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1.
Susanne Heim 《Minerva》2006,44(3):267-284
Agricultural science played a prominent role in Nazi research policy. During the Second World War, German science commandeered research results and materials from occupied Europe. This process advanced individual careers. It also had a decided influence on research practice and problem choice, both during and after the war. This essay explores the significance of wartime developments for an understanding of Nazi policy and the history of agricultural research.  相似文献   

2.
Science and technology (S&T) policy studies has explored the relationship between the structure of scientific research and the attainment of desired outcomes. Due to the difficulty of measuring them directly, S&T policy scholars have traditionally equated “outcomes” with several proxies for evaluation, including economic impact, and academic output such as papers published and citations received. More recently, scholars have evaluated science policies through the lens of Public Value Mapping, which assesses scientific programs against societal values. Missing from these approaches is an examination of the social activities within the scientific enterprise that affect research outputs and outcomes. We contend that activities that significantly affect research trajectories take place at the levels of individual researchers and their communities, and that S&T policy scholars must take heed of this activity in their work in order to better inform policy. Based on primary research of two scientific communities—ecologists and sustainability scientists—we demonstrate that research agendas are actively shaped by parochial epistemic and normative concerns of the scientists and their disciplines. S&T policy scholarship that explores how scientists balance these concerns, alongside more formal science policies and incentive structures, will enhance understanding of why certain science policies fail or succeed and how to more effectively link science to beneficial social outcomes.  相似文献   

3.
Désirée Schauz 《Minerva》2014,52(3):273-328
For some years now, the concept of basic research has been under attack. Yet although the significance of the concept is in doubt, basic research continues to be used as an analytical category in science studies. But what exactly is basic research? What is the difference between basic and applied research? This article seeks to answer these questions by applying historical semantics. I argue that the concept of basic research did not arise out of the tradition of pure science. On the contrary, this new concept emerged in the late 19th and early 20th centuries, a time when scientists were being confronted with rising expectations regarding the societal utility of science. Scientists used the concept in order to try to bridge the gap between the promise of utility and the uncertainty of scientific endeavour. Only after 1945, when United States science policy shaped the notion of basic research, did the concept revert to the older ideals of pure science. This revival of the purity discourse was caused by the specific historical situation in the US at that time: the need to reform federal research policy after the Second World War, the new dimension of ethical dilemmas in science and technology during the atomic era, and the tense political climate during the Cold War.  相似文献   

4.
Lemay  Margaret A. 《Minerva》2020,58(2):235-260

This paper examines the promise of science and its role in shaping research policy. The promise of science is characterized by expectations of science, which are embedded in promissory discourses that envision futures made possible through advances in promising science. Through a single case study of the origins of Genome Canada, the research was guided by the question: How did expectations of genomics shape the creation of Genome Canada? A conceptualization of discursive power and expectations of genomics storylines provide the theoretical and analytical basis for an in-depth examination of the ideational effects and material impacts on research policy decisions over three years (1997–2000) that culminated in the creation of Genome Canada. Expectations of genomics storylines functioned in a complex interplay of discursive practices and dynamics among diverse policy actors within a genomics discourse-coalition to produce a range of ideational and material impacts. The expectations of genomics storylines produced powerful genomics subject-positions from which policy actors perceived their interests, identities and preferences and gained agency, which led to various material impacts, such as mobilizing support and funding, coordinating activities and transforming Canada’s research policy framework. With the increasing importance of research policy to a range of broader policy priorities underpinned by expectations that science will resolve societal challenges and contribute to socio-economic benefits, this paper sheds light on how complex research policy decisions are made; it further contributes to understanding the role of promissory discourses in shaping those decisions.

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5.
Fabiana Bekerman 《Minerva》2013,51(2):253-269
This study looks at some of the traits that characterized Argentina’s scientific and university policies under the military regime that spanned from 1976 through 1983. To this end, it delves into a rarely explored empirical observation: financial resource transfers from national universities to the National Scientific and Technological Research Council (CONICET, for its Spanish acronym) during that period. The intention is to show how, by reallocating funds geared to Science and Technology, CONICET was made to expand and decentralize to the detriment of universities. This was the primary tool used by the military regime to thwart higher education’s research development, bolstering research efforts at other realms. Thus, CONICET grew in budget, number of researchers, and staff size, creating new research institutes, while national universities struggled with reduced funding and were forced to shut down their institutes and programs. As a result, CONICET virtually concentrated all scientific research, foregoing the knowledge accumulated at universities, which drove a wedge between both institutions. This military approach to science and technology policy-making is discussed, bearing in mind the notion of dependence—both in terms of the state’s intervention in the inner workings of the scientific-university field as well as regarding the role played by international financial support in scientific research development.  相似文献   

