Results for 'Science Study and teaching'

991 found
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  1.  23
    The Concepts of Heat and Temperature: The Problem of Determining the Content for the Construction of an Historical Case Study which is Sensitive to Nature of Science Issues and Teaching–Learning Issues.K. C. de Berg - 2008 - Science & Education 17 (1):75-114.
    Historical case studies of scientific concepts are a useful medium for showing how scientific ideas originate and how they change over time. They are thus a useful tool for conveying knowledge about the nature of science. This paper focuses on the concepts of heat and temperature and discusses some issues related to choosing the content for a historical case study which incorporates not only nature of science perspectives but understandings related to what we know about the (...) and learning of these concepts. The case study is designed for first-year university chemistry students as an introduction to their study of thermodynamics. The paper includes a general chemistry textbook analysis of the heat and temperature concepts and a discussion of the caloric theory of heat, thermometry, and a brief survey of how the energy concept transformed our understanding of heat and temperature. (shrink)
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  2. Learning and teaching science as inquiry: A case study of elementary school teachers' investigations of light.Emily H. van Zee, David Hammer, Mary Bell, Patricia Roy & Jennifer Peter - 2005 - Science Education 89 (6):1007-1042.
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  3.  26
    A Case Study of Teaching Social Responsibility to Doctoral Students in the Climate Sciences.Tom Børsen, Avan N. Antia & Mirjam Sophia Glessmer - 2013 - Science and Engineering Ethics 19 (4):1491-1504.
    The need to make young scientists aware of their social responsibilities is widely acknowledged, although the question of how to actually do it has so far gained limited attention. A 2-day workshop entitled “Prepared for social responsibility?” attended by doctoral students from multiple disciplines in climate science, was targeted at the perceived needs of the participants and employed a format that took them through three stages of ethics education: sensitization, information and empowerment. The workshop aimed at preparing doctoral students (...)
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  4. Learning and teaching as emergent features of informal settings: An ethnographic study in an environmental action group.Leanna Boyer & Wolff‐Michael Roth - 2006 - Science Education 90 (6):1028-1049.
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  5.  28
    A study and critique of the teaching of the history of science and technology. Interim report by the committee on undergraduate education of the history of science society. [REVIEW]Harold Issadore Sharlin, Stephen G. Brush, Harold L. Burstyn, Sandra Herbert, Michael S. Mahoney & Nathan Sivin - 1975 - Annals of Science 32 (1):55-70.
    The history of science and technology has been a scholarly discipline with little attention given to the special needs of undergraduate teaching. What needs to be done to transform a discipline to an undergraduate subject? Suggestions include using the relation between science and technology as well as the role of interpreters in formulation of the popular world view. Relations with science and history departments are considered. Curriculum materials are surveyed with some recommendations for correcting deficiencies.
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  6. Hegel and the Sciences.ed. by Robert S. Cohen and Marx W. Wartofsky. (Boston Studies in the Philosophy of Science & 64) - 1984.
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  7. Informing, teaching or propagandising? Combining Environmental and Science Studies for undergraduates.Sean Johnston & Mhairi Harvey - 2002 - Discourse: Learning and Teaching in Philosophical and Religious Studies 1 (2):130-140.
    This article discusses experiences in the integrated teaching of Environmental Studies and Science Studies in a generalist curriculum at a university campus in Scotland. At the University of Glasgow Crichton Campus, a mixed curriculum has been developed to combine coherently Environmental and Science Studies, perhaps the first such curriculum in the UK and equally uncommon in America. The Crichton curricum is intentionally multi-disciplinary, drawing closely on the successful nineteenth-century Scottish model exported to America. This generalist approach, emphasising (...)
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  8.  28
    Introduction of Interdisciplinary Teaching: Two Case Studies: Commentary on “Teaching Science, Technology, and Society to Engineering Students: A Sixteen Year Journey”.Hartwig Spitzer - 2013 - Science and Engineering Ethics 19 (4):1451-1454.
