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Dambekalns, Lydia; Medina-Jerez, William – Science Scope, 2012
All too often, subjects in schools present disjointed phenomena as a compilation of data or facts that seem isolated from students' lives. However, current science education pedagogy clearly emphasizes integration of knowledge and skills in real-world settings (NRC 2007). This integrated instructional approach addresses fundamental process skills…
Descriptors: Science Education, Art Education, Elementary Secondary Education, Science Instruction
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Miles, Rhea – Science Scope, 2012
In the summer of 2009, 22 African American middle school students in eastern North Carolina became participants in the Reach Up program to increase the number of underrepresented students participating in science-, technology-, engineering-, and mathematics-related activities. One of the goals of the program was for these students to participate…
Descriptors: Competition, Student Participation, Middle School Students, Investigations
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Britton, Tricia – Science Scope, 2011
Using formative assessment involves gathering data from students on their progress and comprehension so that instruction can be adjusted to meet their learning needs (Popham 2001; Greenstein 2010). This article describes how the author uses homework, "three quick questions," trivia questions, pretests, and practice tests to formatively…
Descriptors: Formative Evaluation, Alternative Assessment, Objective Tests, Student Evaluation
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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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Anticole, Matthew – Science Scope, 2012
Many science problems require students to convert units. While this skill may not get the attention that more central science concepts do, teachers in the middle school and early high school grades will be doing their students a great service by leaving them with a strong understanding of both the skill itself and the reasons behind it. When the…
Descriptors: Metric System, Mathematical Models, Measurement Techniques, Classroom Techniques
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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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Sampson, Victor; Clark, Douglas – Science Scope, 2007
An explicit goal of the current reform movement in science education is to promote scientific literacy in the United States. One way to encourage scientific literacy is to help students develop a better understanding of science subject matter, that is, the declarative knowledge specifically associated with the physical, life, and earth sciences.…
Descriptors: Sciences, Persuasive Discourse, Educational Change, Classrooms
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Fiero, Alan – Science Scope, 2012
"Science for all" is not just a theme that befits the democratic society. It also exemplifies the best methodology for teaching science to children at the middle school level. For many years, teachers have grappled with trying to determine what type of grouping would most benefit their students. This article presents a strategy that highlights why…
Descriptors: Heterogeneous Grouping, Middle Schools, Science Course Improvement Projects, Science Curriculum
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Demetrikopoulos, Melissa K.; Pecore, John; Rose, Jordan D.; Fobbs, Archibald J., Jr.; Johnson, John I.; Carruth, Laura L. – Science Scope, 2006
The brain is a truly fascinating structure! It controls the body and allows everyone to think, learn, speak, move, feel, remember, and experience emotions. Although the brain is a single organ, it is very complex and has several regions, each having a specific function. These functionally diverse regions work together to allow for coordination of…
Descriptors: Neurological Organization, Science Curriculum, Brain, Body Composition
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Willard, Ted; Pratt, Harold; Workosky, Cindy – Science Scope, 2012
This is an exciting time to be in science education. New science standards are being developed by a group of science educators from across the country, working with 26 states in a process managed by Achieve, Inc., a non-profit education reform organization. The development of the "Next Generation Science Standards" (NGSS) promises to be the most…
Descriptors: Science Education, Feedback (Response), Educational Change, Academic Standards
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Klosterman, Michelle; Sadler, Troy; Brown, Julie – Science Scope, 2012
As advocated by the new K-12 framework for science and as demonstrated in research, teachers are making use of media, now more than ever, to capture students' attention and draw connections between school science and students' everyday lives (Klosterman, Sadler, and Brown 2012; NRC 2012). However, it is essential for students to understand the…
Descriptors: Acquired Immunodeficiency Syndrome (AIDS), Media Literacy, Microbiology, Science Curriculum
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Buczynski, Sandy; Ireland, Kathleen; Reed, Sherri; Lacanienta, Evelyn – Science Scope, 2012
There is a dynamic synergy between the visual arts and the natural sciences. For example, science relies heavily on individuals with visual-art skills to render detailed illustrations, depicting everything from atoms to zebras. Likewise, artists apply analytic, linear, and logical thinking to compose and scale their work of art. These parallel…
Descriptors: Concept Teaching, Scientific Concepts, Visual Arts, Middle School Students
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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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Darling, Gerald – Science Scope, 2012
In eighth grade, students usually learn about forces in science class and linear relationships in math class, crucial topics that form the foundation for further study in science and engineering. An activity that links these two fundamental concepts involves measuring the distance a spring stretches as a function of how much weight is suspended…
Descriptors: Mathematics Instruction, Fundamental Concepts, Grade 8, Motion
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McIntosh, Julie; White, Sandra; Suter, Robert – Science Scope, 2009
Students within the Findlay, Ohio, City School District, as well as students across the country, struggle with understanding physical and chemical changes. Therefore, in this article, the authors suggest some standards-based activities to clarify misconceptions and provide formative assessments to measure your students' progress as they determine…
Descriptors: Urban Schools, Chemistry, Misconceptions, Standard Setting
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