HR: 1340h
AN: OS23A-1292 [Abstracts]
TI: Scientists Interacting With University Science Educators
AU: * Spector, B S
EM: spector@marine.usf.edu
AF: University of South Florida, College of Education
4202 East Fowler Ave. EDU 162, Tampa, FL 33620-5650
United States
AB:
Scientists with limited time to devote to educating the public about their work will get the greatest multiplier effect for
their investment of time by successfully interacting with university science educators. These university professors are the
smallest and least publicized group of professionals in the chain of people working to create science literate citizens. They
connect to all aspects of formal and informal education, influencing everything from what and how youngsters and adults
learn science to legislative rulings. They commonly teach methods of teaching science to undergraduates aspiring to teach in
K-12 settings and experienced teachers. They serve as agents for change to improve science education inside schools and at
the state level K-16, including what science content courses are acceptable for teacher licensure.
University science educators are most often housed in a College of Education or Department of Education. Significant
differences in culture exist in the world in which marine scientists function and that in which university science educators
function, even when they are in the same university. Subsequently, communication and building relationships between the
groups is often difficult. Barriers stem from not understanding each other's roles and responsibilities; and different reward
systems, assumptions about teaching and learning, use of language, approaches to research, etc. This presentation will
provide suggestions to mitigate the barriers and enable scientists to leverage the multiplier effect saving much time and
energy while ensuring the authenticity of their message is maintained.
Likelihood that a scientist's message will retain its authenticity stems from criteria for a university science education
position. These professors have undergraduate degrees in a natural science (e.g., biology, chemistry, physics, geology), and
usually a master's degree in one of the sciences, a combination of natural sciences, or a master's including about eighteen
hours in a natural science. Their doctorates in science education include in-depth understanding of how people construct
basic science concepts and ways to mitigate conceptions not consistent with current science. They have learned ways to
transform scientific information to various audiences enabling learners to construct meaningful understanding of science
phenomena, the nature of science, and its historical and philosophical underpinnings. Lessons learned from current and past
innovations will be presented.
DE: 4200 OCEANOGRAPHY: GENERAL
SC: Ocean Sciences [OS]
MN: 2004 AGU Fall Meeting