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Argus, Lindsy – Science Scope, 2012
The author created a lesson in which students successfully practiced reading comprehension skills while developing an understanding of earthquakes. Not only did this lesson help students gain an understanding of the impact of earthquakes, a subject embedded into Missouri's eighth-grade science curriculum, but it also addresses one of the new…
Descriptors: Evidence, Reading Comprehension, State Standards, Seismology
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Blank, Lisa M.; Plautz, Mike; Almquist, Heather; Crews, Jeff; Estrada, Jen – Science Scope, 2012
"A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" emphasizes that the practice of science is inherently a model-building activity focused on constructing explanations using evidence and reasoning (NRC 2012). Because building and refining is an iterative process, middle school students may view this practice…
Descriptors: Models, Elementary Secondary Education, Technology Uses in Education, Technology Integration
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Barker, Marianne – Science Scope, 2000
Describes a three-week activity unit on earthquakes that addresses the National Science Education Standards. Includes mantle convection, crust, plate tectonics, and faults concepts. (YDS)
Descriptors: Activity Units, Earth Science, Earthquakes, Hands on Science
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Frashure, K. M.; Chen, R. F.; Stephen, R. A.; Bolmer, T.; Lavin, M.; Strohschneider, D.; Maichle, R.; Micozzi, N.; Cramer, C. – Science Scope, 2007
Demonstrating wave processes quantitatively in the classroom using standard classroom tools (such as Slinkys and wave tanks) can be difficult. For example, waves often travel too fast for students to actually measure amplitude or wavelength. Also, when teaching propagating waves, reflections from the ends set up standing waves, which can confuse…
Descriptors: Teaching Methods, Middle School Teachers, Learning Activities, Class Activities