HR: 0800h
AN: ED51B-0415 [Abstracts]
TI: Bringing the ocean to the classroom: Using real scientific data to engage students in environmental stewardship
AU: * Rademacher, L K
EM: lrademacher@pacific.edu
AF: Department of Geosciences
University of the Pacific, 3601 Pacific Avenue, Stockton, CA 95211, United States
AU: Hill, T M
EM: tmhill@ucdavis.edu
AF: Department of Geology and Bodega Marine Laboratory, One Shields Avenue
University of California, Davis, CA 95616, United States
AU: Bean, J R
EM: bean@geology.ucdavis.edu
AF: Department of Geology, One Shields Avenue
University of California, Davis, CA 95616, United States
AU: Fisher, A
EM: a_fisher@pacific.edu
AF: Department of Geosciences
University of the Pacific, 3601 Pacific Avenue, Stockton, CA 95211, United States
AU: Myrvold, C R
EM: myrvold@geology.ucdavis.edu
AF: Department of Geology, One Shields Avenue
University of California, Davis, CA 95616, United States
AB:
Within the broad context of environmental concerns that include coastal pollution, global warming, and Gulf Coast
hurricanes, clear understandings of coastal processes and their response to change are essential for protection
of coastal resources. Multiple locations along the Pacific coastline near Bodega Bay, California, provide an
opportunity to collect a long-term data set of coastal morphology that students can use to examine environmental
change in the coastal environment over a variety of spatial and temporal scales. As part of this exercise,
undergraduate, general education students employ a variety of surveying tools, including total stations, laser
rangefinders, tape measures, and telescoping staffs to compile profiles of the beach face perpendicular to the
shoreline. Data collected by students are used to evaluate beach topography, sea cliff steepness, and the role of
vegetation and land use in the stability of the sea cliff at the various study locations. Finally, students interrogate
these data to evaluate erosion patterns and rates along the northern California coastline by comparing their
results to data collected by previous classes and similar sets of data collected from Southern California beaches.
While coastal erosion rates in Southern California are well understood, rates of erosion in Northern California
are poorly constrained; student data collected during this project will contribute to the broader knowledge of
coastal systems in California. Repetition of this exercise during the summer and winter seasons at the northern
California study sites over several years will provide a basis for monitoring long-term changes in beach
morphology and allow students to contribute to research on sea cliff and beach erosion rates. Thus, beach
profiles are an example of a simple exercise where students can make accurate measurements with simple
tools and relatively little training. In this example, the original data collected by students is added to long-term data
sets that can be creatively integrated in to classroom and laboratory activities designed to develop skills related
to data interrogation. Long-term data sets such as this allow continual evolution of guided instruction, as well as
genuine opportunities for open-ended research.
DE: 0800 EDUCATION
DE: 4217 Coastal processes
SC: Education and Human Resources [ED]
MN: 2007 Fall Meeting