HR: 08:30h
AN: ED11A-03 INVITED [Abstracts]
TI: Spatial Visualization in Introductory Geology Courses
AU: * Reynolds, S J
EM: sreynolds@asu.edu
AF: Arizona State University, Dept Geol Sciences
ASU, Tempe, AZ 85287-1404
United States
AB:
Visualization is critical to solving most geologic problems, which involve events and processes across a broad range of space
and time. Accordingly, spatial visualization is an essential part of undergraduate geology courses. In such courses,
students learn to visualize three-dimensional topography from two-dimensional contour maps, to observe landscapes and extract
clues about how that landscape formed, and to imagine the three-dimensional geometries of geologic structures and how these
are expressed on the Earth's surface or on geologic maps. From such data, students reconstruct the geologic history of
areas, trying to visualize the sequence of ancient events that formed a landscape.
To understand the role of visualization in student learning, we developed numerous interactive QuickTime Virtual Reality
animations to teach students the most important visualization skills and approaches. For topography, students can spin and
tilt contour-draped, shaded-relief terrains, flood virtual landscapes with water, and slice into terrains to understand
profiles. To explore 3D geometries of geologic structures, they interact with virtual blocks that can be spun, sliced into,
faulted, and made partially transparent to reveal internal structures. They can tilt planes to see how they interact with
topography, and spin and tilt geologic maps draped over digital topography. The GeoWall system allows students to see some
of these materials in true stereo.
We used various assessments to research the effectiveness of these materials and to document visualization strategies
students use. Our research indicates that, compared to control groups, students using such materials improve more in their
geologic visualization abilities and in their general visualization abilities as measured by a standard spatial visualization
test. Also, females achieve greater gains, improving their general visualization abilities to the same level as males.
Misconceptions that students carry obstruct learning, but are largely undocumented. Many students, for example, cannot
visualize that the landscape in which rock layers were deposited was different than the landscape in which the rocks are
exposed today, even in the Grand Canyon.
UR: http://reynolds.asu.edu
DE: 6605 Education
SC: Education and Human Resourcese [ED]
MN: 2004 AGU Fall Meeting