The Golden Gate Bridge Highway Transportation District (GGBHTD), in collaboration with the Consortium of Universities for Research in Earthquake Engineering (CUREE), and in partnership with Princeton University, Stanford University, San Jose State University, the Sciencenter (Ithaca, NY), the Exploratorium (San Francisco), Eyethink, West Wind Laboratory, EHDD Architects, the American Public Works Association, and the International Bridge, Tunnel and Turnpike Association, is conducting a multi-faceted project about the science and engineering of the Golden Gate Bridge and about how public works facilities around the country can potentially become sites for public understanding of and engagement with science and engineering. GGBHTD, which operates and maintains the bridge, ferries and buses, hosts over 10-million visitors annually to their current visitor center at the south end of the bridge (San Francisco), serves an additional 2-million users of their ferries, and hosts a popular Web site (http://goldengatebridge.org/). The project deliverables are scheduled to coincide in 2012 with the 75th anniversary of the 1937 opening of the bridge. Educational products include: outdoor exhibits at the Golden Gate Bridge; exhibits about the bridge on the District's ferries; indoor exhibits at the Exploratorium; an expanded Web site with educational material about the bridge; an international conference in San Francisco around the time of the anniversary about public works as sites for informal science education; educational documents and a professional development program for public works staff from around the country; and a suite of publications for the public and professionals on public works research. The project involves a coordinated evaluation effort. Front-end and formative evaluation activities are being conducted by Inverness Research Associates. Summative evaluation will be conducted by David Heil & Associates.
This project is designed to bridge the "public understanding of science" radio model with a "public engagement with science" approach using a new public media tool - the "Public Insight Network". Radiolab, an innovative hour-long radio program has developed a highly innovative and successful format over the past 5 years that fosters interest and understanding in STEM based on audiences' natural curiosity. It has exposed non-science attentive listeners to transformative STEM concepts such as Stochasticity (physics, statistics, neuroscience), Musical Language (behavioral science, neurology, acoustics) and Space (mathematics, astronomy, technology, engineering). This project will expand the model using innovative online strategies that will connect listeners with working scientists, with each other and with the Radiolab hosts. This new model is grounded in the direct interaction of audiences and scientists which positions listeners as active creators and curators of content rather than passive recipients. The target audience is young adults 18 years old and above. Key organizational partners are The Public Insight Network (and their affiliation with the National Academies of Science), American Public Media, the Borough of Manhattan Community College and Brooklyn College. Project deliverables include 30 hour-long Radiolab programs for broadcast on public radio stations; interactive, user generated articles for the web site; live online chats, engagement "apps" for mobile smart phones; and live events at college campuses and science centers. In addition, the project will implement a mentorship program to train college-aged underrepresented students that have demonstrated an interest in science and/or science journalism. Formative evaluation will gather actionable information from audiences and scientists than can inform the design of the deliverables.The summative evaluation will assess the success of the strategy for engaging audiences in ongoing science learning. Audiences are projected to increase from the current base of 1 million radio listeners per season and 2 million podcast downloads per month. The intended learning outcomes for the audience include their gaining greater knowledge and exposure to current scientific research, and increased engagement by becoming participatory learners through online interactions with science professionals and other listeners.
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TEAM MEMBERS:
Ellen HorneJad AbumradRobert KrulwichSoren Wheeler
In this full-scale research and development project, Oregon State University (OSU), Oregon Sea Grant (OSG) and the Hatfield Marine Science Center Visitors Center (HMSCVC) is designing, developing, implementing, researching and evaluating a cyberlaboratory in a museum setting. The cyberlaboratory will provide three earth and marine science learning experiences with research and evaluation interwoven with visitor experiences. The research platform will focus on: 1) a climate change exhibit that will enable research on identity, values and opinion; 2) a wave tank exhibit that will enable research on group dynamics and problem solving in interactive engineering challenges; and 3) remote sensing exhibits that will enable research on visitor interactions through the use of real data and simulations. This project will provide the informal science educaton community with a suite of tools to evaluate learning experiences with emerging technologies using an iterative process. The team will also make available to the informal science community their answers to the following research questions: For the climate change exhibit, "To what extent does customizing content delivery based on real-time visitor input promote learning?" For the wave tank exhibit, "To what extent do opportunities to reflect on and share experiences promote STEM reasoning processes at a build-and-test exhibit?" For the data-sensing exhibit, "Can visitors' abilities to explain or use visualizations be improved by shaping their visual searches of images?" Mixed-methods using interviews, surveys, behavioral instruments, and participant observations will be used to evaluate the overall program. Approximately 60-100 informal science education professionals will discuss and test the viability of the exhibit's evaluation tools. More than 150,000 visitors, along with community members and local middle and high school students, will have the opportunity to participate in the learning experiences at the HMSCVC. This work contributes to the fields of cyberlearning and informal science education. This project provides the informal science education field with important knowledge about learning, customized content delivery and evaluation tools that are used in informal science settings.
