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Sperry, Chris – Science Scope, 2012
Today more than ever, students want their school experience to be relevant. They live and learn in a media-saturated environment where information abounds, but wisdom is often lacking. Teachers must tie their science curricula to students' real-life experiences: When their students see the utility of scientific thought and reason in helping them…
Descriptors: Media Literacy, Science Teachers, Critical Thinking, Science Curriculum
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Cook, Kristin; Buck, Gayle – Science Scope, 2010
Situating instruction in a local context, socioscientific issues (SSIs) offers students an opportunity to become active participants in the community and has the potential to encourage them to authentically and critically participate and engage in understanding, caring for, and transforming the world to which they belong. Photovoice is one way…
Descriptors: Teaching Methods, Photography, Documentation, School Community Relationship
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Liang, Ling; Schmuckler, Joseph S. – Science Scope, 2004
As both classroom teaching practice and literature show, many students have difficulties learning science concepts such as density. Here are some investigations that identify the relationship between density and floating through experimenting with successive dilution of a liquid, or the systematic change of concentration of a saltwater solution.…
Descriptors: Teaching Methods, Teaching Models, Constructivism (Learning), Science Instruction
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Dibley, Jeremiah; Parish, Jamie – Science Scope, 2007
Funded by the U.S. Department of Education, a research project was conducted to evaluate the effectiveness of video games as inquiry-based learning experiences for the science classroom. As a result, the video game, "Creature Control: The Quest for Homeostasis" was developed and field-tested in select middle schools in the United States.…
Descriptors: Middle Schools, Learning Processes, Constructivism (Learning), Video Games
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Schulte, Paige L. – Science Scope, 1996
Offers a practical explanation of constructivism to help teachers view it as a viable framework for instructional strategies. Presents a comparison of models and examples of how a unit on weathering and erosion would be taught in a traditional versus a constructivist classroom. (JRH)
Descriptors: Constructivism (Learning), Educational Strategies, Educational Theories, Junior High Schools
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Rillero, Peter; And Others – Science Scope, 1996
Describes the Write Now approach that allows teachers to transform the first few minutes of class into a powerful learning experience by helping students reflect on the previous day's lessons and encouraging them to construct their own knowledge of the concepts being studied. Discusses Quasar questions, reviewing responses, constructing…
Descriptors: Constructivism (Learning), Educational Strategies, Junior High Schools, Middle Schools
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Tretter, Thomas – Science Scope, 2005
In the spirit of the National Science Education Standards (NRC 1996), many teachers attempt to have their students experience science in a constructivist, inquiry-oriented manner. The egg bungee jump activity will certainly support that mode of teaching, and has the added benefit of providing a concrete context within which students can explore…
Descriptors: Constructivism (Learning), Science Instruction, Inquiry, Teaching Methods
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Wilcox, Dawn Renee; Sterling, Donna R. – Science Scope, 2006
Legends and tall tales have been part of the American culture for ages. Students are probably already familiar with the tales of how Pecos Bill fearlessly tamed a ferocious tornado, or Paul Bunyan effortlessly restrained a great river. Such tales have been passed down from generation to generation to explain humanity, the natural world, and…
Descriptors: Tales, Science Instruction, Constructivism (Learning), Teaching Methods
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Pope, Margaret – Science Scope, 2000
Introduces an activity of creating discovery centers that is designed for preservice elementary students using a constructivist approach. Encourages students to find science experiments and hands-on extension activities. (YDS)
Descriptors: Constructivism (Learning), Discovery Learning, Interdisciplinary Approach, Language Arts
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Jacobowitz, Roberta – Science Scope, 1997
Lists 30 reminders for successfully communicating with students and nurturing their interest in science. Each reminder is accompanied by specific strategies for working with middle school students. (DDR)
Descriptors: Classroom Techniques, Constructivism (Learning), Educational Strategies, Elementary Secondary Education
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Luft, Julie A.; And Others – Science Scope, 1997
Describes a unit that applies constructivist teaching methods to a science concept. Contains mini-lessons in math that present to students information that they need to know in order to perform their experiments. Gives students the opportunity to construct their own knowledge about the natural phenomenon of light as they apply their mathematical…
Descriptors: Constructivism (Learning), Integrated Curriculum, Interdisciplinary Approach, Intermediate Grades
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Chesbro, Robert – Science Scope, 2006
The interactive science notebook (ISN) is a perfect opportunity for science educators to encapsulate and promote the most cutting-edge constructivist teaching strategies while simultaneously addressing standards, differentiation of instruction, literacy development, and maintenance of an organized notebook as laboratory and field scientists do.…
Descriptors: Middle School Students, Teaching Methods, Science Instruction, Writing Across the Curriculum