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Showing 1 to 15 of 21 results Save | Export
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Wong, Sissy S.; Ortega, Irasema – Science Teacher, 2015
Teachers often start their careers in schools with large populations of English language learners (ELLs), whose enrollment in U.S. public schools reached some 4.4 million in 2012 (Kena et al. 2014). To serve these ELLs, new science teachers must develop skills to not only teach the content and language of science but also academic English. Proper…
Descriptors: English Language Learners, Beginning Teachers, Science Teachers, Beginning Teacher Induction
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Angle, Julie – Science Scope, 2011
The recently released document "A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" emphasizes the importance of engaging students in practices of science and engineering to help them understand how scientific knowledge about the natural world develops. The document identifies eight essential…
Descriptors: Evidence, Investigations, Elementary Secondary Education, Motion
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Tatarchuk, Shawna; Eick, Charles – Science and Children, 2011
An outdoor classroom is an exciting way to connect the learning of science to nature and the environment. Many school grounds include gardens, grassy areas, courtyards, and wooded areas. Some even have nearby streams or creeks. These are built-in laboratories for inquiry! In the authors' third-grade classroom, they align and integrate…
Descriptors: Outdoor Education, Laboratories, Inquiry, Grade 3
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Bybee, Rodger W. – Science Scope, 2011
In this article, the author presents the science and engineering practices from the recently released "A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" (NRC 2011). The author recognizes the changes implied by the new framework, and eventually a new generation of science education standards will present new…
Descriptors: Elementary Secondary Education, Engineering, Technology Education, Science Education
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Sampson, Victor; Grooms, Jonathon – Science Scope, 2009
This article describes an instructional model that science teachers can use to promote and support student engagement in scientific argumentation. This model is called the evaluate-alternatives instructional model and it is grounded in current research on argumentation in science education (e.g., Berland and Reiser 2009; McNeill and Krajcik 2006;…
Descriptors: Persuasive Discourse, Science Teachers, Science Curriculum, Teaching Models
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Chamizo, Jose Antonio – Science & Education, 2007
Today there are little more of 3 million chemist all over the world producing about 800,000 papers a year. They produce new substances--from some hundreds in 1800 to about 20 million now--the vast majority artificial. This rate is growing quite fast. Once the majority of chemistry teachers all over the world used textbooks as the main (sometimes…
Descriptors: Textbooks, Teaching Models, Chemistry, Scientific Literacy
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Swartz, Robert J. – Educational Leadership, 2008
During the last few decades, the author and his colleagues have developed an instructional framework for infusing thinking into content instruction in every subject and at every grade level. In thinking-based learning, teachers explicitly teach students thinking strategies and important habits of mind and then give students opportunities to apply…
Descriptors: Thinking Skills, Teaching Methods, Educational Strategies, Program Content
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Aduriz-Bravo, Agustin – Science & Education, 2004
This article refers to a framework to teach the philosophy of science to prospective and in-service science teachers. This framework includes two components: a list of the main schools of twentieth-century philosophy of science (called "stages") and a list of their main theoretical ideas (called "strands"). In this paper, I show that two of these…
Descriptors: Scientific Principles, Laboratory Equipment, Science Teachers, Teaching Models
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Lin, Emily – Science Teacher, 2006
Even though much has been written about cooperative learning in recent years, busy high school teachers contending with heavy curricular and teaching demands might not know much about the instructional method. Equipped with only a partial understanding of cooperative learning, some teachers may view it as a series of forced artificial constructs…
Descriptors: Teaching Methods, Teaching Models, Secondary School Teachers, Science Teachers
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Eick, Charles J.; Ware, Frank N.; Jones, Mark T. – Journal of Science Teacher Education, 2004
Coteaching as a form of situated learning supports early induction into science teaching. A coteaching model for secondary science methods students and what has been learned from this model is described. Secondary science methods students in pairs were placed with a science teacher to begin teaching as peripheral participants. A cooperative…
Descriptors: Secondary School Science, Teaching Models, Science Teachers, Science Instruction
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Roberts, Dana – Physics Teacher, 1981
Presents suggestions intended to help physicists who have not had the benefit of teacher training workshops and programs, including, among others, those on lecturing, conducting laboratories and discussion sessions, preparing tests, and dealing with difficult subject matter. (SK)
Descriptors: College Science, Higher Education, Physics, Science Education
Ingvarson, Lawrence; Wright, Jane – Australian Science Teachers' Journal, 1999
Presents an overview of the Australian Science Teachers' Association/Monash Standards Project which aims to support the development of a national voluntary system to provide professional certification to teachers of science whose practice has attained high standards set by the profession. Discusses the place of this work within the wider context…
Descriptors: Educational Change, Foreign Countries, Professional Recognition, Science Education
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Dickinson, R. J. – Journal of Educational Television, 1984
Outlines the production philosophy that lay behind the Zimbabwe Science Teacher Training Project and that guided the approach adopted to the design, filming, editing, and distribution of the materials produced. (Author)
Descriptors: Developing Nations, Higher Education, Instructional Development, Instructional Materials
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Carillo, Lori; Lee, Chris; Rickey, Dawn – Science Teacher, 2005
Science teachers continually search for effective ways to help students make sense of science concepts and principles. For students to learn to think more like scientists, science teachers must decrease the number of lectures and "follow-the-recipe" laboratory experiments and increase the use of activities that incorporate student inquiry.…
Descriptors: Inquiry, Science Teachers, Scientific Concepts, Scientific Principles
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Shrigley, Robert L.; Koballa, Thomas R., Jr. – School Science and Mathematics, 1989
Discusses aspects of using anecdotes in the classroom including vividness, the downside, high inferential risks, and low inferential risks. Reviews research underpinnings. (MVL)
Descriptors: Classroom Communication, Communication (Thought Transfer), Research, Science Instruction
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