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resource research Media and Technology
Technoscience is deeply linked to national cultures across terrains as diverse as medicine, agricultural biotechnologies, ICTs, energy technologies, etc. Understanding the cultural dimension of technoscience is vital for the project of socialisation. This project should be embedded in technological and political cultures, taking variation in cultural approaches to technoscience, national identity and political decision-making seriously. Socialisation of science and technology in Europe should therefore approach socio-technical developments in a way that allows for the emergence of
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TEAM MEMBERS: Erik Aarden
resource project Public Programs
The National Science Festival Network project, also operating as the Science Festival Alliance, is designed to create a sustainable national network of science festivals that engages all facets of the general public in science learning. Science Festivals, clearly distinct from "science fairs", are community-wide activities engaging professional scientists and informal and K-12 educators targeting underrepresented segments of local communities historically underserved by formal or informal STEM educational activities. The initiative builds on previous work in other parts of the world (e.g. Europe, Australasia) and on recent efforts in the U.S. to create science festivals. The target audiences are families, children and youth ages 5-18, adults, professional scientists and educators in K-12 and informal science institutions, and underserved and underrepresented communities. Project partners include the MIT Museum in Cambridge, UC San Diego, UC San Francisco, and the Franklin Institute in Philadelphia. The deliverables include annual science festivals in these four cities supported by year-round related activities for K-12 and informal audiences, a partnership network, a web portal, and two national conferences. Ten science festivals will be convened in total over the 3 years of the project, each reaching 15,000 to 60,000 participants per year. STEM content includes earth and space science, oceanography, biological/biomedical science, bioinformatics, and computer, behavioral, aeronautical, nanotechnology, environmental, and nuclear science. An independent evaluator will systematically assess audience participation and perceptions, level/types of science interest stimulated in target groups, growth of partnering support at individual sites, and increasing interactions between ISE and formal K-12 education. A variety of qualitative and quantitative assessments will be designed and utilized. The project has the potential to transform public communication and understanding of science and increase the numbers of youth interested in pursuing science.
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TEAM MEMBERS: Loren Thompson Jeremy Babendure Ben Wiehe
resource research Public Programs
At the 1939–1940 New York World's Fair, several thousand boys and girls, all members of a growing national network of high school science and engineering clubs, displayed their science fair projects and conducted live experiments to more than 10 million visitors. Housed in the building sponsored by the Westinghouse Electric and Manufacturing Company, their exhibits depicted a wide range of scientific phenomena. They also represented the conflicting values of science educators and industrialists about the societal worth of science education. In some instances, students' projects and laboratory
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TEAM MEMBERS: Sevan Terzian
resource evaluation Public Programs
This application requested (and received) an exemption from the consent requirement. The key in this application is that all data collection was done anonymously.
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TEAM MEMBERS: University of California, San Diego Loren Thompson Jeremy Babendure
resource project Media and Technology
The Synthetic Biology Engineering Research Center (SynBERC) at the University of California-Berkeley is designing an interactive web portal and public forum, Ars Synthetica, to communicate SynBERC's research on synthetic biology, an emerging field that builds on advances in molecular, cell, and systems biology. Synthetic biologists will soon design and fabricate biological entities to accomplish particular tasks. Biological materials properties (gene sequences, protein properties, natural genetic circuit design) must be formulated into a set of design rules that can be used to engineer new biological entities. These design issues raise ethical concerns among the public and will form the core focus of Ars Synthetica. The forum will use Omeka, an open source software platform that will afford research scientists and the public with the ability to engage in community-wide discussions and debates, and will be customized to utilize a variety of media, such as articles, photo essays, and video vignettes addressing key questions surrounding synthetic biology. The forum will provide numerous links to research articles, data, and relevant websites, including SynBERC's synthetic biology website and the Anthropology of the Contemporary websites. Video webcasts will include guest lecturers with diverse perspectives on synthetic biology aimed at both scientists and the public, which will be disseminated on social networks, such as YouTube, Flickr, and WordPress blogs. The forum has the potential to make a significant impact on public discourse on science, as well as provide an important new exemplar for public engagement in research that can be replicated in other fields of science and informal science education.
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TEAM MEMBERS: Jay Keasling Paul Rabinow