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Williams, James – School Science Review, 1991
Describes the history of the science of geology. The author expounds upon the discovery of deep time and plate tectonics, explaining how the theory of deep time influenced the development of Darwin and Wallace's theory of evolution. Describes how the history of earth science helps students understand the nature of science. (PR)
Descriptors: Earth Science, Plate Tectonics, Science Curriculum, Science Education

King, Chris – School Science Review, 2000
Discusses the misconceptions revealed by the teachers' answers and outlines more accurate answers and explanations based on established evidence and uses these to provide a more complete understanding of plate tectonic process and the structure of Earth. (Author/YDS)
Descriptors: Concept Formation, Earth Science, Elementary Secondary Education, Geology

Hall-Wallace, Michelle K.; McAuliffe, Carla M. – Journal of Geoscience Education, 2002
Investigates student learning that occurred with a Geographic Information Systems (GIS) based module on plate tectonics and geologic hazards. Examines factors in the design and implementation of the materials that impacted student learning. Reports positive correlations between student' spatial ability and performance. Includes 17 references.…
Descriptors: Computer Assisted Instruction, Earth Science, Educational Technology, Evaluation

Gobert, Janice D. – International Journal of Science Education, 2000
Analyzes fifth grade students' diagrams and explanations for the spatial, causal, and dynamic processes inside the earth. Identifies and characterizes the different types of student models for the inside of the earth, and characterizes the reasoning associated with these models. (Contains 74 references.) (Author/YDS)
Descriptors: Cognitive Processes, Earth Science, Elementary Education, Epistemology
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

Marques, Luis; Thompson, David – Research in Science and Technological Education, 1997
This study investigates student misconceptions in the areas of continent, ocean, permanence of ocean basins, continental drift, Earth's magnetic field, and plates and plate motions. A teaching-learning model was designed based on a constructivist approach. Results show that students held a substantial number of misconceptions. (Author/DKM)
Descriptors: Concept Formation, Earth Science, Foreign Countries, Geology

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
White, Robert S.; McKenzie, Dan P. – Scientific American, 1989
Investigates the nature of catastrophic volcanism and the rifting process. Describes two kinds of evidence: quantitative descriptions of rock melting and a wide range of observations. Discusses examples of continent growth in the North Atlantic, India and the Seychelles islands, and the South Atlantic. (YP)
Descriptors: Earth Science, Geographic Regions, Geology, Geophysics

Carrington, Fred – Physics Teacher, 1994
Describes and attempts to explain the sporadic devastating effects of the Northridge (California) Earthquake of January 17, 1994, as being the result of constructive interference from P and S earthquake waves. (MVL)
Descriptors: Earth Science, Earthquakes, Higher Education, Natural Disasters

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

King, Chris – School Science Review, 2001
Details an 'explanatory Earth story' on plate tectonics to show how such a 'story' can be developed in an earth science context. Presents five other stories in outline form. Explains the use of these stories as vehicles to present the big ideas of science. (DDR)
Descriptors: Earth Science, Elementary Education, Foreign Countries, General Science

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

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

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