6.
Helmut Krauch 《Minerva》2006,44(2):131-142
Translator’s note*: I am pleased to offer this translation of a lecture by Helmut Krauch, both because he is an old friend, whom I have known for more than forty years, and because it fills a gap in the history of science policy research. As this lecture makes clear, the Studiengruppe, led by Krauch, was the first in Europe to measure the share of nuclear and military research in total R&D expenditure and to make systematic technology assessments to guide government policy. Moreover, its Project ORAKEL opened the way to wider public debate on major policy issues in science and technology. Krauch’s book on Computer Democracy remains an outstanding contribution to the reform of Western democracy. I commend this essay warmly to all concerned with the history of science and technology policy. This is an edited translation of a lecture delivered at the Institute for Technology Assessment and Systems Analysis at the Research Centre for Technical Change and the Environment in Karlsruhe, 10 April 2000. We are grateful to the Institute for permission to publish the essay, to Professor Christopher Freeman, for generously preparing a translation, and to Dr. Reinhard Coenen for helping to prepare the final version.  相似文献   

7.
This study explores the institutional logics and socialization experiences of STEM doctoral students in the context of the current American economic narrative that is specific to science and technology. Data from qualitative interviews with 36 students at three research universities first reveals a disconnect between a well-established national science and technology policy narrative that is market-oriented and the training, experiences, and perspectives of science and engineering doctoral students. Findings also indicate science and engineering doctoral students mostly understand entrepreneurship and innovation in the contexts of funding research activities and creating social impact, which parallel rather than oppose dominant academic values and norms. Based on the findings, we contend that it is both possible and prudent for universities and graduate programs to pursue strategies that align science and engineering doctoral education with the current national economic agenda and support the personal, professional values and perspectives of students without coming in conflict with the scientific core of the academy.  相似文献   

8.
This paper investigates the impact of changing science policy doctrines on the development of an academic field, working life research. Working life research is an interdisciplinary field of study in which researchers and stakeholders collaborated to produce relevant knowledge. The development of the field, we argue, was both facilitated and justified by the, at the time dominant, science policy orthodoxy in Sweden, sector research. Sector research science policy doctrine favoured stakeholder-driven research agendas in the fields relevant to the sector. This approach to agenda setting was highly contested by Swedish universities and left scientists vulnerable to the fallout from any conflicts arising among the stakeholder groupings that were part of the governance arrangement. Our case shows that working life research was in part a victim of the struggle between science and policy over who sets the agenda for science in Sweden. In this struggle, each side chose to use ‘scientific quality’ as a proxy for furth ing its respective interests and visions for how science should be governed. The paper argues that this case is of interest to the continued elaboration of the Mode 2 thesis and the debate about ‘relevant science’. We find that the close association with stakeholders and the concomitant dependence it created left working life research unable to defend itself against its critics and that this state of affairs was particularly problematic for social science research on working life.  相似文献   

9.
Conclusion The development of radar, jet propulsion, ballistic missiles and the atomic bomb during the Second World War established and made visible to an unprecedented degree governmentally supported and directed research and development. National survival was now seen to depend on the mobilisation of a country's talents and resources in science and technology for military purposes.Prior to the Second World War, the National Advisory Committee for Aeronautics had established its own role in research. It also established the legitimacy of governmental patronage for scientific research far beyond aeronautics. It was during that period that American politicians and the organs of public opinion became convinced and persuaded the electorate to think that science was indispensable for national security and well-being. A very great deal has been accomplished since then, but the credit for a pioneering role in the conduct of research with the financial support of the federal government must be given to the National Advisory Committee for Aeronautics.  相似文献   

10.
Hamblin  Jacob Darwin 《Minerva》2000,38(4):393-423
This work explores the attitudes of American scientists towardsinternational scientific activity, with particular respect to theoceanic sciences, during the three decades after the First WorldWar. In the mid-1950s, the Eisenhower Administration favouredthe thesis that increased international collaboration wouldstrengthen the Free World, ease Cold War tensions, and promotethe growth of science. This essay analyses elements in thatthesis, namely, scientific chauvinism, humanitarianism, andscientific interdependence. The narrative traces these themesthrough key episodes in the history of international cooperationin oceanic science, revealing how this experience shapedstrategies and expectations for cooperative scientific research.  相似文献   

