed to enhance data sharing, ensure open-access, and harmonize international standards and ethics rules in order to promote access to existing resources and increase scientific output. In tandem with this promotion of data sharing, numerous ethics policies are developed to control data flows and protect privacy and confidentiality. Both sets of policy making, however, pay limited attention to the moral decisions and social ties enacted (...)
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  14.  79
    The Role of the National Science Foundation Broader Impacts Criterion in Enhancing Research Ethics Pedagogy.Seth D. Baum, Michelle Stickler, James S. Shortle, Klaus Keller, Kenneth J. Davis, Donald A. Brown, Erich W. Schienke & Nancy Tuana - 2009 - Social Epistemology 23 (3):317-336.
    The National Science Foundation's Second Merit Criterion, or Broader Impacts Criterion , was introduced in 1997 as the result of an earlier Congressional movement to enhance the accountability and responsibility as well as the effectiveness of federally funded projects. We demonstrate that a robust understanding and appreciation of NSF BIC argues for a broader conception of research ethics in the sciences than is currently offered in Responsible Conduct of Research training. This essay advocates augmenting RCR education with training (...)
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  15.  74
    Why Diversity Matters: Understanding and Applying the Diversity Component of the National Science Foundation’s Broader Impacts Criterion.Kristen Intemann - 2009 - Social Epistemology 23 (3):249-266.
    Despite the National Science Foundation's recent clarification of the Broader Impacts Criterion used in grant evaluation, it is not clear that this criterion is being understood or applied consistently by grant writers or reviewers. In particular, there is still confusion about how to interpret the requirement for broadening the participation of under-represented groups in science and scepticism about the value of doing so. Much of this stems from uncertainty about why the participation of under-represented groups is desirable or (...)
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  16.  27
    The National Science Foundation and the Debate over Postwar Research Policy, 1942-1945: A Political Interpretation of Science--The Endless Frontier. [REVIEW]Daniel J. Kevles - 1977 - Isis 68 (1):5-26.
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  17.  37
    The discursive and operational foundations of the national nanotechnology initiative in the history of the national science foundation.Jason Gallo - 2009 - Perspectives on Science 17 (2):pp. 174-211.
    The National Science Foundation's (NSF) role in, and influence on, the National Nanotechnology Initiative (NNI) can best be understood through an examination of the NSF's history. Because of the NSF's weakened position at its founding in 1950 and obstacles faced throughout its history, the NSF developed a discursive strategy that focuses on making a causal link between support for basic science and societal benefits, and an operational strategy focused on growing its constituency through infrastructural support. The hallmarks (...)
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  18.  19
    Engaged, Embedded, Enjoined: Science and Technology Studies in the National Science Foundation.Edward J. Hackett & Diana R. Rhoten - 2011 - Science and Engineering Ethics 17 (4):823-838.
    Engaged scholarship is an intellectual movement sweeping across higher education, not only in the social and behavioral sciences but also in fields of natural science and engineering. It is predicated on the idea that major advances in knowledge will transpire when scholars, while pursuing their research interests, also consider addressing the core problems confronting society. For a workable engaged agenda in science and technology studies, one that informs scholarship as well as shapes practice and policy, the traditional terms of engagement (...)
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  19.  65
    Realizing Societal Benefit from Academic Research: Analysis of the National Science Foundation's Broader Impacts Criterion.Melanie R. Roberts - 2009 - Social Epistemology 23 (3):199-219.
    The National Science Foundation (NSF) evaluates grant proposals based on two criteria: intellectual merit and broader impacts. NSF gives applicants wide latitude to choose among a number of broader impacts, which include both benefits for the scientific community and benefits for society. This paper considers whether including potential societal benefits in the Broader Impacts Criterion leads to enhanced benefits for society. One prerequisite for realizing societal benefit is to transfer research results to potential users in a meaningful format. (...)
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  20.  3
    Layers of Interests, Layers of Influence: Business and the Genesis of the National Science Foundation.Daniel Lee Kleinman - 1994 - Science, Technology and Human Values 19 (3):259-282.
    Historical analyses of the genesis of the National Science Foundation have given insufficient attention to the role of business in the legislative struggle to establish a postwar research policy agency. This has led to an incomplete understanding of the defining characteristics of the final NSF legislation. Agency focus on basic research has heretofore been interpreted largely as a response to scientists' interests rather than to those of scientists and business. Moreover, the concern of industry with the intellectual property (...)
