In this article, Julie Bowen, vice president, content, at TELUS Spark in Calgary, Alberta, Canada, explores the current state of exhibitions in the field and speculates on the future direction of exhibits. Bowen discusses new innovative trends in the field.
Many scientists and science educators are concerned about the public’s ambiguous relationship with science and this public includes elementary teachers. Like many citizens, too many elementary teachers find science disconnected from everyday life and thinking. Science is a “school” subject − not an important part of everyday life. Some may believe that science conflicts with important personal beliefs they hold about other areas of life such as religion and art. Elementary teachers who feel this disconnection with science will at best approach science teaching as something one does if school
The Maker Movement is inspiring thousands of young people across the nation to tinker with and tackle problems involving design, engineering and programming. This report from the third Making Meaning Symposium takes a critical look at describing and documenting learning that takes place when young people make. The symposium brought together nearly 150 makers, funders, educational researchers, educators from K–12 and informal settings, museum and community based leaders, and policymakers. The aim of this national symposium was to craft a strategy for documenting the variety of learning and
Science and Engineering Indicators (SEI) is first and foremost a volume of record comprising the major high-quality quantitative data on the U.S. and international science and engineering enterprise. SEI is factual and policy neutral. It does not offer policy options, and it does not make policy recommendations. SEI employs a variety of presentation styles—tables, figures, narrative text, bulleted text, Web-based links, highlights, introductions, conclusions, reference lists—to make the data accessible to readers with different information needs and different information-processing preferences
What is science for a child? How do children learn about science and how to do science? Drawing on a vast array of work from neuroscience to classroom observation, Taking Science to School provides a comprehensive picture of what we know about teaching and learning science from kindergarten through eighth grade. By looking at a broad range of questions, this book provides a basic foundation for guiding science teaching and supporting students in their learning.
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TEAM MEMBERS:
National Research CouncilRichard DuschlHeidi SchweingruberAndrew Shouse
Launched in 2010, the NMC Horizon Report: Museum Edition expanded the NMC Horizon Report series to provide insight on the entrance of new tools and applications in the museum sector. The Museum Edition examines emerging technologies for their potential impact on and use in education and interpretation within the museum environment. This edition is made possible by the generous support of the Edward and Betty Marcus Foundation and the Marcus Institure for Digital Education in the Arts.
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TEAM MEMBERS:
The New Media ConsortiumJohnson, L.Witchey, H.Smith, R.Levine, A.Haywood, K.
Learning Science in Informal Environments draws together disparate literatures, synthesizes the state of knowledge, and articulates a common framework for the next generation of research on learning science in informal environments across a life span. Contributors include recognized experts in a range of disciplines--research and evaluation, exhibit designers, program developers, and educators. They also have experience in a range of settings--museums, after-school programs, science and technology centers, media enterprises, aquariums, zoos, state parks, and botanical gardens. Learning Science
A Framework for K-12 Science Education outlines a broad set of expectations for students in science and engineering in grades K-12. These expectations will inform the development of new standards for K-12 science education and, subsequently, revisions to curriculum, instruction, assessment, and professional development for educators. This book identifies three dimensions that convey the core ideas and practices around which science and engineering education in these grades should be built.
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TEAM MEMBERS:
Board on Science Education
resourceresearchProfessional Development, Conferences, and Networks
This research study was designed to explore and document the current “landscape” of the informal science education community. The authors outline the theoretical framework used to approach their research, research goals and design, methods, results, and conclusions and recommendations. Based on the authors' preliminary and exploratory investigation, they argue that currently the ISE community does not function as an effective community of practice. However, many of the pieces that are necessary for ISE to become a true community of practice are currently in place. The report raises the
This white paper is the product of the CAISE Formal-Informal Partnerships Inquiry Group, which began work during a July 2008 ISE Summit organized by CAISE. Their examination of what the authors call "the hybrid nature of formal-informal collaborations" draws on relevant theoretical perspectives and a series of case studies to highlight ways in which the affordances of formal and informal settings can be combined and leveraged to create rich, compelling, authentic, and engaging science that can be systematically developed over time and settings.
This white paper is the product of the CAISE Public Engagement with Science Inquiry Group. It describes how public engagement with science (PES) in the context of informal science education can provide opportunities for public awareness of and participation in science and technology. The term engagement is characterized by mutual learning by publics and scientists rather than a one-way transmission of knowledge from experts to publics.
This white paper is the product of the CAISE Public Participation in Scientific Research Inquiry Group. It describes how public participation in scientific research (PPSR) through informal science education can provide opportunities to increase public science literacy.