11.
Sabzalieva  Emma    Creso M.  Martinez  Magdalena  Kachynska  Nadiia 《Minerva》2021,59(2):149-172

There is growing attention to science diplomacy among scholars, policymakers, and scientific associations around the world. However, there continues to be contestation around the concept of science diplomacy, currently framed alternately as a new understanding of diplomacy, part of the global challenges discourse, central to the internationalization of science, and typifying competitive innovation. This contestation is furthered by the involvement of a broad array of policy instruments and actors in science diplomacy. In response, this paper focuses on a single policy instrument, examining eight bilateral and multilateral scientific cooperation agreements led by Canada, India, Norway, and the United Kingdom. Kingdon’s multiple streams framework is employed to explain how the interplay between policy actors, the policy agenda, policy problems, and policy alternatives leads to the creation of science diplomacy policies. Across the cases, all of the current science diplomacy discourses were applicable, holding stronger explanatory power in the problem and policy streams of the policy process while not obviously matching processes seen in the political stream. The findings also identified a gap in the current framing in understanding how geopolitical dynamics impact the creation of science diplomacy policies and how different policy actors negotiate, exploit, or are subject to these forces. By stabilizing one element of the ongoing debates around science diplomacy, the paper contributes a deeper examination of the array of policy actors and their involvement in different stages of the policy process leading to the formation of scientific cooperation agreements as tools of science diplomacy.

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12.
Davies  Sarah R. 《Minerva》2020,58(1):97-114

This article explores local variations in scientific practice through the lens of scientists’ international mobility. Its aim is twofold: to explore how the notion of epistemic living spaces may be mobilised as a tool for systematically exploring differences in scientific practice across locations, and to contribute to literature on scientific mobility. Using material from an interview study with scientists with experience of international mobility, and epistemic living spaces as an analytical frame, the paper describes a set of aspects of life in science that interviewees described as being different in different places. These axes of variation were: embodied routines of research; resource levels and salaries; daily or longer-term rhythms of scientific life (and their relation to rhythms of home or family); ‘efficiency’ and how work time is used; degree of hierarchy; the nature of social interactions between colleagues; the purposes of research; the social and interpersonal organisation of knowledge production; and the scale or ambition of research. In presenting an exploratory overview of these variations, the article points the way for future comparative investigation of epistemic cultures through studies of international mobility.

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13.
Matthew N. Eisler 《Minerva》2013,51(2):225-251
The ambiguous material identity of nanotechnology is a minor mystery of the history of contemporary science. This paper argues that nanotechnology functioned primarily in discourses of social, not physical or biological science, the problematic knowledge at stake concerning the economic value of state-supported basic science. The politics of taxonomy in the United States Department of Energy’s Office of Basic Energy Sciences in the 1990s reveals how scientists invoked the term as one of several competing and equally valid candidates for reframing materials sciences in ways believed consonant with the political tenor of the time. The resulting loss of conceptual clarity in the sociology of science traces ultimately to the struggle to bridge the disjunction between the promissory economy of federal basic science and the industrial economy, manifested in attempts to reconcile the precepts of linearity and interdisciplinarity in changing socio-economic conditions over a half century.  相似文献   

14.
In recent years questions concerning the impact of public research funding have become the preeminent site at which struggles over the meanings and value of science are played out. In this paper we explore the ‘politics of impact’ in contemporary UK science and research policy and, in particular, detail the ways in which UK research councils have responded to and reframed recent calls for the quantitative measurement of research impacts. Operating as ‘boundary organisations’ research councils are embroiled in what might be characterised as the ‘politics of demarcation’ in which competing understandings of the cultural values of science are traded, exchanged and contested. In this paper we focus on the way the UK’s ‘Engineering and Physical Sciences Research Council’ (EPSRC) has responded to contemporary policy discourses concerning the impacts of public research expenditure. We argue that, in response to the shifting terms of contemporary science policy, the EPSRC has adopted three distinct strategies. Firstly, in collaboration with other research councils the EPSRC have emphasised the intellectual and metrological challenge presented by attempts to quantify the economic impact of public research expenditure, emphasising instead the cumulative impacts of a broad portfolio of ‘basic science’. Secondly, the EPSRC has sought to widen the discursive meaning of research impacts – specifically to include societal and policy impacts in addition to economic ones. Thirdly, the EPSRC has introduced a new framing into the ‘impact agenda’, preferring to talk about ‘pathways to impact’ rather than research impacts per se. In responding to government priority setting, we argue that the EPSRC has sought to exploit both the technical fragility of auditing techniques and the discursive ambiguity of notions of impact.  相似文献   

