Lack of diversity in science and engineering education has contributed to significant inequality in a workforce that is responsible for addressing today's grand challenges. Broadening participation in these fields will promote the progress of science and advance national health, prosperity and welfare, as well as secure the national defense; however, students from underrepresented groups, including women, report different experiences than the majority of students, even within the same fields. These distinctions are not caused by the students' ability, but rather by insufficient aspiration, confidence, mentorship, instructional methods, and connection and relevance to their cultural identity. The long-term vision of this project is to amplify the impact of a successful broadening participation model at the University of Maine, the Stormwater Research Management Team (SMART). This program trains students and mentors in using science and engineering skills and technology to research water quality in their local watershed. Students engage in numerous science and technology fields: engineering design, data acquisition, analysis and visualization, chemistry, environmental science, biology, and information technology. Students also connect with a diversity of professionals in water and engineering in government, private firms and non-profits. SMART has augmented the traditional science and engineering classroom by engaging students in guided mentored apprenticeships that address community problems.
Technical
This pilot project will form a collaborative and define a strategic plan for scale-up to a national alliance to increase the long-term success rate of underrepresented minority students in science, engineering, and related fields. The collaborative of multiple and varied organizations will align to collectively contribute time and resources to a pre-college educational pathway. There are countless isolated programs that offer short-term interventions for underrepresented and minority students; however, there is lack of organizational coordination for aligning current program offerings, sharing best practices, research results or program outcomes along the education to workforce pathway. The collaborative activities will focus on the transition grades (e.g., 4-5, 8, and high school) and emphasize relationships among skills, confidence, culture and future careers. Collaborative partners will establish a centralized infrastructure in each location to coordinate recruiting of invested community leaders, educators, and parents, around a common agenda by designing, deploying and continually assessing a stormwater-themed project that addresses their location and demographic specific needs. This collaborative community will consist of higher education faculty and students, K-12 students, their caregivers, mentors, educators, stormwater districts, state and national environmental protection agencies, departments of education, and other for-profit and non-profit organizations. The collaborative will address the need for research on mechanisms for change, collaboration, and negotiation regarding the greater participation of under-represented groups in the science and technology workforce.
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Mohamed MusaviVenkat BhethanabotlaCary JamesVemitra WhiteLola Brown
In this essay, I argue that the rise of personal genomics is technologically, economically, and most importantly, discursively tied to the rise of network subjectivity, an imperative of which is an understanding of self as always already a subject in the network. I illustrate how personal genomics takes full advantage of social media technology and network subjectivity to advertise a new way of doing research that emphasizes collaboration between researchers and its members. Sharing one’s genetic information is considered to be an act of citizenship, precisely because it is good for the
The Jackprot is a didactic slot machine simulation that illustrates how mutation rate coupled with natural selection can interact to generate highly specialized proteins. Conceptualized by Guillermo Paz-y-Miño C., Avelina Espinosa, and Chunyan Y. Bai (New England Center for the Public Understanding of Science, Roger Williams University and the University of Massachusetts, Dartmouth), the Jackprot uses simplified slot-machine probability principles to demonstrate how mutation rate coupled with natural selection suffice to explain the origin and evolution of highly specialized proteins. The
The Citizen Science Central site developed by CLO clearly meets its goal of providing guidance and resources to individuals and organizations engaged in, or interested in undertaking, citizen science, volunteer monitoring, or participatory action research initiatives. The site embodies the ideas and insights generated by the Citizen Science Toolkit conference. In terms of the evaluation objectives, the evidence from the user surveys show that the site meets both of the standards listed below. Ease of use, sufficiency, and appropriateness of Citizen Science Central content Quality and
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Stephanie ThompsonCornell University
The University of California-Davis and its collaborators are identifying and testing strategies for implementing a model citizen science program that links the statewide Master Naturalist program with local citizen science projects that engage the public in environmental scientific research. The goals of the project are to develop a mechanism for broadening the reach of master naturalist and citizen science programs, and measure the impact of these programs on participants' science learning and environmental stewardship behavior. The project is (1) implementing strategies for engaging underserved audiences (young adults and communities of color) and enhancing learning for seniors in the California Naturalist program, (2) developing and testing a citizen science training module, (3) establishing two regional volunteer naturalist networks in Northern California that have links to local citizen science projects, and (4) developing web tools for use by program providers and naturalists to connect to projects and promote science learning. Project deliverables include training sessions, support services, network coordination, web tools, research on impacts on science learning, and participant tracking. By bringing together young and older adults to learn together, merging these audiences will result in the formation of a diverse corps of citizen naturalists who participate in ecological monitoring of local natural areas and conduct land stewardship activities. The project's findings will help program administrators scale-up the approach statewide and across the nation.