    Interdisciplinary courses on science, engineering and society have been successfully established in two cases, at Bilkent University, Ankara, Turkey, and at the University of Hamburg, Germany. In both cases there were institutional and perceptual barriers that had to be overcome in the primarily disciplinary departments. The ingredients of success included a clear vision of interdisciplinary themes and didactics, and the exploitation of institutional opportunities. Haldun M. Ozaktas in Ankara used the dynamics of an accreditation process to establish courses on (...)
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  9. An epistemological approach to modeling: Cases studies and implications for science teaching.Gérard Sensevy, Andrée Tiberghien, Jérôme Santini, Sylvain Laubé & Peter Griggs - 2008 - Science Education 92 (3):424-446.
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  10.  5
    Teaching Secondary Science: Theory and Practice.Geoff Woolcott & Robert Whannell (eds.) - 2017 - Cambridge University Press.
    Teaching Secondary Science: Theory and Practice provides a dynamic approach to preparing preservice science teachers for practice. Divided into two parts - theory and practice - the text allows students to first become confident in the theory of teaching science before showing how this theory can be applied to practice through ideas for implementation, such as sample lesson plans. These examples span a variety of age levels and subject areas, allowing preservice teachers to adapt each (...)
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  11.  20
    Democracy's Value.Sterling Professor of Political Science and Henry R. Luce Director of the MacMillan Center for International and Area Studies Ian Shapiro, Ian Shapiro, Casiano Hacker-Cordón & Russell Hardin (eds.) - 1999 - Cambridge University Press.
    Democracy has been a flawed hegemony since the fall of communism. Its flexibility, its commitment to equality of representation, and its recognition of the legitimacy of opposition politics are all positive features for political institutions. But democracy has many deficiencies: it is all too easily held hostage by powerful interests; it often fails to advance social justice; and it does not cope well with a number of features of the political landscape, such as political identities, boundary disputes, and environmental crises. (...)
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  12. Science and Speculation Studies in Hellenistic Theory and Practice /Edited by Jonathan Barnes... [Et Al.]. --. --.Jonathan Barnes & France) Hellenistic Philosophy and Science Paris - 1982 - Cambridge University Press Editions de la Maison des Sciences de l'Homme, 1982.
  13. The Metaphysics of Mulla Sadra Kitab Al-Masha Ir = the Book of Metaphysical Prehensions.Muhammad ibn Ibrahim Sadr al-din Shirazi, Parviz Morewedge, Henry Corbin, Society for the Study of Islamic Philosophy and Science & Institute for Cultural Studies - 1992
  14.  6
    Feminist science studies: a new generation.Maralee Mayberry, Banu Subramaniam & Lisa H. Weasel (eds.) - 2001 - New York: Routledge.
    This essential text contains contributions from a wide range of fields and provides role models for feminist scientists. Including chapters from scientists and feminist scholars, the book presents a wide range of feminist science studies scholarship-from autobiographical narratives and experimental and theoretical projects, to teaching tools and courses and community-based projects.
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  15.  55
    Researching and teaching the ethics and social implications of emerging technologies in the laboratory.Joan McGregor & Jameson M. Wetmore - 2009 - NanoEthics 3 (1):17-30.
    Ethicists and others who study and teach the social implications of science and technology are faced with a formidable challenge when they seek to address “emerging technologies.” The topic is incredibly important, but difficult to grasp because not only are the precise issues often unclear, what the technology will ultimately look like can be difficult to discern. This paper argues that one particularly useful way to overcome these difficulties is to engage with their natural science and engineering (...)
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  16.  37
    How to learn about teaching: An evolutionary framework for the study of teaching behavior in humans and other animals.Michelle Ann Kline - 2015 - Behavioral and Brain Sciences 38:1-70.
    The human species is more reliant on cultural adaptation than any other species, but it is unclear how observational learning can give rise to the faithful transmission of cultural adaptations. One possibility is that teaching facilitates accurate social transmission by narrowing the range of inferences that learners make. However, there is wide disagreement about how to define teaching, and how to interpret the empirical evidence for teaching across cultures and species. In this article I argue that disputes (...)
