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resource project Public Programs
Cornell University will utilize planning grant funds to conduct front-end research to inform a major citizen science effort targeting Latino families in six major US cities. Partnering organizations include the New York Restoration Project (New York), Aspira of Illinois, Inc. (Chicago), Youth Policy Institute (Los Angeles), Chicanos Por la Causa, Inc. (Phoenix), the Children's Museum of Houston (Houston), and Aspira of Florida, Inc. (Miami) Project deliverables for the planning effort include culturally responsive research and subsequent dissemination of findings. The Garibay Group will create profiles of partner communities and conduct focus groups with potential project participants to examine attitudes towards science, interest in participatory science activities, tools (online bird identification, data entry, and data visualization tools), and technologies. The research will also include an analysis of existing data from interviews previously conducted by project partners. The research results will provide insights into effective strategies for engaging Latino audiences in citizen science efforts.
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resource project Media and Technology
The Carnegie Science Center (of Carnegie Institute) and Carnegie Mellon University (Center for Light Microscope Imaging and Biotechnology, a National Science Foundation Science and Technology Center, and The Studio for Creative Inquiry) have initiated a collaborative project that portends to change in a dramatic fashion the planetarium theater as a tool for informal science education. After several months of preliminary discussions and, now, the beginning of work, the creative team has been assembled that is defining the vision and executing the program of this exciting project. The vision being formulated is the transformation of The Henry Buhl Jr. Planetarium into a new visualization environment to achieve an interdisciplinary and interactive group learning experience. We call this new concept the "Group Immersive Visualization Environment (GIVE). GIVE will accomplish much of the impact of virtual reality by combining "three-dimensional" images generated by Evans & Sutherland's Digistar Projection System with real and animated, high-resolution video computer images and multimedia and by providing direct audience-control of program direction via The Henry Buhl Jr. Planetarium's elaborate 156-seat, electronic response system. While we anticipate the eventual production of a series of programs in a variety of subject fields, the first to utilize GIVE will be "Journey to the Center of the Cell," a 35-minute presentation. The treatment will convey an experience of self-discovery and natural wonder as audiences transport themselves through striking visualizations of the living cell. Production and evaluation of "Journey to the Center of the Cell" and the development of the Group Immersive Visualization Environment will occur under the auspices of staff of The Henry Buhl Jr. Planetarium, key personnel from Carnegie Mellon University, evaluator Harris H. Shettel, and an Advisory Panel consisting of key planetarium and eductional professionals. Program production packages, incorporating compatible components of "Journey to the Center of the Cell," will be produced, marketed and distributed to public and school planetariums; and a Teacher Resource Kit containing supplementary educational materials in the form of video tapes, CD-ROMS and computer disks wil extend the program's reach into the classroom. Special relationships and viewing times will be offered at The Henry Buhl Jr. Planetarium targeting Pittsburgh inner city schools and regional districts containing large percentages of underserved and minority students.
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TEAM MEMBERS: Paul Oles D. Lansing Taylor Martin Ratcliffe
resource project Exhibitions
The Field Museum will develop a 10,000 sq. ft. exhibit "Life Underground: Foundations of the Biosphere." This exhibit will introduce visitors to underground ecosystems and the importance of soil upon which we all depend. Visitors will be invited to explore the diversity of underground organisms and the vital processes in which they participate. It will consists of three main parts: 1) Underground Expedition, where things will be enlarged 100 times life-size; 2) Changes Over Time, which will highlight the dynamic nature of soil communities and forces of change, and 3) a World Tour, which will compare soil communities from a variety of ecosystems including forests, grasslands, deserts, tundra, among others. The exhibit utilizes ideas and research from all four of the museum's academic disciplines -- botany, zoology, geology and anthropology and will incorporate hundreds of specimens from the museum's botany, mycology, and zoology collections to illustrate the diversity of organisms in and around the soil. Complementary educational programming will be developed and the project is especially targeting rural and inner city residents. School and community programs will extend the exhibit into classrooms, vacant lots, and community centers. The materials developed for use in a formal education setting will be integrated with current objectives of the existing curricula. In addition, on-line access to the content of the exhibit and complementary educational materials will be provided. The scheduled opening date for the exhibit is May, 1998 and during the ten year projected life span of the exhibit and complementary programming, it is expected that more than eight million people will be introduced to "Life Underground."
