The Zoo and Aquarium Action Research Collaborative research project targets zoo and aquarium staff with a cascading action research model meant to build the capacity of the informal science education field to conduct action research on visitor learning. Research questions focus on the experiences of participating zoo and aquarium staff in conducting action research on visitor experiences and how they use the information from that research to improve and develop educational programs. In the first year of the project, zoo and aquarium staff will implement a well validated educational activity with visitors to their institutions and learn how to develop and implement action research in their context. In the second year of the project, zoo and aquarium staff will take their new skills in action research and develop their own questions to investigate visitor learning in their own organizational settings. Project staff will train zoo and aquarium staff in action research, provide technical assistance and facilitate collaboration among the sites and staff. This project will contribute to learning in the field about how action research can be used to develop ISE staffs\' skills in data collection, data analysis and data-driven decision making. Partners in this project include TERC and Oregon State University, and sites are situated in zoos and aquariums in six states: CA, MO, MA, AZ, MD and WA. At each of these institutions approximately 15 senior staff will participate in the professional development. Evaluation of the project will focus on the learning that is generated about collaborative models for action research and the impact on ISE staff of participating in action research as professional development. Methods for the evaluation will include surveys and interviews with participants, observations, document review and site visits. Outcomes of the project include increased capacity for zoo and aquarium staff to conduct action research on visitor learning, case studies of collaborative action research projects that will be disseminated widely through workshops and conferences, and research papers presented at conferences and published.
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
The University of Pittsburgh's Center for Learning in Out-of-School Environments (UPCLOSE), the Carnegie Museum of Natural History, and the Robotics Institute at Carnegie Mellon University are building an open access cyberlearning infrastructure that employs super high-resolution gigapixel images as a tool to support public understanding, participation, and engagement with science. Networked, gigapixel image technology is an information and communication technology that creates zoomable images that viewers can explore, share, and discuss. The technology presents visual information of scientifically important content in such detail that it can be used to promote both scientific discovery and education. The purpose of the project is to make gigapixel technology accessible and usable for informal science educators and scientists by developing a robotic imaging device and online services for the creation, storage, and sharing of billion-pixel images of scientifically important content that can be analyzed visually. Project personnel are conducting design activities, user studies, and formative evaluation studies to support the development of a gigapan technology platform for demonstration and further prototyping. The project builds on and leverages existing technologies to provide informal science education organizations use of gigapixel technology for the purpose of facilitating three types of activities that promote participatory learning by the public--Public Understanding of Science activities; Public Participation in Scientific Research activities; and Public Engagement in Science activities. The long-terms goals of the work are to (1) create an accessible database of gigapixel images that informal science educators can use to facilitate public-scientist interactions and promote participatory science learning, (2) characterize and demonstrate the affordances of networked gigapixel technologies to support socially-mediated, science-focused cyberlearning experiences, (3) generate knowledge about how gigapixel technology can enable three types of learning interactions between scientists and the public around visual data, and (4) disseminate findings that describe the design, implementation, and evaluation of the gigapixel platform to support participatory science learning. The project\'s long-term strategic impacts include guiding the design of high-resolution images for promoting STEM learning in both informal and formal settings, developing an open educational resource and science communication platform, and informing informal science education professionals about the use and effectiveness of gigapixel images in promoting participatory science learning by the public.
TERC, in partnership with the Boston Museum of Science, will investigate deaf and hard-of-hearing museum visitors' use of App-based signing math and science dictionaries delivered on the iPod Touch. The project is employing a mixed-methods design to study how and the extent to which family visitors, ages 5-12+, and classroom visitors in grades K-12 use the dictionaries to access and communicate about exhibit content and engage in activities. Study participants will visit one of two preselected exhibit areas and do several activities that have Word Lists posted on the activity panels. The Word Lists include key terms for the activity that are also included in at least one of the dictionaries. They will then do several activities that do not have Word Lists posted. A coin toss will be used to randomly assign the first group of visitors to a starting Word List condition. The second group will then begin with the alternate Word List condition. From this point on, subsequent groups will continue to alternate the starting point. Data collection will include observation, videotaping, interviews, and surveys. Results of the study will be disseminated through a report of findings, presentations and publications.
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.”
