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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1,351 to 1,365 of 270,435 results
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Nielsen, Kristian H. – Science & Education, 2013
Communication is an important part of scientific practice and, arguably, may be seen as constitutive to scientific knowledge. Yet, often scientific communication gets cursory treatment in science studies as well as in science education. In Nature of Science (NOS), for example, communication is rarely mentioned explicitly, even though, as will be…
Descriptors: Scientific Principles, Communication (Thought Transfer), Science Education, Language
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Duschl, Richard A.; Grandy, Richard – Science & Education, 2013
Our focus is on the effects that dated ideas about the nature of science (NOS) have on curriculum, instruction and assessments. First we examine historical developments in teaching about NOS, beginning with the seminal ideas of James Conant. Next we provide an overview of recent developments in philosophy and cognitive sciences that have shifted…
Descriptors: Scientific Principles, Direct Instruction, Science Instruction, Educational History
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Yasri, Pratchayapong; Arthur, Shagufta; Smith, Mike U.; Mancy, Rebecca – Science & Education, 2013
Understanding how individuals view the relationship between science and religion shows promise for explaining a range of aspects of teaching and learning in science. Several taxonomies, consisting of different views by which people relate science and religion, can be found in the philosophical literature. However, most of the science education…
Descriptors: Science and Society, Sciences, Religion, Science Education
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Bedford, Daniel; Cook, John – Science & Education, 2013
Agnotology is a term that has been used to describe the study of ignorance and its cultural production (Proctor in "Agnotology: the making and unmaking of ignorance." Stanford University Press, Stanford, 2008). For issues that are contentious in the societal realm, though largely not in the scientific realm, such as human evolution or…
Descriptors: Climate, Science Instruction, Misconceptions, Science and Society
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Kleinman, Daniel Lee; Feinstein, Noah Weeth; Downey, Greg – Science & Education, 2013
Since the 1980s, scholars and others have been engaged in a lively debate about the virtues and dangers of mingling commerce with university science. In this paper, we contend that the commercialization of academic science, and higher education more broadly, are best understood as pieces of a larger story. We use two cases of institutional change…
Descriptors: Commercialization, Sciences, Higher Education, Neoliberalism
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Tsaparlis, Georgios; Hartzavalos, Sotiris; Nakiboglu, Canan – Science & Education, 2013
Nuclear science has uses and applications that are relevant and crucial for world peace and sustainable development, so knowledge of its basic concepts and topics should constitute an integral part of civic scientific literacy. We have used two newspaper articles that deal with uses of nuclear science that are directly relevant to life, society,…
Descriptors: Knowledge Level, Nuclear Energy, Nuclear Physics, Newspapers
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Wan, Zhi Hong; Wong, Siu Ling; Zhan, Ying – Science & Education, 2013
Drawing from the phenomenographic perspective, this study investigated Chinese science teacher educators' conceptions of teaching nature of science (NOS) to preservice science teachers through two semi-structured interviews. The subjects were twenty-four science teacher educators in the developed regions in China. Five key dimensions emerged…
Descriptors: Foreign Countries, Phenomenology, Science Teachers, Teacher Educators
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Levrini, Olivia; Fantini, Paola – Science & Education, 2013
This paper aims at supporting the claim that some forms of hyper-simplification, by making physics seem easy, are at risk of dangerously distorting the content as well as the process of learning physics. The paper presents examples of dangerous simplifications in the teaching of quantum physics. Then, examples of productive forms of complexity are…
Descriptors: Physics, Secondary School Science, Science Instruction, Difficulty Level
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Kendig, Catherine – Science & Education, 2013
Hasok Chang ("Sci Educ" 20:317-341, 2011) shows how the recovery of past experimental knowledge, the physical replication of historical experiments, and the extension of recovered knowledge can increase scientific understanding. These activities can also play an important role in both science and history and philosophy of science…
Descriptors: Biological Sciences, Science History, Science Education, Science Education History
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Patronis, Tasos; Spanos, Dimitris – Science & Education, 2013
This paper proposes a setting of "exemplarity" different from the already known one, which is basically a Romanticist philosophical setting. Our general aim is to describe and explore the nature of some "exemplary themes" and "interpretive models" in advanced mathematics teaching and learning. In order to do so, we…
Descriptors: Mathematics Education, Educational Theories, Mathematical Concepts, Mathematics Instruction
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Legates, David R.; Soon, Willie; Briggs, William M. – Science & Education, 2013
Agnotology has been defined in a variety of ways including "the study of ignorance and its cultural production" and "the study of how and why ignorance or misunderstanding exists." More recently, however, it has been posited that agnotology should be used in the teaching of climate change science. But rather than use agnotology…
Descriptors: Science Instruction, Climate, Students, Controversial Issues (Course Content)
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Hodge, Jonathan – Science & Education, 2013
This essay is an interpretation of Charles Darwin's "Origin of Species". It focuses on the contents of the "Origin" as Darwin intended them to be understood and the background to the work, thus revealing the originality (or otherwise) of the work.
Descriptors: Evolution, Books, Science History
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Abd-El-Khalick, Fouad – Science & Education, 2013
The ubiquitous goals of helping precollege students develop informed conceptions of nature of science (NOS) and experience inquiry learning environments that progressively approximate authentic scientific practice have been long-standing and central aims of science education reforms around the globe. However, the realization of these goals…
Descriptors: Science Teachers, Science Instruction, Scientific Principles, Pedagogical Content Knowledge
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Vilches, Amparo; Gil-Pérez, Daniel – Science & Education, 2013
The International Union of Pure and Applied Chemistry (IUPAC) and UNESCO have proposed that the International Year of Chemistry, 2011, should make a strong educational contribution to the goals of the UN Decade of Education for Sustainable Development. This emphasis is absolutely necessary because education for sustainability remains practically…
Descriptors: Science Instruction, Chemistry, Sustainability, Scientific Concepts
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van Dijk, Esther M. – Science & Education, 2013
The development of an understanding of the nature of science is generally assumed to be an important aspect of science communication with respect to the enhancement of scientific literacy. At present, a general characterization of the nature of science is still lacking and probably such a characterization will not be achievable. The overall aim of…
Descriptors: Scientific Principles, Conservation Education, Biology, Biodiversity
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