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  17.  29
    Science education for citizenship: teaching socio-scientific issues.Mary Ratcliffe - 2003 - Philadelphia: Open University Press. Edited by Marcus Grace.
    Explores the teaching and learning of issues relating to the impact of science in society. This title offers practical guidance in devising learning goals and suitable learning and assessment strategies. It helps teachers to provide students with the skills and understanding needed to address these multi-faceted issues.
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  18.  34
    Good Science, Bad Science, Pseudoscience, and Just Plain Bunk: How to Tell the Difference.Peter Daempfle - 2012 - Lanham: Rowman & Littlefield Publishers.
    Good Science, Bad Science, Pseudoscience, and Just Plain Bunk teaches readers to think like scientists—to critically evaluate the truth of scientific claims. Filled with provocative real-life examples, from the effects of Bisphenol-A to examining some of the alleged causes of cancer, the book helps readers build their tools of scientific literacy.
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  19.  7
    Good Science, Bad Science, Pseudoscience, and Just Plain Bunk: How to Tell the Difference.Peter Daempfle - 2012 - Lanham: Rowman & Littlefield Publishers.
    Good Science, Bad Science, Pseudoscience, and Just Plain Bunk teaches readers to think like scientists—to critically evaluate the truth of scientific claims. Filled with provocative real-life examples, from the effects of Bisphenol-A to examining some of the alleged causes of cancer, the book helps readers build their tools of scientific literacy.
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  20.  7
    Ethical Issues in Human Genetics: Genetic Counseling and the Use of Genetic Knowledge.Henry David Aiken, Bruce Hilton, the Life Sciences John E. Fogarty International Center for Advanced Study in the Health Sciences & Ethics Institute of Society - 1973 - Springer.
    "The Bush administration and Congress are in concert on the goal of developing a fleet of unmanned aircraft that can reduce both defense costs and aircrew losses in combat by taking on at least the most dangerous combat missions. Unmanned combat aerial vehicles (UCAVs) will be neither inexpensive enough to be readily expendable nor-- at least in early development-- capable of performing every combat mission alongside or in lieu of manned sorties. Yet the tremendous potential of such systems is widely (...)
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  21.  26
    Social Studies of Science and Science Teaching.Gábor Kutrovátz & Gábor Áron Zemplén - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1119-1141.
    If any nature of science perspective is to be incorporated in science-related curricula, it is hard to imagine a satisfactory didactic toolkit that neglects the social studies of science, the academic field of study of the institutional structures and networks of science. Knowledge production takes place in a world populated by actors, instruments, and ideas, and various epistemic cultures are responsible for providing the concepts, abstractions, and techniques that slowly trickle down the information pathways to (...)
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  22. The dynamic interactions among beliefs, role metaphors, and teaching practices: A case study of teacher change.Carol Briscoe - 1991 - Science Education 75 (2):185-199.
     
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  23.  13
    Beyond Orientalism: Essays on Cross-Cultural Encounter.Fred Reinhard Dallmayr & Packey J. Dee Professor of Philosophy and Political Science Fred Dallmayr - 1996 - SUNY Press.
    Explores some steps toward non-assimilative encounters in the "global village.".
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  24.  27
    Border Crossings: Toward a Comparative Political Theory.Fred Reinhard Dallmayr & Packey J. Dee Professor of Philosophy and Political Science Fred Dallmayr - 1999 - Global Encounters: Studies in.
    Comparative political theory is at best an embryonic and marginalized endeavor. As practiced in most Western universities, the study of political theory generally involves a rehearsal of the canon of Western political thought from Plato to Marx. Only rarely are practitioners of political thought willing (and professionally encouraged) to transgress the canon and thereby the cultural boundaries of North America and Europe in the direction of genuine comparative investigation. Border Crossings presents an effort to remedy this situation, fully launching (...)
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  25.  5
    Connecting science, technology, and society in the education of citizens.John J. Patrick - 1985 - Boulder, Colo.: ERIC Clearinghouse for Social Studies/Social Science Education. Edited by Richard C. Remy.
