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resource research Media and Technology
Any development issue has mainly two dimensions — ‘interest of few and interest of many’, so is ‘science-communication’ as well, which leads to unwarranted but unavoidable uncertainties. Unless the former learn to sacrifice their ‘illegitimate interests’, the very objective of a development issue will continue to suffer, putting the latter at a risk of sacrificing their ‘legitimate interests’. The role of ‘science-communication’ is vital in today’s world, especially where complex issues of conflicting interests of science, industry, business, politics, and mass media are increasingly coming to
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TEAM MEMBERS: Manoj Kumar Patairiya
resource research Media and Technology
Throughout its existence JCOM has earned a special recognition as a space of confluence for the international community of science communicators, but how should be its immediate future? Here are some ideas inspired by which Italo Calvino’s suggested as the main characteristics for the literature of the 21st century, hoping to have a JCOM light, rapid, accurate, visible, multiple, consistent and comprehensive.
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TEAM MEMBERS: Juan Nepote
resource research Media and Technology
The JCOM I would appreciate reading should address in real time the emerging trends and pressing issues concerning Science in society; it would be targeted not only to researchers in STS et similia, but also to the constantly expanding universe of science communication practitioners; it would make sure to avoid the hidden forms of social exclusion which are dangerously lurking behind all communication activity, including science communication.
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TEAM MEMBERS: Matteo Merzagora
resource research Media and Technology
This paper brings some reflections on JCOM and, in general on a science communication journal, from the perspective of the developing world. It is highlighted the following top aspects of JCOM: open access; the language, that is, the fact that authors can write in their own languages and the article is translated into English; and the fact that JCOM welcomes contributions from every part of the world. The author considers JCOM a unique journal, which approaches science communication in a rich way and keeping a welcome intellectual diversity.
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TEAM MEMBERS: Luisa Massarani
resource research Media and Technology
The science & art research played an important role in the topics covered by JCOM because actually the convergence of languages and themes of art and science increasingly continue to act synergistically in the most diverse knowledge fields.
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TEAM MEMBERS: Alessandra Drioli
resource research Media and Technology
Scientific journalism ought to pay attention not only to the “products” of science, but also to the ways in which it operates in any given historical and political context. A critical analysis of the presently dominant rhetoric of innovation and unlimited growth is necessary to shed light on the relationship between science and democracy. Equally profitable would be a thorough investigation of past and present controversies on the role of scientists in decision-making.
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TEAM MEMBERS: Bruna De Marchi
resource research Public Programs
Various science events including Science Cafés have been held in Japan. However, there is the question whether these are events in which all people in society can participate? In particular, methods for checking whether or not the event attracts the participants targeted by the organizers have not yet been well established. In this paper, the authors have designed a simplified questionnaire to identify the participants’ attitudes toward science, technology and society, which can then be grouped into four clusters. When applied to various science cafés, the results revealed that participants
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TEAM MEMBERS: Shishin Kawamoto Nakayama Minoru Saijo Miki
resource project Public Programs
This is an efficacy study through which the Denver Museum of Nature and Science, the Denver Zoo, the Denver Botanic Gardens, and three of Denver's urban school districts join efforts to determine if partnerships among formal and informal organizations demonstrate an appropriate infrastructure for improving science literacy among urban middle school science students. The Metropolitan Denver Urban Advantage (UA Denver) program is used for this purpose. This program consists of three design elements: (a) student-driven investigations, (b) STEM-related content, and (c) alignment of schools and informal science education institutions; and six major components: (a) professional development for teachers, (b) classroom materials and resources, (c) access to science-rich organizations, (d) outreach to families, (e) capacity building and sustainability, and (e) program assessment and student learning. Three research questions guide the study: (1) How does the participation in the program affect students' science knowledge, skills, and attitudes toward science relative to comparison groups of students? (2) How does the participation in the program affect teachers' science knowledge, skills, and abilities relative to comparison groups of teachers? and (3) How do families' participation in the program affect their engagement in and support for their children's science learning and aspirations relative to comparison families?