The University of Central Florida Media Convergence Laboratory, New York Hall of Science, and the Queens Museum of Art are developing a 3-D, multi-user virtual environment (MUVE) of the 1964/65 New York World's Fair. Virtual fairgoers of all ages will be immersed in an accurately modeled historical world with more than 140 pavilions on science, technology, engineering, and mathematics (STEM) disciplines and an array arts and humanities exhibits. The virtual world can be freely explored through self-designed avatars, and avatar-led guided tours. Discovery Points throughout the virtual environment will afford opportunities for in-depth engagement in STEM topics that will empower participants to explore the broader consequences of technological innovations. The centerpiece of user-generated content is FutureFair, an area where online users can create and share their personal visions of the future. Interconnections reaches beyond its virtual component through its partnership with the New York Hall of Science and the Queens Museum of Art, which are both situated in the heart of Queens in Flushing Meadows Corona Park, a 1255 acre urban park that hosted the 1939/1940 and 1964/65 Fairs. The New York Hall of Science will provide face-to-face youth workshops that employ problem-based learning. Single and multi-session programs will connect adolescents to STEM content presented at the Fair through the virtual world environment. Participants will create multimedia content for inclusion in the project's website. Multi-touch interactive stations at the Queens Museum of Art will enhance their NY World's Fair Exhibit Hall by empowering visitors to individually or collectively explore various STEM topics and the symbiotic relationships between STEM and the humanities, and by serving as an attractor for visitors to the online Fair exploration. The project will be completed in time for the 50th Anniversary celebration of the 1964 World's Fair. Building upon prior research on learning in virtual worlds, the project team will investigate how STEM concepts are advanced in a simulated multi-user virtual environment and studying the effectiveness of using Virtual Docents as enhancements to the informal learning process. The research and development deliverables have strong potential to advance the state of informal science education, research on modeling and simulation in virtual world development, and education research. Michigan Technological University will conduct the project formative and summative evaluations.
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TEAM MEMBERS:
Lori WaltersMichael MoshellCharles HughesEileen Smith
The Maryland Science Center, in partnership with SK Films, Inc. received NSF funding to produce a large format, 2D/3D film and multi-component educational materials and activities on the annual migration of monarch butterflies, their life cycle, the web of life at select sites where they land, and the citizen science efforts that led to the monarch migration discovery. Project goals are to 1) raise audience understanding of the nature of scientific investigation and the open-ended nature of the scientific process, 2) enhance and extend citizen science programs to new audiences, and 3) create better awareness of monarch biology, insect ecology and the importance of habitat. Innovation/Strategic Impact: The film has been released in both 3D and 2D 15/70 format. RMC Research Corporation has conducted evaluation of the project, both formatively and summatively, including a study of the comparable strengths of the 2D and 3D versions of the film. RMC has conducting formative evaluation and is currently conducting summative evaluation to assess the success of project materials in communicating science and achieving the project's learning goals. Collaboration: This project employs a collaborative model of partnerships between the project team and the National Science Teachers Association (NSTA), the University of Minnesota's Monarchs in the Classroom and Monarch Watch. Project advisors represent world-renown monarch butterfly research scientists and educators, including Dr. Karen Oberhauser, named a "Champion of Change" by President Obama in June 2013, and Dr. Chip Taylor, founder and director of Monarch Watch at the University of Kansas.
The project, from Indiana University Purdue University Indianapolis (IUPUI), investigates the design, development and dissemination of metaphoric aural sound symbols (audemes), audeme dictionary and riddle audeme games to teach scientific concepts to 75-100 students who are blind and visually impaired (BVI). A number of research questions are included. How do audemes and sequences function as metaphors of STEM concepts? Which audeme game structures and strategies work best to engage BVI students? How do audemes and audeme games impact STEM education? The audeme-to-concept-to-audeme dictionary will build scientific concepts using standards, state-approved science textbooks, teachers and students. They will also examine secondary words that are associated with the science concepts by mining textbooks, identifying tertiary concepts, and establishing a preliminary dictionary of audemes. A team of education, students and professionals who are experts will design the audemes after multiple iterations. A control and experimental group of students will test the audemes through traditional methods and audeme games. Students will complete a pre and post test of scientific concepts with repeated measures ANOVA to examine changes on student scores from the control and experimental groups. This work using audemes to teach scientific concepts will make contributions to BVI, learning disabilities, and general population students. Audemes and audeme games have the potential for broad implementation in both formal and informal settings for computers, mobile, and other networked platforms.
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TEAM MEMBERS:
Steven MannheimerMathew PalakalDavide Bolchini
'TV411 What's Cooking?' provides adults with low levels of literacy and numeracy with access to a free multi-media resource which delivers mathematics and science content in the form of an online cooking show. This series builds on a prior NSF planning grant (DRL 07-75623) and the research-based design of the TV411 educational materials while addressing biochemical, physical, and mathematical processes that occur in cooking and daily life. The project will be managed by the Education Development Center's Adult Literacy Media Alliance (ALMA) project, in partnership with the Public Internet Channel, a New York-based Head Start Program, and formal education partners. The project's goals are to raise awareness of math and science content in daily life, overcome negative attitudes and behaviors related to science learning, and increase knowledge, vocabulary, and skills related to science and math while building capacity to use informal science education resources. Additional goals are to increase the capacity level of adult educators and informal workshop facilitators to teach basic math and science concepts. Finally, the project is designed to research strategies in which low-literacy adult learners utilize informal math and science resources in a Web 2.0 environment. Deliverables include six video segments that embed basic literacy and numeracy concepts in a cooking show format, 12 interactive web activities including games and simulations, and a reconstructed TV411 Online website with Web 2.0 features. In year 2, Spanish language videos and web lessons, customized toolkits for The Public Internet Channel, workshop materials for parents, and articles and reports for dissemination to education and informal learning networks nationwide are produced. The videos will be distributed on TV411 Online and the Public Internet Channel (pic.tv). The mixed-methods evaluation addresses four impact categories (awareness, engagement, attitudes, and behavior). An embedded evaluation approach will be used to determine knowledge gains, while behavioral and attitudinal questions will be asked separately in two web surveys given to random sample of 500 website visitors. Interviews are used to determine teacher perceptions of usability and effectiveness of materials. 'TV411 What's Cooking?' is projected to attract 1.5 million website visitors in the first year and an additional 500,000 each subsequent year. This well-researched project advances adult literacy and numeracy, while providing students participating in GED, adult basic education, and informal community-based programs with engaging STEM content.
