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Price, Colin – Teaching Science, 2019
This article proposes an evidence-based and engaging approach to teaching the mechanisms driving the movement of tectonic plates that should lead high school students towards the prevalent theories used in peer-reviewed science journals and taught in universities. The methods presented replace the inaccurate and outdated focus on mantle convection…
Descriptors: Evidence Based Practice, Plate Tectonics, Science Instruction, High School Students
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Fink, Kristi R. – Science Teacher, 2017
Earth's easily seen surface features (mountains, volcanoes, and islands)--and the movement of the tectonic plates that lie below--offer hints about the processes that produced them. Inquiries in seismology, the study of earthquakes and other ground movements, can help students learn about Earth's geologic processes. This article describes an…
Descriptors: Geology, Seismology, Plate Tectonics, Science Activities
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Dolphin, Glenn – Science & Education, 2009
Current high school Earth Science curricula and textbooks organize scientific content into isolated "units" of knowledge. Within this structure, content is taught, but in the absence of the context of fundamental understandings or the process of how the science was actually done to reach the conclusions. These are two key facets of scientific…
Descriptors: Units of Study, Plate Tectonics, Scientific Literacy, Grade 9
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Dutch, Steven I. – Journal of Geological Education, 1986
Describes models which (1) illustrate spreading that varies in rate from place to place; (2) clearly show transform faults as arcs of small circles; and (3) illustrate what happens near a pole of rotation. The models are easy to construct and have been well received by students. (JN)
Descriptors: College Science, Geology, Geophysics, Higher Education
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Christofferson, Eric – Journal of Geological Education, 1986
Presents a procedure for calculating the compass direction and velocity of present plate motions at any geographical point of interest. Includes a table of the relative and geographic motion of the 11 largest plates and a flow chart for determining their present motion. Also offers suggestions for classroom instruction. (ML)
Descriptors: College Science, Geology, Mathematical Models, Physical Geography
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Renton, Jack; Repine, Tom; Hemler, Deb – Science Teacher, 2003
The authors relate that they have conducted short courses on using constructivist techniques to teach historical geology over the past four years at regional National Science Teachers Association (NSTA) meetings. They realized that although most course participants were familiar with the basic tenets of plate tectonics, the authors were always…
Descriptors: Constructivism (Learning), Plate Tectonics, Geology, Science Teachers
Stein, Ross S.; Yeats, Robert S. – Scientific American, 1989
Points out that large earthquakes can take place not only on faults that cut the earth's surface but also on blind faults under folded terrain. Describes four examples of fold earthquakes. Discusses the fold earthquakes using several diagrams and pictures. (YP)
Descriptors: Earth Science, Earthquakes, Geology, Plate Tectonics
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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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Chapman, Clark R.; Morrison, David – Mercury, 1990
Examined is the science of catastrophism and its role in planetary and earth science. The effects of impacts on earth with extraterrestrial origins are discussed. Perspectives on the age and dynamics of the earth's crust are presented. (CW)
Descriptors: Astronomy, College Science, Earth Science, Higher Education
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Cross, John A. – Journal of Geography, 1992
Outlines the vulnerability of the West Indies to various natural hazards, especially hurricanes, earthquakes, and volcanic eruptions. Reviews the geologic and meteorologic causes and consequences of the hazards. Suggests methods of incorporating hazards information in geography classes. Includes maps and a hurricane tracking chart. (DK)
Descriptors: Earthquakes, Foreign Countries, Geography, Geography Instruction
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Bull, William B. – Journal of Geological Education, 1984
Summarizes representative quantitative tectonic-geomorphology studies made during the last century, focusing on fault-bounded mountain-front escarpments, marine terraces, and alluvial geomorphic surfaces (considering stream terraces, piedmont fault scarps, and soils chronosequences). Also suggests where tectonic-geomorphology courses may best fit…
Descriptors: College Science, Geology, Graduate Study, Higher Education
Johnston, Arch C.; Kanter, Lisa R. – Scientific American, 1990
Discussed are some of the reasons for earthquakes which occur in stable crust away from familiar zones at the ends of tectonic plates. Crust stability and the reactivation of old faults are described using examples from India and Australia. (CW)
Descriptors: College Science, Earth Science, Earthquakes, Geology
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Purcell, April D.; Ponomarenko, Alyson L.; Brown, Stephen C. – Science and Children, 2006
The challenge for today's elementary teachers is not "whether" but rather "how" to use computers to effectively teach students essential skills and concepts. One exciting way of meeting this challenge is to use Geographic Information Systems (GIS), computer software that captures, manipulates, analyzes, and displays data on specialized layered…
Descriptors: Educational Technology, Computer Software, Plate Tectonics, Information Systems