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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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Boles, Stephanie Reeve – Science Scope, 2011
The author describes how she has come to use technology in her classroom over the years. Her main topics include using the internet, experiencing podcasts, using technology for assessment, and recording results from science research. (Contains 3 online resources and 5 figures.)
Descriptors: Educational Technology, Technology Integration, Teaching Methods, Internet
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Diener, Lynn; McCall, Brian; Gimm, J. A. – Science Scope, 2010
This article discusses how, as part of a National Science Foundation-funded internship program, the authors translated smart papers into an exciting and informative activity for the middle school classroom. This activity opens students' eyes to an everyday technology and inspires them to ask questions about other hidden technologies that they…
Descriptors: Scientific Research, Middle Schools, Internship Programs, Science Instruction
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Hall, Cady B.; Sampson, Victor – Science Scope, 2009
An important goal of the current reform movement in science education is to promote scientific literacy in the United States, and scientific inquiry is at its heart. However, the National Science Education Standards clearly indicate that to promote inquiry, more emphasis should be placed on "science as argument and explanation" rather than on…
Descriptors: Scientific Research, Persuasive Discourse, Astronomy, Educational Change
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Farenga, Stephen J.; Ness, Daniel – Science Scope, 2008
The American Academy of Dermatology (2008) reports that our students will experience 80% of their lifetime exposure to the Sun by the time they are 18. Further, research has demonstrated that continued exposure to the Sun's ultraviolet rays can lead to skin aging, sunburn, immune suppression, ocular melanoma, cataracts, corneal burns, and even…
Descriptors: Cancer, Medicine, Thinking Skills, Scientific Research
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Schwartz, Renee – Science Scope, 2007
Despite over 10 years of reform efforts, research still shows that students typically have inadequate conceptions of what science is and what scientists do. Many science students, as well as some teachers, use a single "scientific method" that, "proves a hypothesis" by systematic data collection. By following a prescribed set of steps, and writing…
Descriptors: Concept Formation, Scientists, Science Instruction, Scientific Research
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Yurgelun, Nancy – Science Scope, 2007
The new Connecticut science standards include a "Science, Technology, and Society" (STS) standard for each grade level. This standard encourages students to explore how scientific knowledge affects the quality of their lives. By relating science concepts to real-world decision making, STS investigations give students a framework through…
Descriptors: Science and Society, Academic Standards, Debate, Scientific Research
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Koch, Pamela; Barton, Angela Calabrese; Whitaker, Rabi; Contento, Isobel – Science Scope, 2007
Childhood obesity and its long-term health implications should be of major concern to science educators. In an effort to support teachers and youth about this growing problem, a five-unit, 19-lesson module entitled Choice, Control, and Change (C3) was developed at Teachers College Columbia University. C3 is a standards-driven and inquiry-based…
Descriptors: Health Promotion, Health Education, Obesity, Scientific Research
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Curry, Kristen; Moore, Jerilou; Sumrall, William J. – Science Scope, 2007
When students investigate science, they model, imitate, and perform science much as scientists do. Learning science in this way is best, according to the locus of control research. Based on this research, students need to develop an internal belief that they can control science outcomes and become a part of science through their own hands-on…
Descriptors: Locus of Control, Investigations, Student Attitudes, Scientific Principles
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Sleeper, Melissa; Sterling, Donna – Science Scope, 2004
One of the easiest ways to capture students sense of wonder is to provide them an opportunity to participate in scientific research and display their findings in a science exhibition. Giving students the freedom to follow their own interests and develop their own science exhibition projects ensures active involvement in the learning process as…
Descriptors: Teaching Methods, Scientific Research, Science Programs, Science Process Skills
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Hemling, Melissa A.; Sammel, Lauren M.; Zenner, Greta; Payne, Amy C.; Crone, Wendy C. – Science Scope, 2006
Many traditional classroom science and technology activities often ask students to complete prepackaged labs that ensure that everyone arrives at the same "scientifically accurate" solution or theory, which ignores the important problem-solving and creative aspects of scientific research and technological design. Students rarely have the…
Descriptors: Scientific Principles, Scientific Research, Research Problems, Patients
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Cavaness, Diane – Science Scope, 2004
Scientific inquiry provides the framework for the content and strategies recommended in the National Science Education Standards (NRC 2000). It's a hot topic at workshops and conferences, and many feel a bit guilty that they aren't doing more of it. Why is scientific inquiry currently at the forefront of science education reform? Inquiry works!…
Descriptors: Educational Change, Science Education, Science Instruction, Inquiry
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Farenga, Steven; Ness, Daniel – Science Scope, 2005
One of the most important connections that must be made during the middle school years is the relationship between scientific inquiry and algebraic thinking. Fortunately, there are plenty of ways in which teachers in both mathematics and science can make this intrinsically important association for students. One way is by studying rate of change,…
Descriptors: Middle Schools, Algebra, Science Education, Thinking Skills
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Kao,Yvonne S; Zenner, Greta M.; Gimm, J. Aura – Science Scope, 2005
Nanotechnology deals with machines, materials, and structures and their behaviors at the scale of atoms and molecules, or the nanoscale. By working on this scale, scientists are able to create enhanced materials with desirable properties, such as stain-resistance. The authors developed the activity described in this article to introduce middle…
Descriptors: Teaching Methods, Scientific Principles, Scientific Research, Scientists