This article seeks to reflect on mediation in museums based on experiences that occurred in the “Learning in order to Teach” Project. In this case, the mediation acquires specific characteristics because it deals with young deaf people learning art-related contents in order to teach other youth in their first language. The most interesting aspect of this encounter between museum and deaf culture is a mutual, immediate and highly visible influence. While museum-goers and professionals understand that the “gestures” used by the deaf are not random (rather, on the contrary, they make up a
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TEAM MEMBERS:
Daina LeytonCibele LucenaJoana Zatz Mussi
The importance the Brazilian government has given in the last few years to the dissemination of science points out the necessity of a more discerning analysis about the establishment of this subject on the public agenda and the related public policies undertaken. This work tries to contribute to the debate as an inquiry about the policies to popularize and disseminate Science and Technology (S&T) established by the Science and Technology Popularization and Dissemination Department, which was created in 2004. In order to do so, theoretical references from Public Policy Analysis, the Studies of
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Marcia Tait LimaEdnalva Felix das NevesRenato Peixoto Dagnino
Although the generic subject of botanical garden history is increasingly well documented, botanical gardens lack a reflective historical commentary on the educational work of their institutions. Apart from individual garden monographs, and the work of Stafleu, Prest, and Spary, few authors have examined the socio-educational history of botanical gardens. Exceptions to this are Gilberthorpe's doctoral thesis, which critiqued changes in British botanical gardens in the 1980s, and Kleinman's doctoral study, The Museum in the Garden, which considered research, display, and education at The
This review takes a critical position with regards to Treagust and Duit’s article, Conceptual Change: A discussion of theoretical methodological and practical challenges for science education. It is proposed that conceptual change research in science education might benefit from borrowing concepts currently being developed in the sociology of emotions. It is further suggested that the study of social interaction within evolving emotional cultures is the most promising avenue for developing and extending theories about conceptual change.
This project proposes using three complementary strategies to engage, inform and inspire large audiences. (1) A national tour called "Stories from a Changing Planet" that will include in-person presentations and hands-on activities by Polar scientists at science centers, museums, libraries and schools across the country. (2) the "HiDef video Science Story Capture Corp" team of professional videographers HD footage will be made available as public domain materials accessible to government research agencies, universities,science centers and others. (3) Video and Audio podcasts distributed throught iTunes, google, Yahoo and IPY websites. The project will have front end, formative and summative evaluations.
This proposal is based on the PI's active research investigating the physical, chemical, spectroscopic and biological properties of boronic acid substituted chalcones, a subclass of flavonoid plant pigments. Functions of flavonoids include disease resistance, sunscreen protection, plant pigmentation and fertility. This project targets youth in Berrien County, Michigan providing them with hands-on activities involving natural plant pigments and their function. It also provides teachers with supplementary materials to Michigan's core science curriculum and informs the general public about the importance of research in developing a robust R&D sector in Berrien County's mixed economy. Outreach tools include the websites, DVDs, PowerPoint, poster presentations and the Benton Spirit Community Newspaper.
John Carroll University, Cleveland's International Women's Air and Space Museum and Cleveland Public Schools are partnering in a three-year project to provide a cross-age, collaborative exhibit development experience to increase young peoples' science understanding and interest in science and teaching careers. The program exposes 120+ high school and undergraduate women to the skills of educational program planning and implementation. Content includes science, technology, engineering and math related to flight, and the history and role of women in flight related careers. The project proposes a highly supportive learning environment with museum, science and education experts working alongside students at secondary and undergraduate levels to design exhibits that will meet the interest and needs of the museum, and the young children and families from Cleveland schools who visit. Through qualitative and quantitative methods, the evaluation will measure change in participant career interests, content understanding and perception of science, technology, engineering and math subjects, and skill development in presenting these concepts to public audience members. Public and professional audience experiences will also be evaluated. More than nine hundred local elementary school age children, their families and 15,000 general public audience members will participate in student-designed, museum-based exhibits and programs. Deliverables include a model for university/museum partnerships in providing exhibit development and science learning experiences, three team-developed permanent exhibits about flight and women in science, a set of biographies about women and flight in DVD format and three annual museum based community events. The model program will be informed by national advisors from museum/university partners across the United States who will attend workshops in connection with the projects public presentations in years one and two. These meetings will both provide opportunities to reflect on the program progress and to develop new strategies in the evolution of the program design. Workshop participants will develop plans to implement similar programs in their home locations, impacting another layer of public audiences. The transferability of the model to these new sites will be measured in year three of the proposal. An additional 25,000 participants are expected to be impacted in the five years following the grant period. Beyond the implementation sites, the model's impact will be disseminated by the PI and participants in the program through peer reviewed journals and presentations at national conferences.
NASA cloud observation project. Ground observation reports are compared to cloud information retrieved from satellite instruments in Earth orbit. Learn how to make and report a cloud observation at the time of a satellite overpass. Observations welcome from any interested observers, especially in places where official weather observations are rare. Get satellite overpass times, learn about making observations, report an observation, and explore the database of reported observations (which includes corresponding satellite data once they are available).
The Physics and Chemistry Education Technology (PhET) Project is developing an extensive suite of online, highly-interactive simulations, with supporting materials and activities for improving both the teaching and learning of physics and chemistry. There are currently over 70 simulations and over 250 associated activities available for use from the PhET website (http://phet.colorado.edu). These web-based resources are impacting large number of students. Per year, there are currently over 4 million PhET simulations run online and thousands of full website downloads for offline use of the simulations. The goal is that this widespread use of PhET's research-based tools and resources will improve the education of students in physics and chemistry at colleges and high schools throughout the U.S. and around the world. This PhET project combines a unique set of features. First, the simulation designs and goals are based on educational research. Second, using a team of professional programmers, disciplinary experts, and education research specialists enables the development of simulations involving technically-sophisticated software, graphics, and interfaces that are highly effective. Third, the simulations embody the predictive visual models of expert scientists, allowing many interesting advanced concepts to become widely accessible and revealing their relevance to the real world. And finally, the project is actively involved in research to better understand how the design and use of simulations impacts their effectiveness - e.g. investigating questions such as "How can these new technologies promote student understanding of complex scientific phenomena?" and "What factors inhibit or enhance their use and effectiveness?".
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TEAM MEMBERS:
Katherine PerkinsMichael DubsonNoah FinkelsteinRobert ParsonCarl Weiman