    Designed to help educators address science-related social issues, this publication considers: (1) major challenges associated with science-related social issues; (2) the extent to which these challenges are being met; (3) ways in which educators can improve the education of citizens in science, technology, and social issues; and (4) promising practices that can contribute to building connections between social studies and science curricula. Three challenges outlined in the first of five sections include: (1) informing citizens about complex (...)
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  26.  21
    Sustainable Development as a Challenge for Undergraduate Students: The Module “Science Bears Responsibility” in the Leuphana Bachelor’s Programme: Commentary on “A Case Study of Teaching Social Responsibility to Doctoral Students in the Climate Sciences”.Gerd Michelsen - 2013 - Science and Engineering Ethics 19 (4):1505-1511.
    The Leuphana Semester at Leuphana University Lüneburg, together with the module “Science bears responsibility” demonstrate how innovative methods of teaching and learning can be combined with the topic of sustainable development and how new forms of university teaching can be introduced. With regard to module content, it has become apparent that, due to the complexity of the field of sustainability, a single discipline alone is unable to provide analyses and solutions. If teaching in higher education is (...)
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  27.  13
    Science, power, and subjectivity: Vaccine (mandate) resistance and ‘truth telling’ in times of right-wing populism.Jesse Bazzul - 2023 - Educational Philosophy and Theory 55 (12):1387-1399.
    This paper employs Michel Foucault’s History of Sexuaity: Confessions of the Flesh to shed light on the perplexing phenomenon of vaccine (mandate) resistance. It argues that vaccine (mandate) resistance, while seemingly irresponsible and selfish, is entangled with the same modes of ‘truth-telling’ that have been part of the basic structure of modern Western governance for centuries. The paper begins by introducing the problem of vaccinate (mandate) resistance as a pedagogical problem for educators who want to teach social responsibility as informed (...)
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  28.  78
    Bangs, Crunches, Whimpers, and Shrieks: Singularities and Acausalities in Relativistic Spacetimes.John Earman & Professor of the History and Philosophy of Science John Earman - 1995 - Oxford University Press.
    Indeed, this is the first serious book-length study of the subject by a philosopher of science.
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  29.  18
    The Double-Edged Helix: Social Implications of Genetics in a Diverse Society.Joseph S. Alper, Catherine Ard, Adrienne Asch, Peter Conrad, Jon Beckwith, American Cancer Society Research Professor of Microbiology and Molecular Genetics Jon Beckwith, Harry Coplan Professor of Social Sciences Peter Conrad & Lisa N. Geller - 2002
    The rapidly changing field of genetics affects society through advances in health-care and through implications of genetic research. This study addresses the impacts of new genetic discoveries and technologies on different segments of today's society. The book begins with a chapter on genetic complexity, and subsequent chapters discuss moral and ethical questions arising from today's genetics from the perspectives of health care professionals, the media, the general public, special interest groups and commercial interests.
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  30. Science Teaching: The Role of History and Philosophy of Science.Michael R. Matthews - 1994 - Routledge.
    History, Philosophy and Science Teaching argues that science teaching and science teacher education can be improved if teachers know something of the history and philosophy of science and if these topics are included in the science curriculum. The history and philosophy of science have important roles in many of the theoretical issues that science educators need to address: the goals of science education; what constitutes an appropriate science curriculum for (...)
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  31.  5
    Science studies: probing the dynamics of scientific knowledge.Sabine Maasen & Matthias Winterhager (eds.) - 2001 - Bielefeld: Transcript Verlag.
    How can we understand the intensifying interactions of science and society? The answers are found in part in the interdisciplinary field called science studies. This field provides us with a rich inventory of analytical approaches. It helps us explore science as a practice, a subsystem, a culture, and an institution. Its observation is that science today is part and parcel of what has come to be known as "knowledge society." Nine exemplary studies that inquire into, or (...)