15.
Harry G. Johnson 《Minerva》1965,3(4):500-514
Summary There is no necessary connection between leadership in basic science and leadership in the applications of science, because scientific progress is a cooperative endeavour and not a competitive game; indeed, there may be a conflict between basic research and applied science. The notion of a position of leadership; in science raises questions of what leadership consists in and what its value is to the nation. The two main arguments for government support of science are cultural-social, and economic. The cultural-social argument stresses scientific activity as a form of social consumption of wealth and raises the question of whether other uses of the resources employed would contribute more to the greatness of the society. The economic argument stresses basic scientific research as a form of investment for the future, and raises the questions of what the rate of return on such investment is and whether and to what extent government support is called for. Relevant economic research results bearing on this problem are scarce. Economic theory suggests that competition in the market will supply less than the optimal amount of basic research; but our society substantially supplements the market through private contributions to and government support of science, and the question is whether this supplementation is deficient or excessive. Here difficult problems arise, on which more economic research is needed; one of these concerns the relative merits of government and private support of science. The rule-of-thumb procedures generally recommended for determining the volume and allocation of government support to basic scientific research generally ignore these problems, and amount to endorsing the present level of government support or recommending that it be increased. Allocation of federal support of science should take account of the possibility of stimulating the economic development of poor regions of the country by locating scientific research facilities in them.  相似文献   

16.
Laurens K. Hessels 《Minerva》2013,51(3):317-339
Many science systems are witnessing the rise of intermediary organizations with a coordinating mission, but to date a systematic understanding of their function and effects is lacking. The aim of this paper is to contribute to the understanding of the coordinating efforts of intermediary organizations. Starting from the definition of coordination as the establishment or strengthening of a relationship among the activities in a system, with the aim to enhance their common effectiveness, I develop a heuristic framework that facilitates the systematic analysis of coordination in science. I illustrate and substantiate my framework with the empirical case study of a Dutch coordination task force in the area of chemical technologies. Thanks to the framework I could disentangle a number of functions that this task force fulfils concerning research programming, funding allocation and supporting interactions and collaborations. This approach enabled me to systematically analyse a very heterogeneous set of processes that each deserve to be called coordination. The analysis yields a clear overview of eight coordination processes that are each described in terms of activities, intervention, relationships, mechanisms and performance. I conclude my paper with suggestions for further research on coordination in the science system.  相似文献   

17.
Funding agencies in Canada are attempting to break down the organizational boundaries between disciplines to promote interdisciplinary research and foster the integration of the social sciences into the health research field. This paper explores the extent to which biomedical and clinician scientists’ perceptions of social science research operate as a cultural boundary to the inclusion of social scientists into this field. Results indicated that cultural boundaries may impede social scientists’ entry into the health research field through three modalities: (1) biomedical and clinician scientists’ unfavourable and ambivalent posture towards social science research; (2) their opposition to a resource increase for the social sciences; and (3) clinician scientists procedural assessment criteria for social science. The paper also discusses the merits and limitations of Tom Gieryn’s concept of boundary-work for studying social dynamics within the field of science.
Brian D. HodgesEmail:
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18.
Roger PielkeJr. 《Minerva》2012,50(3):339-361
The use of the phrase “basic research” as a term used in science policy discussion dates only to about 1920. At the time the phrase referred to what we today commonly refer to as applied research in support of specific missions or goals, especially agriculture. Upon the publication of Vannevar Bush’s well-known report, Science – The Endless Frontier, the phrase “basic research” became a key political symbol, representing various identifications, expectations and demands related to science policy among scientists and politicians. This paper tracks and evaluates the evolution of “basic research” as a political symbol from early in the 20th century to the present. With considerable attention having been paid to the on-going evolution of post-Cold War science policy, much less attention has focused on the factors which have shaped the dominant narrative of contemporary science policies.  相似文献   

19.
This article explores the crucial moments of scientists’ research activities when they decide to shift to a radical new domain or to perpetuate a project. We introduce what we have called the “respiration model” which describes and analyses key cognitive components which occur in this complex process. Respiration either privileges epistemic expectations which are rooted in socio-cognitive metrics of “concentration” or in a functionality-multiple horizon context which we refer to as “extension”. The respiration model accords particular attention to the elements curiosity and synergy in science.  相似文献   

20.
With this special issue, we would like to promote research on changes in the funding of the sciences, social sciences, and humanities. Since funding secures the livelihood of researchers and the means to do research, it is an indispensable condition for almost all research; as funding arrangements are undergoing dramatic changes, we think it timely to renew the science studies community’s efforts to understand the funding of research. Changes in the governance of science have garnered considerable attention from science studies and higher education research; however, the impact of these changes on the conduct and content of research has not received sufficient attention, and theoretical insights into the connections between funding practices and research practices are few and far between. The aim of this special issue is to contribute to our theoretical understanding of the changing nature of research funding and its impact on the production of scientific knowledge. More specifically, we are interested in the interplay between funding and research practices: What is the impact of institutionalised funding arrangements on the production of scientific knowledge?  相似文献   

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