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Rowlands, Olivia; Hokayem, Hayat; Biediger, Debbie – Science and Children, 2017
"A Framework for K-12 Science Education" emphasizes the need to teach students the core ideas of science through capitalizing on students' curiosity to discover the world around them (NRC 2012). Children's experiences vary, and for educators to engage them in the process of science, they need to think of diverse ways to nourish their…
Descriptors: Science Education, Multiple Literacies, Teaching Methods, Learning Modalities
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Strachan, Samantha L. – Science Teacher, 2017
In a 2014 report, the National Center for Education Statistics (NCES) projected that by the year 2022, minority students will outnumber non-Hispanic white students enrolled in public schools. As the diversity of the student population in the United States increases, concerns arise about student performance in science classes, especially among…
Descriptors: Science Education, Minority Group Students, Science Achievement, Underachievement
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Samples, Bob; Hammond, Bill – Science Teacher, 1985
Discusses learning modalities and learning styles in science education. Learning modalities characterize the way the brain takes in information (input) and restructures/expresses the information (output). Learning styles are ways that information is processed once it is obtained. Examples (including Kolb's "Learning-Style Inventory") are included.…
Descriptors: Cognitive Processes, Cognitive Style, Learning Modalities, Learning Strategies
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Samples, Bob – Science Teacher, 1994
Uses descriptive text, diagrams, and specific assignments to discuss the different learning modalities of students. Equipped with this knowledge and the power of instructional diversity, the joy of learning and teaching can be regained by simply transforming materials currently used in the classroom into materials that best fit a student's…
Descriptors: Cognitive Style, Elementary Secondary Education, Learning Modalities, Learning Strategies
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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
Lobb, Nancy; Roderman, Winifred Ho – 1982
The Science in Action series is designed to teach practical science concepts to special-needs students. It is intended to develop students' problem-solving skills by teaching them to observe, record, analyze, conclude, and predict. This document contains a student workbook which deals with basic principles of life science. Six separate units…
Descriptors: Auditory Perception, Biology, Educationally Disadvantaged, Elementary Education
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Gambro, John S.; Ingold, Barbara S. – Social Education, 1997
Briefly describes activities and questions designed to integrate the study of electricity into any of the specific social studies disciplines. Meeting the performance expectations of the National Standards, the activities are connected to archaeology, anthropology, geography, history, economics, political science, law, religion, philosophy,…
Descriptors: Academic Standards, Electricity, Guidelines, Interdisciplinary Approach
Fry, Heather, Ed.; Ketteridge, Steve, Ed.; Marshall, Stephanie, Ed. – 1999
This book was written to support the excellence in teaching required to bring about learning of the highest quality. Chapters seek to offer the best practical advice in teaching, learning, and assessment, as well as references to research findings. An introductory section sets out the purpose of the book and examines the changing role and place of…
Descriptors: Art Education, Business Education, Classroom Techniques, College Instruction