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  21.  27
    An Inventory of Archaic and Classical Poleis. An Investigation Conducted by The Copenhagen Polis Centre for the Danish National Research Foundation.P. J. Rhodes - 2005 - Journal of Hellenic Studies 125:171-172.
  22. Assessing the Science -- Society Relation: The Case of the U.S. National Science Foundation's Second Merit Review Criterion.J. Britt Holbrook - 2005 - Technology in Society 27 (4):437--451.
     
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  23.  6
    Supporting women’s research in predominantly undergraduate institutions: Experiences with a National Science Foundation ADVANCE Institutional Transformation Award.Vita C. Rabinowitz & Virginia Valian - 2022 - Frontiers in Psychology 13.
    This paper describes the Gender Equity Project at Hunter College of the City University of New York, funded by the U. S. NSF ADVANCE Institutional Transformation Award program. ADVANCE supports system-level strategies to promote gender equity in the social and natural sciences, but has supported very few teaching-intensive institutions. Hunter College is a teaching-intensive institution in which research productivity among faculty is highly valued and counts toward tenure and promotion. We created the GEP to address the particular challenges that faculty, (...)
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  24.  31
    Doing Science, Technology and Society in the National Science Foundation: Commentary on: “Engaged, Embedded, Enjoined: Science and Technology Studies in the National Science Foundation”.Michael E. Gorman - 2011 - Science and Engineering Ethics 17 (4):839-849.
    The author describes his efforts to become a participant observer while he was a Program Director at the NSF. He describes his plans for keeping track of his reflections and his goals before he arrived at NSF, then includes sections from his reflective diary and comments after he had completed his two-year rotation. The influx of rotators means the NSF has to be an adaptive, learning organization but there are bureaucratic obstacles in the way.
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  25. Froebel is dead: long live Froebel! the National Froebel Foundation and English education.Kirsten Nawrotzki - 2018 - In Tina Bruce, Peter Elfer, Sacha Powell & Louie Werth (eds.), The Routledge international handbook of Froebel and early childhood practice: re-articulating research and policy. New York, NY: Routledge.
     
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  26.  11
    Milestones and Millstones: Social Science at the National Science Foundation, 1945-1991Otto N. Larsen.Cora Bagley Marrett - 1993 - Isis 84 (3):613-614.
  27.  11
    The History and Philosophy of Science Program at the National Science Foundation.Margaret W. Rossiter - 1984 - Isis 75 (1):95-104.
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  28.  52
    Intellectual Merit and Broader Impact: The National Science Foundation’s Broader Impacts Criterion and the Question of Peer Review.Robert Frodeman & Jonathan Parker - 2009 - Social Epistemology 23 (3):337-345.
    Over the last 300 years science has been quite successful at revealing the nature of physical reality. In so doing it has provided an epistemological basis for scientific discovery and technological innovation. But science has been decidedly less successful at guiding political debate. How do we conceive of the science-society relation in the 21st century? How does scientific research hook onto the world in a multi-faceted, pluralistic, and global age? This essay seeks to reframe our thinking about the broader impacts (...)
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  29.  14
    A Patron for Pure Science. Volume I: The National Science Foundation's Formative Years, 1945-1957. J. Merton England.A. Hunter Dupree - 1984 - Isis 75 (1):212-213.
  30. The reemergence of the National Science Foundation in American education: Perspectives and problems.Peter S. Hlebowitsh & William G. Wraga - 1989 - Science Education 73 (4):405-418.
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  31.  16
    12. Interdisciplinary Research Initiatives at the U.S. National Science Foundation.Edward J. Hackett - 2000 - In Peter Weingart & Nico Stehr (eds.), Practising Interdisciplinarity. University of Toronto Press. pp. 248-259.
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  32.  22
    A Minor Miracle. An Informal History of the National Science Foundation. Milton Lomask.Daniel P. Jones - 1978 - Isis 69 (1):151-152.
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  33.  63
    Causal Foundations of Evolutionary Genetics.Jun Otsuka - 2016 - British Journal for the Philosophy of Science 67 (1):247-269.
