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Showing 1 to 15 of 38 results Save | Export
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Mulvey, Bridget; Bell, Randy – Science Teacher, 2012
Google Earth is an exciting way to engage students in scientific inquiry--the foundation of science education standards and reforms. The National Science Education Standards identify inquiry as an active process that incorporates questioning, gathering and analyzing data, and thinking critically about the interplay of evidence and explanations.…
Descriptors: Science Education, Earth Science, Classrooms, Plate Tectonics
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Kennett, Peter – School Science Review, 2012
The website "Earthlearningidea" was developed for the International Year of Planet Earth in 2007 and continues with one new activity per fortnight. Activities are devised to catch the attention of students and to enable them to enjoy the science of the Earth. Many activities require minimal equipment, for schools in developing countries, but there…
Descriptors: Internet, Plate Tectonics, Computer Uses in Education, Web Sites
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Hein, Annamae J. – Science Activities: Classroom Projects and Curriculum Ideas, 2011
The Plate Tectonics Project is a multiday, inquiry-based unit that facilitates students as self-motivated learners. Reliable Web sites are offered to assist with lessons, and a summative rubric is used to facilitate the holistic nature of the project. After each topic (parts of the Earth, continental drift, etc.) is covered, the students will…
Descriptors: Plate Tectonics, Summative Evaluation, Self Motivation, Literacy
CSTA Journal, 1995
Presents an activity in which students trace the movement of the continents over the past 600 million years to help them understand how the continents' size and position have changed over time. Includes map puzzle pieces. (MKR)
Descriptors: Earth Science, Elementary Secondary Education, Geography, Maps
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Shea, James Herbert – Journal of Geological Education, 1986
Presents a three-part exercise which provides undergraduates with opportunities to work with data related to the earth's magnetic field. Includes student materials for activities in determining the history of the earth's magnetic field, in finding the general pattern of declination, and for looking for a polar reversal history. (ML)
Descriptors: College Science, Earth Science, Geology, Higher Education
Cuff, Kevin – 2002
This teacher guide presents a unit on plate tectonics and introduces hands-on activities for students in grades 6-8. In each unit, students act as real scientists and gather evidence by using science process skills such as observing, graphing, analyzing data, designing and making models, visualizing, communicating, theorizing, and drawing…
Descriptors: Earth Science, Intermediate Grades, Junior High Schools, Plate Tectonics
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Wells, Neil A. – Journal of Geoscience Education, 2002
Uses earthquakes to teach about the importance of collecting enough data and simplifying and visualizing them appropriately. Leads students relatively easily into a sophisticated yet enjoyable examination of large databases and creating hypotheses to explain the patterns that they unearth. (Author/NB)
Descriptors: Data, Data Processing, Earth Science, Earthquakes
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Landalf, Helen – Science Activities, 1998
Presents an activity that employs movement to enable students to understand concepts related to plate tectonics. Argues that movement brings topics to life in a concrete way and helps children retain knowledge. (DDR)
Descriptors: Concept Formation, Dance, Earth Science, Elementary Secondary Education
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Earle, Steven – Journal of Geoscience Education, 2003
Describes an activity in which students are asked to write an essay on the Crustal Displacement hypothesis, an hypothesis that is inconsistent with the accepted understanding of crustal and mantle processes. The assignment is useful because it forces students to solidify their understanding of plate tectonics by applying their knowledge in a new…
Descriptors: Earth Science, Geology, Higher Education, Plate Tectonics
National Oceanic and Atmospheric Administration (DOC), Rockville, MD. – 2002
This activity is designed to teach how tectonic plates move, what some consequences of this motion are, and how magnetic anomalies document the motion at spreading centers do. The activity provides learning objectives, a list of needed materials, key vocabulary words, background information, day-to-day procedures, internet connections, career…
Descriptors: Curriculum Design, Earth Science, Earthquakes, Lesson Plans
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Shea, James Herbert – Journal of Geological Education, 1989
Discussed are two techniques that can be used to directly test the theory that the plates which make up the crust of the earth are still moving. Described are the use of satellite laser ranging and very long baseline interferometry. Samples of data and their analysis are provided. (CW)
Descriptors: College Science, Earth Science, Geology, Higher Education
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Science Activities, 1993
Presents a reproducible page for students dealing with the following topics: plate tectonics, magma, crust, and earthquakes. Provides a plate tectonics activity that uses cardboard and clay. (PR)
Descriptors: Earth Science, Earthquakes, Elementary Secondary Education, Learning Activities
Stoever, Edward C., Jr.; Yasso, Warren E. – Sea World, 1977
Discusses the development of earth science curriculum projects and student activities via the Central Evolution Education Project (CEEP) for grades eight through ten earth science classes. (SL)
Descriptors: Curriculum Development, Earth Science, Instruction, Marine Biology
Alpha, Tau Rho, Ed.; Diggles, Michael F., Ed. – 1998
This CD-ROM contains 17 computer-generated teaching tools, 16 interactive HyperCard "stacks", and a printable model. The 17 tools are separated into the following categories: (1) Geologic Processes; (2) Fossilization; (3) Earthquakes and Faulting; and (4) Map Projections and Globes. A navigation stack, "Earth Science," is provided as a launching…
Descriptors: Earth Science, Earthquakes, Geology, Higher Education
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Metzger, Ellen Pletcher – Journal of Geological Education, 1994
Contains instructions and two patterns for making a terrestrial globe and a tectonic globe. The pattern is designed to be glued onto a tennis ball. By constructing the globes, students obtain a greater understanding of the locations of the edges of continents and the earth's plates. (AIM)
Descriptors: Earth Science, Elementary Secondary Education, Geology, Instructional Materials
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