The study's guiding hypothesis is that the UA Denver program should improve science literacy in urban middle school students measured by (a) students' increased understanding of science, as reflected in their science investigations or "exit projects"; (b) teachers' increased understanding of science and their ability to support students in their exit projects, as documented by classroom observations, observations of professional development activities, and surveys; and (c) school groups' and families' increased visits to participating science-based institutions, through surveys. The study employs an experimental research design. Schools are randomly assigned to either intervention or comparison groups and classrooms will be the units of analysis. Power analysis recommended a sample of 18 intervention and 18 comparison middle schools, with approximately 72 seventh grade science teachers, over 5,000 students, and 12,000 individual parents in order to detect differences among intervention and comparison groups. To answer the three research questions, data gathering strategies include: (a) students' standardized test scores from the Colorado Student Assessment Program, (b) students' pre-post science learning assessment using the Northwest Evaluation Association's Measures for Academic Progress (science), (c) students' pre-post science aspirations and goals using the Modified Attitude Toward Science Inventory, (d) teachers' fidelity of implementation using the Teaching Science as Inquiry instrument, and (e) classroom interactions using the Science Teacher Inquiry Rubric, and the Reformed Teaching Observation protocol. To interpret the main three levels of data (students, nested in teachers, nested within schools), hierarchical linear modeling (HLM), including HLM6 application, are utilized. An advisory board, including experts in research methodologies, science, informal science education, assessment, and measurement oversees the progress of the study and provides guidance to the research team. An external evaluator assesses both formative and summative aspects of the evaluation component of the scope of work.

The key outcome of the study is a research-informed and field-tested intervention implemented under specific conditions for enhancing middle school science learning and teaching, and supported by partnerships between formal and informal organizations.
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TEAM MEMBERS: Nancy Walsh Kathleen Tinworth Andrea Giron Ka Yu Lynn Dierking Megan John Polly Andrews John H Falk
resource research Public Programs
This chapter reviews four projects that reflect the principles of design-based implementation research (DBIR) in an effort to highlight a range of relevant theoretical and methodological perspectives and tools that can inform future work associated with DBIR.The goal of this chapter is to highlight a range of relevant theoretical and methodological perspectives and tools that can inform future work associated with design-based implementation research (DBIR). As Penuel, Fishman, Cheng, and Sabelli (2011) described, DBIR entails engaging “learning scientists, policy researchers, and
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TEAM MEMBERS: Jennifer Russell Kara Jackson Andrew Krumm Kenneth Frank
resource project Media and Technology
A new online and mobile resource for teens, Sparticl presents the best science, technology, engineering, and math (STEM) resources on the web. A team of experts has hand-selected articles, videos, games, hands-on activities, and other content that is age-appropriate, accurate, safe, and engaging. Teens and educators can explore and investigate, share and contribute—all the while earning points and badges.
The site is designed to allow teens to easily rate, comment on, and share their favorite games, articles, and activities. Users can create their own customized collections and submit new resources. The goal of Sparticl is to create an online destination that is irresistible to kids and valued by parents, teachers, and the scientific community, a destination where providers of high-quality STEM content will be proud to be included. Sparticl is created by the National Productions division of Twin Cities Public Television and is made possible with the generous support of 3M.
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TEAM MEMBERS: Richard Hudson
resource project Public Programs
The Palo Alto Junior Museum & Zoo offers a satisfying mix of interactive exhibit experiences, close-up animal viewing, and a warm, welcoming staff in a small-scale setting which makes it easily manageable for families with special needs. In recent years the JMZ has attracted and embraced this audience of often close-knit friends and organizations. In addition to an ongoing dialog with visitors at the institution, on multiple occasions JMZ has invited families to participate in community conversations to share their perspectives, experiences and suggestions.
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TEAM MEMBERS: Wendy Meluch Palo Alto Junior Museum & Zoo
resource project Public Programs
A partnership between Carthage College and the Appalachian Mountain Club has delivered a successful public education and outreach program that merges natural environment topics and astronomy. Over the four years of activity, over 25,000 people have received programming. The effort has trained nature educators, permanent and seasonal AMC staff, and undergraduate physics and astronomy students to integrate diverse topical material and deliver high quality programming to the lay public. Unique to the program is the holistic nature of the material delivered - an 'atypical' astronomy program. Linking observable characteristics of the natural world with astronomical history and phenomena, and emphasizing the unique sequence of events that have led to human life on Earth, the program has changed attitudes and behaviors among the public participants. Successful interventions have included hands-on observing programs (day and night) that link nature content to the observed objects; table-talk presentations on nature/astronomy topics; dark skies preservation workshops; and hands-on activities developed for younger audiences, including schools, camps, and family groups. An extensive evaluation and assessment effort managed by a leading sociologist has demonstrated the effectiveness of the approach, and contributed to continuous improvement in the program content and methods.
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TEAM MEMBERS: Douglas Arion