    The causal nature of evolution is one of the central topics in the philosophy of biology. The issue concerns whether equations used in evolutionary genetics point to some causal processes or purely phenomenological patterns. To address this question the present article builds well-defined causal models that underlie standard equations in evolutionary genetics. These models are based on minimal and biologically plausible hypotheses about selection and reproduction, and generate statistics to predict evolutionary changes. The causal reconstruction of the evolutionary (...)
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  34.  75
    Causal Foundations of Evolutionary Genetics.Jun Otsuka - 2014 - British Journal for the Philosophy of Science (1):axu039.
    The causal nature of evolution is one of the central topics in the philosophy of biology. The issue concerns whether equations used in evolutionary genetics point to some causal processes or purely phenomenological patterns. To address this question the present article builds well-defined causal models that underlie standard equations in evolutionary genetics. These models are based on minimal and biologically plausible hypotheses about selection and reproduction, and generate statistics to predict evolutionary changes. The causal reconstruction of the evolutionary (...)
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  35.  20
    Abir-Am, Pnina and Clark A. Elliott, eds. 2001. Commemorative Practices in Science: Historical Perspectives on the Politics of Collective Memory. Osiris, vol. 14. Chicago: The University of Chicago Press. Pp. xii+ 383. $39 (cloth), $25 (paper). Appel, Toby A. 2000. Shaping Biology: The National Science Foundation and. [REVIEW]Bernadette Bensaude-Vincent - 2000 - Perspectives on Science 8 (3).
  36.  13
    Mark Solovey. Social science for what? Battles over public funding for the “other sciences” at the National Science Foundation. Cambridge, MA: MIT Press, 2020, 398 + x pp. ISBN : 9780262539050. [REVIEW]Dennis Bryson - 2021 - Centaurus 63 (3):606-608.
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  37.  10
    Mark Solovey, Social Science for What? Battles over Public Funding for the ‘Other Sciences’ at the National Science Foundation Cambridge, MA: MIT Press, 2020. Pp. 398. ISBN: 978-0-2625-3905-0. $50.00. [REVIEW]Katherine Ambler - 2021 - British Journal for the History of Science 54 (1):113-114.
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  38.  25
    Foreword. Bibliography of Polish mathematics 1944–1954, translated reprint from the Roczniki Polskiego Towarzystwa Matematycznego, seria II, Wiadomości matematyczne, published for the Department of Commerce and the National Science Foundation, Washington, D.C., on the order of Centralny Instytut Informacji Naukowo-technicznej i Ekonomicznej, by Państwowe Wydawnictwo Naukowe, Warsaw 1963 , pp. 1–2. - A. Mostowski and J. Łoś. I. Foundations of mathematics, theory of sets and mathematical logic. Bibliography of Polish mathematics 1944–1954, translated reprint from the Roczniki Polskiego Towarzystwa Matematycznego, seria II, Wiadomości matematyczne, published for the Department of Commerce and the National Science Foundation, Washington, D.C., on the order of Centralny Instytut Informacji Naukowo-technicznej i Ekonomicznej, by Państwowe Wydawnictwo Naukowe, Warsaw 1963 , pp. 4–17. - S. Drobot and S. Straszewicz. XI. History, teaching, popularization and organization of mathematics. Bibliog. [REVIEW]Alonzo Church - 1966 - Journal of Symbolic Logic 31 (3):517-517.
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  39.  16
    Molecular Genetics and the Foundations of Evolution.Bernard D. Davis - 1985 - Perspectives in Biology and Medicine 28 (2):251-268.
  40. Novartis Foundation Symposium: Genetics and Tuberculosis, Cape Town, November 18-20, 1997.Sara Abdulla - 1998 - Bioessays 20 (5):441-442.
     
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  41.  10
    National Styles in Science: Genetics in Germany and the United States between the World Wars.Jonathan Harwood - 1987 - Isis 78 (3):390-414.
  42.  27
    A map of technopolitics: Deep convergence, platform ontologies, and cognitive efficiency.Michael A. Peters - 2020 - Thesis Eleven 158 (1):117-140.