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  32.  2
    Experimentation in the Sciences: Comparative and Long-Term Historical Research on Experimental Practice.Catherine Allamel-Raffin, Jean-Luc Gangloff & Yves Gingras (eds.) - 2024 - Springer Nature Switzerland.
    This book takes a novel approach by highlighting comparative and long-term historical perspectives on experimental practice. The juxtaposition of accounts of natural, social, and medical experimentation is very enlightening, especially because the authors put the emphasis on the different kinds of objects of experimentation (physical matter, chemical reagents, social groups, organizations, sick individuals, archeological remains) and demonstrate how much the kinds of objects matter for the practice of experimentation, its methods, tools, and methodologies. Taken together, the chapters raise several fascinating (...)
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  33.  7
    Contexts and Prevalence of Classroom Discussion in Nordic Social Science Teaching: A Large N Observational Study.Jonas Henau Teglbjærg - 2024 - Journal of Social Studies Research 48 (2):114-131.
    Classroom discussion constitutes a unique opportunity for student deliberation and is often believed to be a desirable attribute of Social Science teaching. Yet, despite its potential, large scale observational research on discussion in Nordic classrooms is scarce. To address this shortcoming, the present study investigated the prevalence and contexts of classroom discussion in a Nordic sample of 375 teaching segments (each lasting 15 min). The sample was gathered through video observations, and discussion was measured by an (...)
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  34.  8
    capacity for, and exercise of, sound judgment. While I think this represents a big improvement over the other accounts I have discussed, it is not hard to see that it.Teaching Wisdom - forthcoming - Philosophical Studies Series.
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  35.  57
    Cognition, Construction of Knowledge, and Teaching.Ernst von Glasersfeld - 1989 - Synthese 80 (1):121 - 140.
    The existence of objective knowledge and the possibility of communicating it by means of language have traditionally been taken for granted by educators. Recent developments in the philosophy of science and the historical study of scientific accomplishments have deprived these presuppositions of their former plausibility. Sooner or later, this must have an effect on the teaching of science. In this paper I am presenting a brief outline of an alternative theory of knowing that takes into account (...)
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  36.  81
    Cognition, construction of knowledge, and teaching.Ernst Glasersfeld - 1989 - Synthese 80 (1):121-140.
    The existence of objective knowledge and the possibility of communicating it by means of language have traditionally been taken for granted by educators. Recent developments in the philosophy of science and the historical study of scientific accomplishments have deprived these presuppositions of their former plausibility. Sooner or later, this must have an effect on the teaching of science. In this paper I am presenting a brief outline of an alternative theory of knowing that takes into account (...)
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  37.  13
    Science, society, and sustainability: education and empowerment for an uncertain world.Donald Gray, Laura Colucci-Gray & Elena Camino (eds.) - 2009 - New York: Routledge.
    Recent work in science and technological studies has provided a clearer understanding of the way in which science functions in society and the interconnectedness among different strands of science, policy, economy and environment. It is well acknowledged that a different way of thinking is required in order to address problems facing the global community, particularly in relation to issues of risk and uncertainty, which affect humanity as a whole. However, approaches to education in science tend to (...)
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  38.  61
    Science, Philosophy and Physical Geography.Robert Inkpen - 2005 - Routledge.
    This accessible and engaging text explores the relationship between philosophy, science and physical geography. It addresses an imbalance that exists in opinion, teaching and to a lesser extent research, between a philosophically enriched human geography and a perceived philosophically ignorant physical geography. Science, Philosophy and Physical Geography , challenges the myth that there is a single self-evident scientific method, that can and is applied in a straightforward manner by physical geographers. It demonstrates the variety of alternative philosophical (...)
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  39. A study of science teaching self‐efficacy and outcome expectancy beliefs of teachers in India.Josephine M. Shireen Desouza, William J. Boone & Ozgul Yilmaz - 2004 - Science Education 88 (6):837-854.
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  40. Faculty Teaching Performance Evaluation in Higher Science Education: Issues and Implications (A “Cross‐Cultural” Case Study).Uri Zoller - 1992 - Science Education 76 (6):673-684.