Building on their successful traveling exhibition and Web site, "Invention at Play," funded by the NSF Informal Science Education Program, the Smithsonian's Lemelson Center for the Study of Invention and Innovation (National Museum of American History) in collaboration with Smithsonian Affiliates around the country developed "Places of Invention" (POI). Major deliverables included an interactive 3,300 square-foot permanent exhibition at NMAH and a Web site that focus on practicing inventive skill-building and illustrating the ways that place and social collaboration shape the creative process. The POI exhibition features six stories about "hot spots" of American invention from the mid-19th century to the present, each providing hands-on experiences that relate to particular "21st Century skills" and to the social, psychological, and spatial dimensions of invention, science, and engineering. The project also intends to establish a new model for the co-creation of exhibition content among NMAH visitors, Web site users, Lemelson Center staff, and 12 partnering Smithsonian Affiliate museums through an Interactive Map. Here both in-gallery and online visitors can explore stories and videos produced by NMAH and Smithsonian Affiliate staff (and their community partners) and also share stories of their own communities as “places of invention.”
Making Connections, a three-year design-based research study conducted by the Science Museum of Minnesota in partnership with Twin Cities' communities, is developing and studying new ways to engage a broader audience in meaningful Maker experiences. This study draws and builds on existing theoretical frameworks to examine how community engagement techniques can be used to co-design and implement culturally-relevant marketing, activities, and events focused on Making that attract families from underrepresented audiences and ultimately engage them in meaningful informal STEM learning. The research is being done in three phases: Sharing and Listening - co-design with targeted communities; Making Activities Design and Implementation; Final Analysis, Synthesis and Dissemination. The project is also exploring new approaches in museums' cross-institutional practices that can strengthen the quality of their community-engagement. In recent years, Making - a do-it-yourself, grassroots approach to designing and constructing real things through creativity, problem-solving, and tool use - has received increasing attention as a fruitful vehicle for introducing young people to the excitement of science and engineering and to career skills in these fields. Maker Faires attract hundreds and thousands of people to engage in Making activities every year, and the popularity of these events, as well as the number of museums and libraries that are beginning to provide opportunities for the public to regularly engage in these types of activities, are skyrocketing. However, Maker programs tend to draw audiences that are predominantly white, middle class, male, well educated, and strongly interested in science, despite the fact that the practices of Making are as common in more diverse communities. Making Connections has the potential to transform how children begin to cultivate a lifelong interest in engineering at a young age, which may ultimately encourage more young people of color to pursue engineering careers in the future.
The Massachusetts Linking Experiences and Pathways Follow-on (M-LEAP2) is a three-year longitudinal empirical research study that is examining prospectively how early formal and informal STEM education experiences are related to gender-based differences in STEM achievement-related choices in middle and high school. M-LEAP2 serves as a complement to - and extension of - a prior NSF-funded study, M-LEAP, which was a largely quantitative research study that followed overlapping cohorts of 3rd - 6th grade female and male students for three years. M-LEAP surveyed over 1,600 students, 627 student-parent pairs, and 134 second parents in 8 diverse public schools across Massachusetts. In contrast, M-LEAP2 is a heavily qualitative three-year study using in-depth interviews with a diverse range of 72 of these students and their families to study how formal and informal science experiences shape the students' science-related beliefs, interests, and aspirations as they progress though middle and high school.
This pilot study was funded by the Museum of Science’s Women in Science Committee to examine the impact of competition on children participating in Design Challenges engineering experiences, and in particular, to see what effect, if any, the competitive design of these engineering activities had on girl participants. The research questions for this study included: 1. How does competition affect participants' engagement in engineering activities? 1.a Does this differ for boys and girls? 2. How does competition affect participants' desire to take part in future engineering activities? 2.a. Does
The article focuses on children's makerspaces and the maker movement in Canada. Topics include the Nova Scotia government's idea to distribute 3D printers to libraries to create public makerspaces, which are collaborative meeting places that blend craft and high technology to foster do-it-yourself (DIY) solutions, the Maker Club in Kitchener, Ontario owned by entrepreneur Cam Turner and his son Owen, and the organization Scoperta, maker Jim Akeson's version of the organization Curiosity Hacked.
The article discusses the Maker Faires, a hybrid of science fairs, craft shows, and county fairs where people come to display what they have created and talk about what they learned. The faires are designed for people who work in places such as shops, garages, kitchen tables, schools, or science clubs, while they invent and innovate with new technologies, science, engineering, art performance and various crafts. The events' impact on economic development and education is mentioned.
The article focuses on the uTEC Maker Model, a maker education model that aims to help adults recognize behaviors they may only usually see in spurs. Topics discussed include using the item as intended by the inventor whose creative approach we trust, repurposing an item to use it in a different way than the inventor intended, and experimenting with an idea, invention, musical sound or video technique.
The article presents a brief overview of the Maker Movement and its connections to public libraries, focusing on the experiences of the Louisville Free Public Library of Louisville, Kentucky. Introductory details are given describing the movement, linking it to the expansion of community work spaces equipped with advanced machinery such as robotics tools and 3D printers. Several examples of maker-based organizations, subcultures, and resources are then given.
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TEAM MEMBERS:
Nicole DixonMichael WardEric Phetteplace
This longitudinal study examined factors that contribute to the persistence of underrepresented racial minority (URM) undergraduates in STEM fields. The primary source of data came from the Cooperative Institutional Research Program’s 2004 The Freshman Survey (TFS) and 2008 College Senior Survey (CSS). The sample included 3,670 students at 217 institutions who indicated on the TFS that they intended to major in a STEM field, 1,634 of whom were underrepresented minority (URM) students. Findings indicate that Black and Latino undergraduates were significantly less likely to persist in STEM
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TEAM MEMBERS:
Mitchell ChangJessica SharknessSylvia HurtadoChristopher Newman