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Showing 1 to 15 of 214 results Save | Export
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Golden, Barry; Grooms, Jonathon; Sampson, Victor; Oliveri, Robin – Science Scope, 2012
This unit is a different and fun way to engage students with an extremely important topic, climate change, which cuts across scientific and nonscientific disciplines. While climate change itself may not be listed in the curriculum of every science class, the authors contend that such a unit is appropriate for virtually any science curriculum.…
Descriptors: Climate, Scientific Concepts, Biological Sciences, Physical Sciences
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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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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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Schwols, Amitra; Miller, Kirsten Brush – Science Scope, 2012
Science teachers know that the mathematics concepts taught in the Common Core are critical for students' understanding of science. But what can a teacher do when his/her students lack the necessary mathematics skills to master science content? There may be other reasons besides students not paying attention in their math courses. Maybe the…
Descriptors: Science Education, Mathematics Skills, Science Instruction, Science Teachers
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Scribner-MacLean, Michellle – Science Scope, 2012
The author discusses the different meanings of the words "prediction" and "hypothesis". Recognizing the difference can help students approach the inquiry experience in a way that teaches them to communicate their reasoning and rationales. Better understanding of these two terms can also help teachers create more effective assessments of process…
Descriptors: Prediction, Scientific Literacy, Scientific Concepts, Science Education
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Plankis, Brian; Vowell, Julie; Ramsey, John – Science Scope, 2011
One key element sometimes missing from middle school science lessons is questioning designed to generate student discourse. The National Science Teachers Association recommends that the curriculum of middle school science programs includes "hands-on, minds-on" (NSTA 2003) inquiry-based science instruction, and according to Clough and Olson,…
Descriptors: Science Process Skills, Science Instruction, Secondary School Science, Middle Schools
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Gran, Susan; McNamara, Michael – Science Scope, 2012
"Why do I need to know this if I don't want to be a scientist?" is a question middle school teachers probably hear on a regular basis. In an effort to answer it, the authors have tried to appeal to students' varied interests, and thus developed myriad ways to show students how science is a part of their everyday lives. What is described in this…
Descriptors: Theaters, Lighting, Teaching Methods, Middle School Teachers
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Conover, Margaret – Science Scope, 2011
Chia seeds will sprout on almost any moist surface, and they respond quickly to experimental variables. Furthermore, the newly recognized nutritional value and rich cultural history of chia seeds offer the possibility of highly motivating and educational interdisciplinary extensions, especially appropriate to students in the middle grades.…
Descriptors: Learner Engagement, Science Teachers, Science Instruction, Plants (Botany)
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McGarry, Mary Ann; Straffon, Dan; Patterson, Chuck – Science Scope, 2012
The evolution of science is seldom about solitary individuals busy at work in labs making discoveries. This is especially true of the Earth sciences, where time-intensive fieldwork is usually required. Single scientists are rarely capable of amassing the requisite data sets to form grand, unifying theories. This is the case with the new airburst…
Descriptors: Climate, Evidence, Action Research, Earth Science
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DiSpezio, Michael A. – Science Scope, 2011
This article addresses misconceptions surrounding the Coriolis force and describes how it should be presented as a function within inertial and noninertial frames of reference. Not only does this demonstrate the nature of science as it strives to best interpret the natural world (and presents alternative explanations), but it offers a rich…
Descriptors: Physics, Scientific Concepts, Misconceptions, Science Activities
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Pries, Caitlin Hicks; Hughes, Julie – Science Scope, 2011
Nothing brings out the best in eighth-grade physical science students quite like an engineering challenge. The wind turbine design challenge described in this article has proved to be a favorite among students with its focus on teamwork and creativity and its (almost) sneaky reinforcement of numerous physics concepts. For this activity, pairs of…
Descriptors: Science Activities, Energy, Grade 8, Physical Sciences
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Fletcher, Kurt; Rommel-Esham, Katie; Farthing, Dori; Sheldon, Amy – Science Scope, 2011
The transfer of energy from one form to another can be difficult to understand. The electrical energy that turns on a lamp may come from the burning of coal, water falling at a hydroelectric plant, nuclear reactions, or gusts of wind caused by the uneven heating of the Earth. The authors have developed and tested an exciting hands-on activity to…
Descriptors: Energy, Demonstrations (Educational), Laboratory Equipment, Science Instruction
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DiSpezio, Michael A. – Science Scope, 2011
This article discusses the movement of Earth's north and south poles. The Earth's poles may be a bit more complex and dynamic than what many students and teachers believe. With better understanding, offer them up as a rich landscape for higher-level critical analysis and subject integration. Possible curriculum tie-ins include magnets, Earth…
Descriptors: Climate, Middle Schools, Secondary School Science, Science Instruction
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Malone, Molly – Science Scope, 2012
Most middle school students comprehend that organisms have adaptations that enable their survival and that successful adaptations prevail in a population over time. Yet they often miss that those bird beaks, moth-wing colors, or whatever traits are the result of random, normal genetic variations that just happen to confer a negative, neutral, or…
Descriptors: Genetics, Multimedia Materials, Misconceptions, Concept Teaching
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Bigham, Gary – Science Scope, 2010
Off-road motorcycle racing and ATV riding. Gardening and fishing. What do these high-adrenaline and slower-paced pastimes have in common? Each requires soil, and the texture of that soil has an effect on all of them. In the inquiry-based lessons described here, students work both in the field or laboratory and in the classroom to collect soil…
Descriptors: Soil Science, Science Instruction, Inquiry, Teaching Methods
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