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McDermott, Mark – Science Teacher, 2010
Writing-to-learn activities are designed to use writing as a process in which students generate and clarify understanding of scientific concepts for themselves, rather than simply communicating with a teacher for evaluation. Instead of having students parrot science facts back to the instructor, writing-to-learn activities focus on the production…
Descriptors: Writing Assignments, Writing Across the Curriculum, Scientific Concepts, Biology
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Sweet, Sharon S. – Educational Leadership, 1998
As one high school teacher found, allowing students to use preferred learning modalities can increase their enthusiasm, raise their achievement levels, and foster growth in other intelligences. This article shows how two students demonstrated their mastery of nuclear and organic chemistry by using kinesthetic and spatial problem-solving…
Descriptors: Chemistry, Cognitive Style, High Schools, Kinesthetic Perception
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Strauss, Michael J.; Levine, Shellie H. – Journal of Chemical Education, 1985
Extensive and detailed overhead projections, a complete set of reduced overhead miniatures in booklet form for each student, and tape recordings are used in a lecture setting to capitalize on the learning preferences of both visual and auditory learners. The use of the strategy in introductory chemistry is described. (JN)
Descriptors: Aural Learning, Chemistry, College Science, Higher Education
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Habraken, Clarisse L. – Journal of Science Education and Technology, 2004
Today's "out-of-school learning" is dominated by PC games, videos, and TV. These media provide children with optimal conditions for nurturing their visuospatial intelligence. In "chemistry" and biochemistry, over the past 125 years, thinking has shifted from the "logical-mathematical" to the "logical-visuospatial." In chemistry visuospatial…
Descriptors: Chemistry, Science Instruction, Spatial Ability, Computers
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Cetera, Margaret M. – Journal of College Science Teaching, 1983
Presents a critical review of laboratory adaptations for visually impaired students in general science, biology, chemistry, and physics over the past 30 years. Learning modes used by these students (since these are considered when making adaptations) and ways students benefit working independently in a science laboratory are discussed. (JN)
Descriptors: Biology, Chemistry, College Science, General Science