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Day, Martha; Stobaugh, Rebecca; Tassell, Janet; Neiman, Nicholas – Science Scope, 2012
This article discusses the resources available for teachers to apply higher-level thinking and cognitive complexity to their instruction and assessments. While designing higher-level assessments might be a challenging task, doing so not only can improve student achievement in science, it also prepares students for a changing world. Students learn…
Descriptors: Science Achievement, Science Process Skills, Problem Solving, Science Teachers
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Gregerson, Jessica – Science Scope, 2011
In this inquiry-based project, student-generated questions became the basis for student-directed individual and group projects that provided practice with problem solving, critical thinking, and research skills while digging deeper into the Earth science curriculum. The author used her students' high-level questions to provide relevance,…
Descriptors: Learner Engagement, Student Motivation, Earth Science, Research Skills
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Reiser, Brian J.; Berland, Leema K.; Kenyon, Lisa – Science Scope, 2012
"A Framework for K-12 Science Education" identifies eight science and engineering practices for K-12 classrooms. These practices, along with core ideas and crosscutting concepts, define the nation's learning goals for science. The practices outlined in the framework are: (1) Asking questions and defining problems; (2) Developing and using models;…
Descriptors: Thinking Skills, Evidence, Persuasive Discourse, Elementary Secondary Education
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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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Clary, Renee; Wandersee, James – Science Scope, 2011
Discover the secrets contained in fossilized feces. Few topics in middle school classrooms capture students' enthusiasm and interest as do coprolites. These trace fossils offer classroom opportunities for integrated life and Earth sciences study, a stranger-than-fiction history of science, and an opportunity to solve mysteries. (Contains 8…
Descriptors: Paleontology, Earth Science, Class Activities, Science Activities
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Fox, Justine E.; Glen, Nicole J. – Science Scope, 2012
Have your students ever wondered what NASA scientists do? Have they asked you what their science and mathematics lessons have to do with the real world? This unit about Earth's atmosphere can help to answer both of those questions. The unit described here showcases "content specific integration" of science and mathematics in that the lessons meet…
Descriptors: State Standards, Mathematics Instruction, World Problems, Problem Solving
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Sampson, Victor; Grooms, Jonathon – Science Scope, 2009
This article describes an instructional model that science teachers can use to promote and support student engagement in scientific argumentation. This model is called the evaluate-alternatives instructional model and it is grounded in current research on argumentation in science education (e.g., Berland and Reiser 2009; McNeill and Krajcik 2006;…
Descriptors: Persuasive Discourse, Science Teachers, Science Curriculum, Teaching Models
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Walker-Livingston, Wendy – Science Scope, 2009
Why not combine the use of technology with the excitement of a scavenger hunt that moves middle-level students out into the "wilds" of their school campus to classify plants? In the lesson plan described here, students embark on a botanical scavenger hunt and then document their findings using a digital camera. This project was designed to allow…
Descriptors: Photography, Science Instruction, Middle School Students, Outdoor Education
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Gooding, Julia; Metz, Bill – Science Scope, 2007
Design briefs are plausible situations in which students are asked to solve problems given limited materials, a specific time frame, and a number of rules and limitations. It is the author's contention that the design brief, an established format in technology education, can serve as a unique approach to extend and assess everyday science…
Descriptors: Investigations, Science Instruction, Middle School Students, Secondary School Science
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Boudreau, Sue – Science Scope, 2010
The Take Action Project (TAP) was created to help middle school students take informed and effective action on science-related issues. The seven steps of TAP ask students to (1) choose a science-related problem of interest to them, (2) research their problem, (3) select an action to take on the problem, (4) plan that action, (5) take action, (6)…
Descriptors: Middle School Students, Science Instruction, Problem Solving, Social Problems
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Young, Sarah – Science Scope, 2010
The "What's the "matter" With XOD" activity addresses students' misconceptions and refines their ideas about phases of matter. This activity introduces the characteristics for solids, liquids, and gases, and begins a discussion about physical and chemical changes and how matter can cycle through different phases. Depending on class size and…
Descriptors: Chemistry, Misconceptions, Inquiry, Problem Solving
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Bisogno, Janet; JeanPierre, Bobby – Science Scope, 2008
The West Point Bridge Design (WPBD) building project engages students in project-based learning by giving them a real-life problem to solve. By using technology, students are able to become involved in solving problems that they normally would not encounter. Involvement with interactive websites, such as WPBD, assists students in using…
Descriptors: Active Learning, Thinking Skills, Student Projects, Web Sites
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Minogue, James; Guentensberger, Todd – Science Scope, 2006
One set of ideas at the core of the National Science Education Standards (NSES) Science and Technology Standards is that of engaging middle school students in activities that help them develop their understandings of technological design. More precisely, students should be able to identify appropriate problems for technological design, design a…
Descriptors: Science Activities, Science Education, Middle School Students, Secondary School Science
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Moyer, Richard; Everett, Susan – Science Scope, 2009
Meat thermometers can be awkward to use in terms of placement and avoidance of bones. Because of these problems, each year 30 million Thanksgiving turkeys have a built-in thermometer that pops up when the turkey is properly cooked. Turkey timers are an example of how engineering solved a common, everyday problem. The following 5E learning cycle…
Descriptors: Science Education, Learning Processes, Engineering, Foreign Countries
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Moore, Jerilou; Sumrall, William J. – Science Scope, 2008
Exploring our patent system is a great way to engage students in creative problem solving. As a result, the authors designed a teaching unit that uses the study of patents to explore one avenue in which scientists and engineers do science. Specifically, through the development of an idea, students learn how science and technology are connected.…
Descriptors: Problem Solving, Creative Thinking, Intellectual Property, Science Instruction
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