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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 2,701 to 2,715 of 12,293 results
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Hand, Brian; Choi, Aeran – Research in Science Education, 2010
This study was designed to examine students' use of multiple modal representations within their written arguments as a consequence of completing a series of investigations of an organic chemistry laboratory course. One hundred and eleven students from a major Midwestern university were involved in using the Science Writing Heuristic (SWH) approach…
Descriptors: Organic Chemistry, Science Laboratories, College Science, College Students
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Klein, Perry D.; Kirkpatrick, Lori C. – Research in Science Education, 2010
Since the 1990s, researchers have increasingly drawn attention to the multiplicity of representations used in science. This issue of "RISE" advances this line of research by placing such representations at the centre of science teaching and learning. The authors show that representations do not simply transmit scientific information; they are…
Descriptors: Researchers, Natural Language Processing, Science Education, Multimedia Instruction
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Anthony, Robert J.; Tippett, Christine D.; Yore, Larry D. – Research in Science Education, 2010
Science literacy leading to fuller and informed participation in the public debate about science, technology, society, and environmental (STSE) issues that produce justified decisions and sustainable actions is the shared and central goal of the Pacific CRYSTAL Project. There is broad agreement by science education researchers that learners need…
Descriptors: Research and Development, Science Programs, Visual Literacy, Science Teachers
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Hubber, Peter; Tytler, Russell; Haslam, Filocha – Research in Science Education, 2010
A large body of research in the conceptual change tradition has shown the difficulty of learning fundamental science concepts, yet conceptual change schemes have failed to convincingly demonstrate improvements in supporting significant student learning. Recent work in cognitive science has challenged this purely conceptual view of learning,…
Descriptors: Language Role, Cognitive Psychology, Science Instruction, Scientific Concepts
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Waldrip, Bruce; Prain, Vaughan; Carolan, Jim – Research in Science Education, 2010
There is growing research interest in both the challenges and opportunities learners face in trying to represent scientific understanding, processes and reasoning. These challenges are increasingly well understood by researchers, including integrating verbal, visual and mathematical modes in science discourse, and making strong conceptual links…
Descriptors: Science Education, Secondary School Science, Educational Improvement, Science Instruction
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Lee, Chin-Quen; She, Hsiao-Ching – Research in Science Education, 2010
This article reports research from a 3 year digital learning project to unite conceptual change and scientific reasoning in the learning unit of combustion. One group of students had completed the course combining conceptual change and scientific reasoning. The other group of students received conventional instruction. In addition to the…
Descriptors: Concept Formation, Science Instruction, Thinking Skills, Science Process Skills
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Wiles, Jason R. – Science Education Review, 2010
The teaching and learning of biological evolution has been beset by a host of challenges ranging from pedagogical obstacles to social controversy. These include two distinctive sets of problems: one arising from the fact that many evolutionary concepts may seem counterintuitive to students, and the other stemming from objections rooted in…
Descriptors: Evolution, Foreign Countries, North Americans, Science Education
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Cherif, Abour H.; Adams, Gerald E.; Morabito, David; Aron, Robert; Dunning, Jeremy; Gialamas, Stefanos – Science Education Review, 2010
The recent missions to Mars have produced a mass of data and information in all forms and have forced the minds of many people world-wide to rethink their own perspectives on life itself. This drama unfolding about 35 million miles from Earth, and digitally on our TV screens, is offering a growing reservoir for teachable moments. The curiosity and…
Descriptors: Space Exploration, Astronomy, Educational Opportunities, Teaching Conditions
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Clement, Pierre; Mouelhi, Lassaad; Kochkar, Momahed; Valanides, Nicos; Nisiforou, Olia; Thiaw, Seyni Mame; Ndiaye, Valdiodio; Jeanbart, Paula; Horvath, Daniel; Ferreira, Claudia; Carvalho, Graca S. – Science Education International, 2010
In the human brain, the neuronal pathways are networks which support our learning, memory and thought, and which work with permanent feedback. However, only 19% of illustrations of these neuronal pathways, in the 55 analysed school textbooks coming from 15 countries, were showing feedbacks. The neuronal pathways related to movements were generally…
Descriptors: Feedback (Response), Textbook Content, Textbooks, Ideology
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Dolan, Erin – CBE - Life Sciences Education, 2010
This feature is designed to point readers of this journal to current articles of interest in life sciences education as well as more general and noteworthy publications in education research. URLs are provided for the abstracts or full text of articles. For articles listed as "Abstract available," full text may be accessible at the indicated URL…
Descriptors: Biological Sciences, Journal Articles, Information Sources, Bibliographies
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Liu, Dennis – CBE - Life Sciences Education, 2010
Biology is well suited for mathematical description, from the perfect geometry of viruses, to equations that describe the flux of ions across cellular membranes, to computationally intensive models for protein folding. For this short Web review, however, the author focuses on how mathematics helps biologists sort, evaluate, and draw conclusions…
Descriptors: Computer Uses in Education, Teaching Methods, Biology, Science Instruction
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Marsteller, Pat; de Pillis, Lisette; Findley, Ann; Joplin, Karl; Pelesko, John; Nelson, Karen; Thompson, Katerina; Usher, David; Watkins, Joseph – CBE - Life Sciences Education, 2010
In response to the call of "BIO2010" for integrating quantitative skills into undergraduate biology education, 30 Howard Hughes Medical Institute (HHMI) Program Directors at the 2006 HHMI Program Directors Meeting established a consortium to investigate, implement, develop, and disseminate best practices resulting from the integration of math and…
Descriptors: Biology, Best Practices, Program Implementation, Barriers
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Maloney, Mark; Parker, Jeffrey; LeBlanc, Mark; Woodard, Craig T.; Glackin, Mary; Hanrahan, Michael – CBE - Life Sciences Education, 2010
Recent advances involving high-throughput techniques for data generation and analysis have made familiarity with basic bioinformatics concepts and programs a necessity in the biological sciences. Undergraduate students increasingly need training in methods related to finding and retrieving information stored in vast databases. The rapid rise of…
Descriptors: Biology, Information Science, Undergraduate Study, Information Science Education
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McCarthy, Maeve L.; Fister, K. Renee – CBE - Life Sciences Education, 2010
The manuscript outlines the impact that our National Science Foundation Interdisciplinary Training for Undergraduates in Biological and Mathematical Sciences program, BioMaPS, has had on the students and faculty at Murray State University. This interdisciplinary program teams mathematics and biology undergraduate students with mathematics and…
Descriptors: Undergraduate Students, Academic Achievement, Biology, Interdisciplinary Approach
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Usher, David C.; Driscoll, Tobin A.; Dhurjati, Prasad; Pelesko, John A.; Rossi, Louis F.; Schleiniger, Gilberto; Pusecker, Kathleen; White, Harold B. – CBE - Life Sciences Education, 2010
The "BIO2010" report recommended that students in the life sciences receive a more rigorous education in mathematics and physical sciences. The University of Delaware approached this problem by (1) developing a bio-calculus section of a standard calculus course, (2) embedding quantitative activities into existing biology courses, and (3) creating…
Descriptors: Biology, Undergraduate Study, Science Education, College Science
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