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resource research Media and Technology
Nowadays, India is experiencing a widespread diffusion of science communication activities. Public institutions, non-governmental organisations and a number of associations are busy spreading scientific knowledge not only via traditional media but also through specific forms of interaction with a varied public. This report aims to provide a historical overview of the diffusion of science communication in India, illustrating its current development and its future prospects.
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TEAM MEMBERS: Marzia Mazzonetto
resource research Exhibitions
This article presents a case study of the design, development and evaluation of a science museum exhibition called Planetary Landscapes: Sculpting the Solar System. The exhibition was created by Chabot Space and Science Center in Oakland, California, in collaboration with the artist Ned Kahn. (A slightly smaller version has been traveling to science museums around the country, and has been sent to the Middle East and Asia.) This exhibition affords a chance to explore the work of a gifted artist as he seeks to merge art and science and create beautiful inquiry-based exhibits. The story also
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TEAM MEMBERS: Mark St. John Dawn Huntwork
resource project Media and Technology
Partnering with National Musical Arts, the Science Museum of Minnesota seeks to develop BioMusic, a 4,000 sq. ft. traveling exhibition that explores the origins of music in nature and the connections between music and sound of living things. This project is based on planning grant ESI-0211611 (The Music of Nature and the Nature of Music) awarded to NMA. The project is based on the emerging interdisciplinary research field of biomusic, which includes musicology plus aspects of neuroscience, biology, zoology, environmental science, physics, psychology, math and anthropology. The exhibit sections -- "Humanimal" Music; Natural Symphonies; Ancient Roots; Music, Body and Mind; and World of Music -- use both music and natural sound to explore biodiversity, cultural diversity, the physics of sound and the brain. BROADER IMPACT: The exhibition is expected to travel for at least six years, reaching some two million people in 18 communities. It is to be accompanied by a six-part radio series (Sweet Bird Classics) for young children. Because of the connection to music and many other areas of public interest, this exhibition has the potential to attract and engage new audiences to science museums and stimulate their interest in STEM.
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TEAM MEMBERS: J Newlin Wendy Pollock patricia gray
resource evaluation Exhibitions
In 2003 and 2004 a summative evaluation of the Jellies: Living Art exhibition was conducted. The exhibition is a 4,650 square foot special exhibition at the aquarium that is open from April 2002 through January 2005. It includes live displays of domestic and exotic jellies and a collection of artwork in a variety of media: paintings, sculpture, works on paper, and three large site-specific installations. Though the aquarium has displayed art previous to Jellies: Living Art, this exhibition represents the first time the aquarium has displayed both art and live species together. There were seven
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TEAM MEMBERS: Steven Yalowitz Jaci Tomulonis
resource project Public Programs
The New England Aquarium proposes to develop a traveling exhibition based on recent research implicating human activities in the worldwide increase in jellies. Humans are changing oceans so that they are becoming more suitable for jellies than for fish. The exhibition is expected to reach 12 million people -- primarily families with school-aged children -- across the nation. No jelly exhibit to date has shown jellies as important indicator species and ecosystem linchpins. Dissemination will include materials and programs for school and community outreach. A Sea Jelly Activity Kit and a community art/science program will be developed. In each year of the project approximately 100 urban teens will intern in the jelly culturing facility, where they can learn about the science of culturing jellies and present their experiences to the public.
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TEAM MEMBERS: Bonnie Epstein Steve Bailey
resource project Media and Technology
The Exploratorium will develop a series of Internet resources on three popular topics -- cooking, gardening, and making music -- to encourage users in science education activities in relation to daily activities. The three-year project will include the development and testing of resources that explore the science behind these topics, using the notion that we all, consciously or not, are "accidental scientists" who engage in the scientific process in the course of everyday life. Target audiences include general public adults and youth. Components of the site will feature aspects of cooking, gardening, and making music that are intended to appeal to diverse communities. The resources will also serve formal education through the Exploratorium's national and local network of educators.
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TEAM MEMBERS: Robert Semper
resource project Public Programs
The MIT Media Laboratory, in collaboration with six museums, will develop the "Playful Invention and Exploration (PIE) Network," with the goal of engaging a broader audience in science inquiry and engineering by enabling more people to create, invent and explore with new digital technologies. PIE museums will integrate the latest MIT technologies and educational research into their ongoing public programs. The museums will organize MindFest events, modeled after a two-day event at MIT in 1999, at which youth, educators, artists, engineers, hobbyists and researchers came together to collaborate on invention projects. The PIE Network will disseminate PIE ideas and activities to educators and families nationally.
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TEAM MEMBERS: Mitchel Resnick Natalie Rusk Bakhtiar Mikhak Mike Petrich Karen Wilkinson
resource project Media and Technology
Chabot Space and Science Center is developing an exhibit of Chinese astronomical artifacts and organizing a United States tour of the exhibit. "Dragon Skies: Astronomy of Imperial China" consists of 31 exhibit pieces, including seven large astronomical instruments, chronographs, stone carvings and star maps. Many of these artifacts have never before left China. In order to increase the awareness and understanding of students, teachers and the public about Imperial China's rich astronomical achievements, Chabot will develop a variety of interpretive materials and programs that address interests and learning styles, present scientifically and historically accurate information, and serve both informal and formal educational audiences. These materials will include a planetarium show, an audio tour, special signage, multimedia animations/interactive kiosks, a web site, student activities, community events, a science drama program, activities for the general public and a variety of printed materials. Many components will be developed in English, Mandarin and Cantonese.
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TEAM MEMBERS: Alexandra Barnett Cynthia Ashley Michael Reynolds
resource project Media and Technology
The investigators address a major educational challenge by introducing a novel format and content for science education, (a) building on past successes; (b) combining development and dissemination at a new level; and (c) centered around an interactive planetarium show aimed to inform the public on an emerging scientific discipline and medical field: Tissue Engineering. For achieving a multitude of goals, the investigators propose the establishment of a unique partnership in scientific and medical education, bringing together university researchers, clinical leaders, science center experts, and students, educators and community representatives at all levels. The project is catalyzed by the Pittsburgh Tissue Engineering Initiative, a non-profit organization dedicated to the promotion of tissue engineering and its application to improving people's lives. The main goals fall in three categories, as follows: Education: - To communicate scientific information about the human body (principles of function will be emphasized over specific facts or terminology by focusing on a limited but fundamental set). -To convey the excitement and importance of tissue engineering research. The show will utilize engaging interactive demonstrations of tissue functions and illustrate the medical uses and potential of this field. Innovation: - To enhance the educational experience. The developers will use group-interactive technology as a tool for education by engaging participants as participants in the processing functions of the body. A special visualization/interactivity laboratory will be used where prototype interactive scenarios will be tested using focus groups, consultants and representatives of the target audiences. Dissemination: - To insure national distribution to other planetaria. The presentation system will utilize portable interactive technology (to be developed). It will be deployed to planetaria throughout the country, coordinated by the Association of Science and Techology Centers (ASTC). - To engage the target audience in the development process. Content development will be achieved by a consortium of leading research universities and medical centers, with input from a panel of worldclass experts. Visualization, interactivity and sound technologies will be developed in Pittsburgh, in a unique collaboration between the arts and sciences, based on past successes. Evaluation activities will be extensive, as will the range and targets of the spin-off educational materials. The Carnegie Science Center planetarium itself will serve in achieving group immersive visualization, akin to virtual reality, for improving target audience involvement. The expected outcome is a new way of delivering educational content, and a better understanding of the emerging field of tissue engineering by the general public.
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TEAM MEMBERS: John Pollock