Girl Scouts of Western Washington and Seattle University have collaborated to develop an innovative model for science learning in youth programs. By embedding training and support on science inquiry facilitation directly into existing Girl Scout systems, the project is empowering volunteers to effectively facilitate inquiry science explorations with youth. We are engaging a new audience in the delivery of informal science education: volunteers, predominantly adult women and mothers, in community settings beyond typical science environments. New volunteers participate in science inquiry at Girl Scout recruiting events and in their ongoing support meetings, and also receive training through a project-developed curriculum adapted from the NSF-funded Fundamentals of Inquiry. These classes engage volunteers (who may not be science content specialists) in direct experiences with inquiry, and teach them specific skills to help youth plan, carry out, and synthesize learning from inquiry investigations. Science inquiry processes are seamlessly integrated into broader lessons about implementing Girl Scout programming, thus positioning scientific inquiry as a normal, expected part of Girl Scouting. This sustainable, replicable model enables community youth programs to build volunteers' skills to support inquiry, while at the same time increasing the organizational capacity to sustain quality science programming. Three Girl Scout councils are currently replicating the project, and their experiences will inform the final designs of the curriculum and supporting documentation. The project's mixed-methods evaluation is being conducted by Evaluation & Research Associates.
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TEAM MEMBERS:
Jennifer SorensenStephanie Lingwood
resourceprojectProfessional Development, Conferences, and Networks
The Museum of Science, Boston, (MOS) is conducting a multi-phase project that builds on the groundwork laid by the 2009 report of the NSF/ISE-funded Center for Advancement of Informal Science Education (CAISE) Inquiry Group on the "public engagement with science" model (PES) in informal science education. In comparison to the Public Understanding of Science model (PUOS), where the emphasis is on a one-way transmission or translation of knowledge from experts to the public (often via the mediation of professionals in informal science education), the PES model calls for activities, events, or interactions that are characterized by mutual learning among people of varied backgrounds, scientific expertise, and life experiences, where perspectives, ideas, knowledge and values are articulated and discussed. The two-year project will explore the possibility of new large-scale collaborative public engagement activities, find topics and approaches that are of broad interest with the ISE community, identify potential partners and advisors, and develop future project plans and proposals. In its multi-phase process, MOS will first collect, analyze and publish case-study information about current PES activities using a "dimensions of PES" analytical tool to identify clusters of PES and PUOS activities across a broad spectrum of projects. After the data collection and analysis stage, a workshop of national and international professionals will be convened to explore the implications and identify future directions for the field. The project will produce and disseminate three reports: A summary of findings from the case study phase; a report of the findings of the workshop; and a summary of findings of the evaluation of the project and the impact on project participants.
SciGirls TV Series, Website and Outreach is a transmedia project to encourage and empower girls to pursue careers in STEM. It is the first television series on PBS designed specifically for middle school girls, ages 8 - 12. The approach is based on gender research and best practices for STEM education for girls. Each episode features different real girls in active science investigations and engineering projects, while the series is unified by two appealing animated characters. The innovative format of the show forges a unique link to the Website, which is an integral part of the TV show itself. This request will support: * The production of ten new television episodes; * Enhancement of the SciGirls website on pbs.org; * Use of new technologies to create a SciGirls Smartphone app and interactive games; * Expansion of the SciGirls Museum Affiliates collaborative; a new SciGirls Mentorship Program with the AAUW and other professional organizations of scientists and engineers; and development of a new partnership with the Girl Scouts of the USA. The project's strategic partners are the National Girls Collaborative Project (NGCP) in Seattle and The Franklin Institute in Philadelphia. The NGCP links SciGirls with its network of 500 community-based science programs for girls, and The Franklin Institute helps coordinate the Museum Affiliates, a network of science museums that implements SciGirls outreach activities. The project will also work with the Girl Scouts of America's new "Girl Scout Leadership Experience" program which emphasizes STEM learning. The most significant web component is a social networking feature that allows girls who are interested in science to connect with peers across the nation. To date, there have been over 800,000 unique visitors and 50,000 registered "SciGirls." SciGirls TV is produced by Twin Cities Public Television and distributed by PBS Plus. Launched in February 2010, SciGirls Season One broadcasts reached over 86% of U.S. households. In addition, all programs are streamed on pbskids.org and available on iTunes free of charge. The Spanish version will be distributed on V-me. Two separate project evaluations will be conducted. Dr. Barbara Flagg will evaluate how SciGirls improves girls' knowledge and understanding of science and engineering and gives them greater confidence in their abilities in STEM. Valerie Knight-Williams will investigate the use of SciGirls outreach materials with a national network of after-school educators.