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Science Scope266
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Showing 1 to 15 of 266 results Save | Export
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Ward, R. Bruce; Miller-Friedmann, Jaimie; Sienkiewicz, Frank; Antonucci, Paul – Science Scope, 2012
Less than a century ago, astronomers began to unlock the cosmic distances within and beyond the Milky Way. Understanding the size and scale of the universe is a continuing, step-by-step process that began with the remarkably accurate measurement of the distance to the Moon made by early Greeks. In part, the authors have ITEAMS (Innovative…
Descriptors: Middle Schools, Astronomy, Middle School Students, Science Education
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Fendrich, Jean; Brown, Mark – Science Scope, 2012
How do teachers help students realize their place in the universe? How do they teach the relationship among the Earth, Moon, stars, and galaxies during daylight hours? Most teachers assume that astronomy is a difficult subject to teach in the classroom and that without a planetarium little can be learned. In this article, the authors discuss…
Descriptors: Astronomy, Lighting, Science Teachers, Teaching Methods
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Esser, Liza – Science Scope, 2011
Studying the Olympic sport of curling is a fun and engaging way to learn about the concepts of friction, forces, momentum, and Newton's laws. Each winter, the author takes her eighth-grade physical science class on a field trip to experience curling firsthand. This field trip has become a favorite of the eighth graders at Capitol Hill Day School…
Descriptors: Middle School Students, Field Trips, Day Schools, Physics
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Fidler, Chuck – Science Scope, 2012
Earth and space science in the middle school classroom are composed of intricately intertwined sets of conceptual systems (AAAS 1993; NRC 1996). Some systems of study, such as the water and rock cycles, are quite explicit and often found as stand-alone middle school science units. Other phenomena are not so apparent, yet they play an extremely…
Descriptors: Space Sciences, Radiation, Secondary School Science, Middle Schools
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Roy, Ken – Science Scope, 2010
This month's column features two true stories about the use of chemicals in the middle school science classroom. The lesson of these stories is simple. Certainly, it is prudent to have age-appropriate experiences in science, given the developmental constraints of students in middle school. On the other hand, when the curriculum necessitates…
Descriptors: Middle School Students, Science Education, Middle Schools, Secondary School Science
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Schiller, Ellen; Joseph, Jann – Science Scope, 2010
In traditional classroom discourse, the teacher controls the discussion, asking most of the questions and calling on students to respond. This model does not work well for the inquiry-based classroom, which depends on engagement, peer interaction, and student ownership of learning. In this article, the authors present an alternative framework for…
Descriptors: Ownership, Classrooms, Geometry, Models
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Katsh-Singer, Rebecca – Science Scope, 2011
We want to challenge our students, but we need to give them tasks and assessments they can realistically succeed at and are valid indicators of their learning. Deconstructing planning, teaching, and assessment can help teachers instruct and assess more appropriately, leading to more confident, motivated, and higher-achieving learners. In this…
Descriptors: Middle School Students, Science Instruction, Teaching Methods, Student Evaluation
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Cartwright, Tina J.; Miranda, Rommel J.; Hermann, Ronald S.; Hemler, Deb – Science Scope, 2012
In this article, the authors present an inquiry-based approach to facilitate student understanding of the differences among common cloud descriptive characteristics through the use of a semi-dichotomous key developed by a former West Virginia state climatologist. The authors also demonstrate how students can analyze common class data sets that…
Descriptors: Teaching Methods, Biology, Inquiry, Science Instruction
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Taylor, Melanie; Cohen, Kimberley; Esch, R. Keith; Smith, P. Sean – Science Scope, 2012
It is fascinating to listen to middle school students talk about food for plants and animals and how that food is used. Some students describe ideas that are essentially correct. Some comments suggest that students are familiar with the content, but their understanding is incomplete or includes inaccuracies. Finally, some students have little…
Descriptors: Middle School Students, Secondary School Science, Energy, Biology
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MacKenzie, Ann Haley; McDowell, Brian – Science Scope, 2012
What do paleontologists, dinosaur tracks, and the nature of science have in common? They're combined here in an inquiry activity where students use methods of observation and inference to devise evidence-based explanations for the data they collect about dinosaur tracks, much like the methods used by paleontologists. Students then debate the…
Descriptors: Paleontology, Scientific Concepts, Interdisciplinary Approach, Science Instruction
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Christian, Brittany; Yezierski, Ellen – Science Scope, 2012
Science is always changing. Its very nature requires that scientists constantly revise theories to make sense of new observations. As they learn science, students are also constantly revising how they make sense of their observations, which requires comparisons with what they already know to process new information. A teacher can take advantage of…
Descriptors: Chemistry, Student Attitudes, Science Instruction, Teaching Methods
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Moore, Susan; Popiolkowski, Gary – Science Scope, 2011
1This article describes how, by incorporating NASA's Students' Cloud Observations On-Line (S'COOL) project into a problem-based learning (PBL) activity, middle school students are engaged in authentic scientific research where they observe and record information about clouds and contribute ground truth data to NASA's Clouds and the Earth's…
Descriptors: Middle School Students, Scientific Research, Problem Based Learning, Energy
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Lucking, Robert A.; Christmann, Edwin P.; Wighting, Mervyn J. – Science Scope, 2010
Although in some schools cell phones have to be turned off or perhaps kept in lockers to avoid misuse, the authors hope to demonstrate in this article how they can be used under supervision to assist learning. This ubiquitous device can be a powerful classroom tool. (Contains 2 figures.)
Descriptors: Telecommunications, Science Instruction, Teaching Methods, Physics
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Gagnon, Valoree; Bradway, Heather – Science Scope, 2012
For many years, Earth science concepts have been taught as thematic units with lessons in nice, neat chapter packages complete with labs and notes. But compartmentalized Earth science no longer exists, and implementing teaching methods that support student development of holistic understandings can be a time-consuming and difficult task. While…
Descriptors: Teaching Methods, Earth Science, Current Events, Science Instruction
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Sweeney, Ryan M.; Martin-Hansen, Lisa; Verma, Geeta; Dunkhase, John – Science Scope, 2009
Learning about osmosis and diffusion is often a challenging task for middle school students. Here the authors present a lesson that was converted from a "cookbook" lab (McLaughlin and Thompson 2007) into a more inquiry-oriented lab that uses inquiry teaching strategies and hands-on investigations to teach middle-grade students about osmosis and…
Descriptors: Middle Schools, Investigations, Teaching Methods, Middle School Students
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