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TEAM MEMBERS: M. Frances Muraski-Stotz Gregory Mueller Debra Moskovits
resource project Media and Technology
As part of its overall strategy to enhance learning in informal environments, the Advancing Informal STEM Learning (AISL) program funds innovative resources for use in a variety of settings. This project will develop and study a cyber-enhanced informal learning environment to improve observational practices and classification skills among citizen scientists. The project will focus on the taxonomic identification skills needed by volunteers to provide high-quality data for water quality monitoring of local streams, lakes, estuaries, wetlands, and ground water resources. To make the task of identifying freshwater insects easier and more engaging, the project will develop an innovative educational resource, the Macroinvertebrate Identification Training Environment, that will use zoomable high-resolution images, interactive media, and annotations of diagnostic features to improve perceptual skills. The goal is to increase the confidence and accuracy of volunteers engaged in identification tasks, while also increasing the reliability and quality of the data they are generating for purposes of scientific research and conservation efforts. This interdisciplinary design research and development project will use networked gigapixel image technology to create a visual environment where users can move seamlessly from full panoramic views of macroinvertebrates to extreme close-ups, with embedded text, images, graphics, audio, and video at various locations and zoom levels. This system will be developed in concert with a cognitive apprenticeship training model designed through a series of design studies. The design studies will be conducted over a two-year period and will include examination of the distinguishing features of various biomonitoring programs, reviews of existing training materials and strategies, expert performance analysis of professional entomologists, and development of user interface features. Project developers will collaborate with five regional volunteer biomonitoring organizations to engage a diverse set of volunteers in the design process, including rural populations, older adults, urban youth, and the trainers who support them. The project work will consist of four integrated strands of activity: design-based learning research, creation of an entomological teaching collection, cyberplatform development, and the external evaluation of the training system. The resulting Macroinvertebrate Identification Training Environment will be evaluated in terms of its impacts on volunteer accuracy, confidence, and engagement in taxonomic classification activities related to macroinvertebrates. The impacts of the learning system on trainers and volunteer biomonitoring organizations will also be examined.
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resource evaluation Exhibitions
Today, there exists a greater need to connect people to nature. Stemming from exploratory work into useful nature exhibit practices, the Wildlife Conservation Society aims to develop a new family exhibit–Safari Adventure–along with related programs and institutional practices, to better connect the families in our urban community to nature. This Logic Model outlines the impacts, activities, outputs, outcomes, and impacts for future development of this project, based on our exploratory investigation that included benchmarking trips, advisor and local educator workshops, community focus groups
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TEAM MEMBERS: Wildlife Conservation Society Lee Patrick
resource research Public Programs
This dissertation examined changes in urban youth’s attitude towards science as well as their perception of the informal science education setting and third space opportunity provided by the BioBus, a mobile science lab. Findings from this study suggested that urban youth’s attitude towards science changed both positively and negatively in statistically significant ways after a BioBus visit and that the experience itself was highly enjoyable. Furthermore, implications for how to construct a third space within the urban science classroom and the merits of utilizing the theoretical framework
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TEAM MEMBERS: Jared Fox
resource research Media and Technology
Project Exploration’s week-long summer Environmental Adventurers program immersed eleven Chicago Public School middle and high school students into the world of urban bees and biodiversity research. We employed a place-based approach to ground learning experiences and exploration within uniquely urban spaces. Students used mobile technology to explore the environment, document native bees, and engage in authentic fieldwork research and data analysis. Students maximized the potential of the technology in ways that forced program leaders to rethink the potential of mobile technology as an
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TEAM MEMBERS: Jameela Jafri Gabrielle Lyon Stephanie Madziar Rebecca Tonietto Project Exploration Chicago Botanic Garden Northwestern University
resource evaluation Public Programs
The “Being Me” program was developed to bring the educational process to life through hands-on learning that promotes children’s awareness of health issues and encourages scientific inquiry in an art-focused curriculum supporting National Science Content Standards (now Next Generation Science Standards, or NGSS). In 2009, the “Being Me” partnership – Children’s National Medical Center (CNMC), the National Children’s Museum (NCM), and George Washington University’s Graduate School of Education and Human Development (GW) – received a five-year National Institutes of Health Sciences Education
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TEAM MEMBERS: Children’s Research Institute John Fraser
resource project Public Programs
This project develops an interdisciplinary and transformative in- and out of-school science education and technology program that engages high school aged youth and their teachers in 1) the production of food using hydroponics, and 2) the use of green energy technologies (solar, and wind) to power hydroponic systems. This distinctive program integrates food production, a novel model of parental outreach, a focus on green career development, and an authentic reason (growing their own produce for selling at a market) for learning how and why to use alternative energy technologies. The project creates an approach to sustainability in which students not only give back to their community, but are in a position to provide a continuous revenue stream to the school in order to operate their indoor urban garden indefinitely. The partnership with the Boston Youth Environmental Network provides youth opportunities for summer internships with green energy companies. The project builds upon a learning progressions model in which youth gradually learn about complex scientific systems and economic principles throughout their years in the program. Rather than a onetime experience, youth are engaged in a long-term experience building their knowledge and skills regarding science, economics, and college preparedness. This project has the potential to impact thousands of students informally and over 2000 students (in classrooms) directly with a minimum of 60 students receiving focused and in depth learning experiences during the summer and on weekends during the school year. With the passage of laws encouraging local schools to partner with local farms, the need for locally grown produce will increase; in that context, the program brings the farm to the school in a way that allows food to be grown year round. Thus, a model is developed that any school or informal learning center could adopt to grow their own food while simultaneously creating a living and learning laboratory for youth in their own program.
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TEAM MEMBERS: George Barnett Eric Strauss David Blustein Catherine Wong Elizabeth Bagnani