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Christensen, Dana; Lombardi, Doug – Science & Education, 2020
Computational thinking is a contemporary science and engineering practice that has been introduced to the US science classrooms due to its emphasis in the "Next Generation Science Standards" (NGSS). However, including computational thinking into science instruction may be challenging. Therefore, for biological evolution (an essential…
Descriptors: Biology, Evolution, Thinking Skills, Teaching Methods
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Buxner, Sanlyn R. – Journal of Astronomy & Earth Sciences Education, 2014
The nature of science is a prevalent theme across United States national science education standards and frameworks as well as other documents that guide formal and informal science education reform. To support teachers in engaging their students in authentic scientific practices and reformed teaching strategies, research experiences for teachers…
Descriptors: Scientific Principles, Inquiry, Science Education, Qualitative Research
O'Brien, Thomas – National Science Teachers Association (NJ3), 2011
How can water and a penny demonstrate the power of mathematics and molecular theory? Do spelling and punctuation really matter to the human brain? The third of Thomas O'Brien's books designed for 5-12 grade science teachers, "Even More Brain-Powered Science" uses the questions above and 11 other inquiry-oriented discrepant events--experiments or…
Descriptors: Learning Theories, Textbooks, Scientific Principles, Brain
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Lark, Amy; Richmond, Gail; Pennock, Robert T. – American Biology Teacher, 2014
New science standards and reform recommendations spanning grades K--16 focus on a limited set of key scientific concepts from each discipline that all students should know. They also emphasize the integration of these concepts with science practices so that students learn not only the "what" of science but also the "how" and…
Descriptors: Evolution, Classroom Techniques, Case Studies, Scientific Concepts
Laursen, Sandra L.; Brickley, Annette – Journal of Geoscience Education, 2011
Scientists' involvement in education has increased in recent years due to mechanisms such as the National Science Foundation's "broader impacts" expectations for research projects. The best investment of their effort lies in sharing their expertise on the nature and processes of science; film is one medium by which this can be done…
Descriptors: Science Instruction, Scientific Principles, Documentaries, Films
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Alters, Brian J. – American Biology Teacher, 1999
There are significant variances in both the religious and non-religious beliefs for rejecting evolution, and likewise diversity in the extent to which various creationists reject evolution. Describes the anti-evolution stances of literalists, progressives, and theists and addresses teaching concerns relative to anti-evolution positions. Contains…
Descriptors: Biology, Creationism, Elementary Secondary Education, Evolution
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Whitaker, Robert J. – Journal of Research in Science Teaching, 1999
Argues that declarative writing about science that presents historical or biographical information incorrectly is not acceptable. (WRM)
Descriptors: Elementary Secondary Education, Higher Education, Instructional Materials, Misconceptions
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Abd-El-Khalick, Foyad; Lederman, Norman G. – International Journal of Science Education, 2000
Reviews and assesses the effectiveness of the attempts undertaken to improve prospective and practicing science teachers' conceptions of the nature of science (NOS). Categorizes reviews as implicit or explicit. Indicates that the explicit approach was more effective in enhancing teachers' views. Assumes that developing an understanding of NOS is…
Descriptors: Concept Formation, Elementary Secondary Education, Higher Education, Inquiry
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Milne, Catherine – Journal of Research in Science Teaching, 1999
Answers a critique of the historical accuracy of the author's previous work. Argues that all science stories provide a source of material for analysis and synthesis of the nature of the scientific enterprise. (WRM)
Descriptors: Elementary Secondary Education, Higher Education, Instructional Materials, Misconceptions
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Tsai, Chin-Chung – Science Educator, 1999
Argues that science students often perceive physical events, the nature of scientific knowledge, and the nature of learning processes in different ways from science teachers and scientists, and that science teachers need to account for these differences in planning their science teaching. Contains 40 references. (WRM)
Descriptors: Cognitive Processes, Concept Formation, Educational Research, Elementary Secondary Education
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Glasson, George E.; Bentley, Michael L. – Science Education, 2000
Investigates how scientists, from both a practical and epistemological perspective, communicated the nature and relevance of their research to classroom teachers. Determines the congruence and/or dissimilarity in how scientists described their research to teachers and how they viewed their research epistemologically. Concludes that scientists from…
Descriptors: Elementary Secondary Education, Engineers, Epistemology, Knowledge Base for Teaching
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Rudge, David W.; Howe, Eric M. – Science Teacher, 2004
Many science teachers recognize that teaching aspects of the history of science helps students learn science content and the nature of science (NOS). The use of history can potentially humanize science, help students refine their critical thinking skills, promote a deeper understanding of scientific concepts, and address common student…
Descriptors: Teaching Methods, Scientific Concepts, Scientific Principles, Misconceptions
Wellington, Jerry, Ed. – 1998
This book attempts to reflect on the value and purpose of practical work as part of the science curriculum: why are practical exercises so necessary and what do they contribute to the science learning process? The chapters in this book examine issues such as: how practical work is perceived by students and teachers; the possibilities and perils of…
Descriptors: Educational Policy, Educational Practices, Elementary Secondary Education, Foreign Countries