HR: 08:00h
AN: ED11D-01 INVITED [Abstracts]
TI: Cultivating Citizen Scientists in the Undergraduate Science Classroom
AU: * Egger, A E
EM: annegger@stanford.edu
AF: School of Earth Sciences
Stanford University, 450 Serra Mall, Bldg 320, Stanford, CA 94305-2115, United States
AB:
Several studies indicate a strong correlation between the number of college science courses and science
literacy. It is not surprising, then, that the majority of participants in citizen science projects are college graduates
who enrolled in at least two science courses. If one goal of citizen science projects is to increase civic science
literacy, research suggests that most are preaching to the choir.
Attracting a wider audience to citizen science is, therefore, a key challenge. One way to address this challenge is
to attract students to enroll and succeed in science courses in college, even if they do not pursue a major in the
science, technology, engineering, and mathematics (STEM) disciplines. In fact, only 20% of students receive a
degree in STEM, yet virtually all undergraduates are required to take at least one science course. Introductory
science courses are therefore critical to cultivating citizen scientists, as they include a large proportion of non-
STEM majors.
Indeed, a major thrust of recent undergraduate STEM educational reform has been the promotion of 'science for
all'. The science for all concept goes beyond recruiting students into the STEM disciplines to promoting a level of
scientific literacy necessary to make informed decisions. A clear implication of this inclusive attitude is the need to
redesign introductory science courses to make them accessible and explicitly related to scientific literacy. This
does not mean dumbing down courses; on the contrary, it means engaging students in real scientific
investigations and incorporating explicit teaching about the process of science, thus fostering a lifelong
appreciation for (and, hopefully, participation in) science.
Unfortunately, many students enter college with minimal understanding of the process of science. And when they
arrive in their introductory classes, science is presented to them as a system of facts to be memorized –
comparable to memorizing a poem in a foreign language without understanding the vocabulary. New resources
available through the Visionlearning project (http://www.visionlearning.com) provide the means to incorporate
teaching about the process of science into disciplinary content, thus facilitating the reform the way that
undergraduate students are taught science at the introductory level. This kind of educational reform may be a
long-term approach to developing citizen scientists, but research from several different disciplines and
perspectives suggests it is a critical step in building scientific literacy and lifelong participation in science.
UR: http://www.visionlearning.com
DE: 0810 Post-secondary education
DE: 0820 Curriculum and laboratory design
DE: 0825 Teaching methods
SC: Education and Human Resources [ED]
MN: 2007 Fall Meeting