    This paper, based on an invited Thesis Eleven presentation, provides a ‘map of technopolitics’ that springs from an investigation of the theoretical notion of technological convergence adopted by the US National Science Foundation, signaling a new paradigm of ‘nano-bio-info-cogno’ technologies. This integration at the nano-level is expected to drive the next wave of scientific research, technology and knowledge economy. The paper explores the concept of ‘technopolitics’ by investigating the links between Wittgenstein’s anti-scientism and Lyotard’s ‘technoscience’, reviewing the history (...)
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  43.  42
    Developing U.S. Oversight Strategies for Nanobiotechnology: Learning from Past Oversight Experiences.Jordan Paradise, Susan M. Wolf, Jennifer Kuzma, Aliya Kuzhabekova, Alison W. Tisdale, Efrosini Kokkoli & Gurumurthy Ramachandran - 2009 - Journal of Law, Medicine and Ethics 37 (4):688-705.
    The emergence of nanotechnology, and specifically nanobiotechnology, raises major oversight challenges. In the United States, government, industry, and researchers are debating what oversight approaches are most appropriate. Among the federal agencies already embroiled in discussion of oversight approaches are the Food and Drug Administration , Environmental Protection Agency , Department of Agriculture , Occupational Safety and Health Administration , and National Institutes of Health . All can learn from assessment of the successes and failures of past oversight efforts aimed (...)
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  44.  6
    Toby A. Appel. Shaping Biology: The National Science Foundation and American Biological Research, 1945–1975. xiv + 393 pp., tables, apps., bibl., index. Baltimore: Johns Hopkins University Press, 2000. $42.50. [REVIEW]Mark Solovey - 2002 - Isis 93 (2):280-281.
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  45. Autonomy of Nations and Indigenous Peoples and the Environmental Release of Genetically Engineered Animals with Gene Drives.Zahra Meghani - 2019 - Global Policy 10 (4):554-568.
    This article contends that the environmental release of genetically engineered (GE) animals with heritable traits that are patented will present a challenge to the efforts of nations and indigenous peoples to engage in self‐determination. The environmental release of such animals has been proposed on the grounds that they could function as public health tools or as solutions to the problem of agricultural insect pests. This article brings into focus two political‐economic‐legal problems that would arise with the environmental release of such (...)
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  46.  37
    Hansen (M.H.), Nielsen (T.H.) (edd.) An Inventory of Archaic and Classical Poleis. An Investigation conducted by the Copenhagen Polis Centre for the Danish National Research Foundation. Pp. xvi + 1396. Oxford: Oxford University Press, 2004. Cased, £135. ISBN: 0-19-814099-. [REVIEW]Robert Parker - 2006 - The Classical Review 56 (02):380-.
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  47.  14
    Hansen, Nielsen An Inventory of Archaic and Classical Poleis. An Investigation conducted by the Copenhagen Polis Centre for the Danish National Research Foundation. Pp. xvi + 1396. Oxford: Oxford University Press, 2004. Cased, £135. ISBN: 0-19-814099-1. [REVIEW]Robert Parker - 2006 - The Classical Review 56 (2):380-384.
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  48.  5
    Mark Solovey. Social Science for What? Battles over Public Funding for the “Other Sciences” at the National Science Foundation. 408 pp., figs. Cambridge, Mass.: MIT Press, 2021. $50 (paper); ISBN 9780262539050. E-book available. [REVIEW]Audra J. Wolfe - 2022 - Isis 113 (2):460-460.
  49.  23
    Is nationalizing universalizing and/or vice-versa?: A review essay on Elise K. Burton, Genetic Crossroads: The Middle East and the science of human heredity, Stanford University Press, 2021. IanMcGonigle, Genomic Citizenship: the molecularization of identity in the contemporaryMiddle East. The MIT Press 2021.Snait B. Gissis - 2022 - History and Philosophy of the Life Sciences 44 (3):1-15.
    This is a review essay of two books published in 2021 on the history of human heredity-genetics/genomics investigations—in the Middle East. Both books are structured comparatively. Both books grapple with the many uses of biology in nationalizing projects in the Middle East and the unavoidable tension between these particularizing projects and the scientific claim of biology to universality. Furthermore, both grapple with issues of classifications of humans and their uses in biology: the presumably biological human classifications of race, ethnos, (...)
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  50.  5
    A Minor Miracle. An Informal History Of The National Science Foundation By Milton Lomask. [REVIEW]Daniel Jones - 1978 - Isis 69:151-152.
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