  41.  26
    How to Teach History of Philosophy and Science: A Digital Based Case Study.Andrea Reichenberger - 2018 - Transversal: International Journal for the Historiography of Science 5:84-99.
    The following article describes a pilot study on the possible integration of digital historiography into teaching practice. It focuses on Émilie Du Châtelet’s considerations of space and time against the background of Leibniz’s program of analysis situs. Historians have characterized philosophical controversies on space and time as a dichotomy between the absolute and relational concepts of space and time. In response to this, the present case study pursues two aims: First, it shows that the common portrayal simplifies (...)
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  42.  53
    History and Philosophy of Science and the Teaching of Evolution: Students’ Conceptions and Explanations.Kostas Kampourakis & Ross H. Nehm - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 377-399.
    A large body of work in science education indicates that evolution is one of the least understood and accepted scientific theories. Although scholarship from the history and philosophy of science (HPS) has shed light on many conceptual and pedagogical issues in evolution education, HPS-informed studies of evolution education are also characterized by conceptual weaknesses. In this chapter, we critically review such studies and find that some work lacks historically accurate characterizations of student ideas (preconceptions and misconceptions). In addition, (...)
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  43.  19
    Authorship Not Taught and Not Caught in Undergraduate Research Experiences at a Research University.Lauren E. Abbott, Amy Andes, Aneri C. Pattani & Patricia Ann Mabrouk - 2020 - Science and Engineering Ethics 26 (5):2555-2599.
    This grounded study investigated the negotiation of authorship by faculty members, graduate student mentors, and their undergraduate protégés in undergraduate research experiences at a private research university in the northeastern United States. Semi-structured interviews using complementary scripts were conducted separately with 42 participants over a 3 year period to probe their knowledge and understanding of responsible authorship and publication practices and learn how faculty and students entered into authorship decision-making intended to lead to the publication of peer-reviewed technical papers. (...)
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  44.  2
    The Tools of Science: Ideas and Activities for Guiding Young Scientists.Jean Stangl - 1989 - Tab Books.
  45. Science teaching as knowledgability: A case study of knowing and learning during coteaching.Wolff‐Michael Roth - 1998 - Science Education 82 (3):357-377.
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  46.  7
    The Teaching and Study of the History of Science at the University of California.George Sarton - 1933 - Isis 20:6-14.
  47.  8
    The Teaching and Study of the History of Science at the University of California.George Sarton - 1933 - Isis 20 (1):6-14.
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  48.  11
    A Study on the Attitudes and Opinions of Engineering Students From the University of Baja California, Mexico, on Science, Technology, and Society.Michael Schorr, Juan Jose Sevilla Garcia & Maria Amparo Oliveros Ruiz - 2010 - Bulletin of Science, Technology and Society 30 (2):113-118.
    A proposal is presented for the incorporation of the concepts of STS into the teaching of science and technology at the Faculty of Engineering, Mexicali Campus, of the University of Baja California. The method outlined for the development of research and the application of the “Opinions Questionnaire on Science, Technology and Society” is described. This method allows an assessment of the views and attitudes of students and teachers on STS issues to identify their strong and weak points (...)
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  49.  97
    Can studies of autism teach us about consciousness of the physical and the mental?Simon Baron-Cohen - 1999 - Philosophical Explorations 2 (3):175-188.
    Most scientists and theorists concerned with the problem of consciousness focus on our consciousness of the physical world (our sensations, feelings, and awareness). In this paper I consider our consciousness of the mental world (our thoughts about thoughts, intentions, wishes, and emotions).The argument is made that these are two distinct forms of consciousness, the evidence for this deriving from studies of autism. Autism is a severe childhood psychiatric condition in which individuals may be conscious of the physical world but not (...)
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  50.  9
    The parental brain: A neural framework for study of teaching in humans and other animals.Hesun Erin Kim, Adrianna Torres-Garcia & James E. Swain - 2015 - Behavioral and Brain Sciences 38.
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