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Sumrall, William J.; Schillinger, Don – Science Scope, 2003
One area of science education that is, at times, neglected involves lessons on technological concepts of these principles--designing, testing, and quality control. Instead, a focus upon science concepts from a pure, and unapplied, perspective is the norm. Thus, while students may learn the equation "mass divided by volume equals…
Descriptors: Elementary Secondary Education, Quality Control, Scientific Concepts, Science Instruction
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Schimmel, Gordon; Hand, Jon; Ellis, Art – Science Scope, 2003
A little more than one hundred years ago, Wilbur and Orville Wright began building models of airfoils and testing them in wind tunnels in their search for an efficient wing. Models continue to be used today by aerospace engineers to prove concepts and launch dreams. To celebrate the centennial of the Wright brothers' historic flight, the authors…
Descriptors: Aviation Education, Teaching Methods, Models, Science Education
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Feig, Andrew L.; Jabri, Evelyn – Biochemistry and Molecular Biology Education, 2002
The field of bioinformatics is developing faster than most biochemistry textbooks can adapt. Supplementing the undergraduate biochemistry curriculum with data-mining exercises is an ideal way to expose the students to the common databases and tools that take advantage of this vast repository of biochemical information. An integrated collection of…
Descriptors: Science Instruction, Biochemistry, Internet, Teaching Methods
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Karplus, Robert – Journal of Research in Science Teaching, 2003
In your interactions with secondary school students learning science, you have probably become aware of large differences in student ability to understand science concepts, conduct investigations, and/or solve specific problems. Some students are extremely capable, while others demonstrate peculiar and inappropriate reasoning strategies.…
Descriptors: Secondary School Teachers, Secondary School Students, Academic Ability, Piagetian Theory
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Cakmakci, Gultekin; Leach, John; Donnelly, James – International Journal of Science Education, 2006
This cross-sectional study identifies key conceptual difficulties experienced by upper secondary school and pre-service chemistry teachers (N = 191) in the area of reaction rates. Students' ideas about reaction rates were elicited through a series of written tasks and individual interviews. In this paper, students' ideas related to reaction rate…
Descriptors: Chemistry, Curriculum Development, Mathematical Models, Models
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Rowe, Wayne – Journal of Multicultural Counseling and Development, 2006
J. E. Helms's (1995b) White racial identity theory is said to resemble a pseudoscience in certain respects because its empirical support is based on the White Racial Identity Attitude Scale (J. E. Helms & R. T. Carter, 1990) in spite of consistent evidence that the instrument does not measure the constructs that the theory proposes.
Descriptors: Racial Identification, Criticism, Scientific Concepts, Beliefs
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Georgia J. Lind – American Biology Teacher, 2004
A hands on activity involving density, frequency and biomass using transects, quadrats and a local good deed by cleaning up the neighborhood while practicing important techniques in ecology is detailed. The activity is designed for KCC-STEP, whose primary goal is to expand the scientific knowledge and research experiences of their students, who…
Descriptors: Ecology, Scientific Concepts, Science Activities, Environmental Education
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Hoban, Garry F. – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2007
Slow motion animation ("slowmation") is a new teaching approach that uses a simple animation process to engage learners in creating their own comprehensive animations of science concepts. In this paper, preservice elementary teachers used slowmation, a form of stop-motion animation, to make models of science concepts and take digital…
Descriptors: Animation, Technology Uses in Education, Preservice Teachers, Elementary School Teachers
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Koliopoulos, Dimitris; Dossis, Sotiris; Stamoulis, Efthymios – Science Education Review, 2007
This study proposes an empirical classification of ways to introduce elements of the history of science into science teaching, as well as describing a special way to do so characterized by the introduction of short extracts from historical texts. The aim is to motivate students to participate in problem-solving activities and to transform their…
Descriptors: Foreign Countries, Science History, Science Education, Vignettes
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Küçüközer, Hüseyin – Science Education International, 2007
The main objective of this study was to identify prospective science teachers' conceptions on basic astronomical phenomena. A questionnaire consisting of nine open-ended questions was administered to 327 prospective science teachers. The questionnaire was constructed after extensive review of the literature and took into consideration the reported…
Descriptors: Astronomy, Preservice Teachers, Preservice Teacher Education, Science Education
Duschl, Richard A., Ed.; Schweingruber, Heidi A., Ed.; Shouse, Andrew W., Ed. – National Academies Press, 2007
What is science for a child? How do children learn about science and how to do science? Drawing on a vast array of work from neuroscience to classroom observation, "Taking Science to School" provides a comprehensive picture of what we know about teaching and learning science from kindergarten through eighth grade. By looking at a broad range of…
Descriptors: Evidence, Science Education, Teacher Education, Scientific Concepts
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Vasquez-Mireles, Selina; West, Sandra – Science Teacher, 2007
A correlated science lesson is characterized as an integrated science lesson in that it may incorporate traditionally integrated activities and use math as a tool. However, a correlated math-science lesson also: (1) has the pertinent math and science objectives aligned with state standards; and (2) teaches parallel science and math ideas equally.…
Descriptors: State Standards, Integrated Activities, Science Teachers, Mathematics Teachers
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Espinoza, Fernando – Journal of Educational Technology Systems, 2007
The laboratory-learning environment needs to become more exploratory and undergo a transformation from its traditional confirmatory role in the learning of science. This is necessary to effectively allow students to achieve scientific literacy. The availability of powerful tools for data collection and analysis provides an opportunity for students…
Descriptors: Laboratories, Science Teachers, Scientific Literacy, Science Instruction
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Kibuka-Sebitosi, Esther – Journal of Biological Education, 2007
Conducted in urban and rural schools in two provinces of South Africa, the present study reports biology learners' understanding of concepts about genetics and inheritance. Participants were Grade 11 and 12 learners, aged 15-16 years. The tools included a written questionnaire, interviews, pre- and post-paper and pencil tests and focus group…
Descriptors: Rural Schools, Focus Groups, Genetics, Foreign Countries
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Gould, Roy; Dussault, Mary; Sadler, Philip – Astronomy Education Review, 2007
The MicroObservatory network of five online telescopes has been used by middle and high school students, their teachers, and the public in all 50 states to carry out a wide variety of inquiry-driven projects. From an analysis of 475 student projects and other data, we report substantial gains in students' conceptual understanding of what…
Descriptors: Student Projects, Physical Sciences, Internet, Laboratory Equipment
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