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resource research Informal/Formal Connections
Gruenewald blends critical pedagogy and place-based education into a critical pedagogy of place. Critical pedagogies challenge the assumptions implicit in the dominant culture. Place-based education aims to educate citizens so they can influence their social and ecological spaces. Together, these perspectives provide a framework that enables citizens to act both locally and globally to protect their cultures and environments.
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TEAM MEMBERS: Heather King
resource research Informal/Formal Connections
The adoption of the Next Generation Science Standards (NGSS) means that many educators who adhere to model-based reasoning styles of science will have to adapt their programs and curricula. In addition, all practitioners will have to teach modeling, and model-based reasoning is a useful way to do so. This brief offers perspectives drawn from Lehrer and Schauble, two early theorists in model-based reasoning.
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TEAM MEMBERS: Kerri Wingert
resource research Informal/Formal Connections
In-class projects can be an effective way for students to learn subject material that relates to authentic problems people address outside of classrooms. Jurow investigated middle-schoolers’ participation in an in-school math project based on the premise of creating a research station in Antarctica. Students’ engagement with the project and meaning making with math content shifted as students navigated through the different and often competing figured worlds of the classroom and “Antarctica.”
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TEAM MEMBERS: Nicole Bulalacao
resource research Informal/Formal Connections
How and why students develop productive science learning identities is a key issue for the education community (see Bell et al, 2009). Carlone, Scott, and Lowder describe the changes in the science identities of three students as they move from fourth to sixth grade. The authors discuss the processes — heavily mediated by race, class, and gender — by which the students position themselves, or are positioned by others, as being more or less competent learners in science.
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TEAM MEMBERS: Heather King
resource research Media and Technology
Today’s standardized testing methods are too narrow for measuring 21st-century learning that occurs across time and diverse social contexts, from formal to informal and embodied to virtual. This paper uses the concept of “connected learning” to illustrate what 21st-century education involves; it then describes research methods for documenting this learning.
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TEAM MEMBERS: Jean Ryoo
resource research Public Programs
Feinstein and Meshoulam’s study examines the nature of equity work in museums and science centres across the U.S. Based on 32 interviews with leaders from 15 informal science education organisations, the authors identified two different perspectives, client and cooperative, each with its own strengths and implications for informal science education.
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TEAM MEMBERS: Heather King
resource research Media and Technology
Mobile technology can be used to scaffold inquiry-based learning, enabling learners to work across settings and times, singly or in collaborative groups. It can expand learners’ opportunities to understand the nature of inquiry whilst they engage with the scientific content of a specific inquiry. This Sharples et al. paper reports on the use of the mobile computer-based inquiry toolkit nQuire. Teachers found the tool useful in helping students to make sense of data from varied settings.
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TEAM MEMBERS: Heather King
resource research Public Programs
Rural and small public libraries provide a variety of critical services and information resources to meet the needs of residents across the United States. Recognizing the unique needs of rural communities, state governments and federal agencies support targeted programs to promote social and economic development. This IMLS research brief provides an overview of the state of small and rural libraries in the United States.
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TEAM MEMBERS: Institute of Museum and Library Services (IMLS) Deanne Swan Justin Grimes Timothy Owens
resource research Public Programs
There is a widely acknowledged, urgent need for improving and increasing science, technology, engineering and math (STEM) skills among our citizenry and students to navigate the modern world and access the opportunities it affords.  The need for a more STEM literate workforce has been discussed in respected reports such as “Rising Above the Gathering Storm” from the National Academies, and data on the workforce show clear benefits of a STEM‐related post secondary education in the current job market. This brief from the Afterschool Alliance explores the impacts and outcomes of afterschool STEM
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TEAM MEMBERS: Afterschool Alliance
resource research Media and Technology
There can be a mistaken impression that the new vision for K-12 science education is only relevant to classroom science instruction. But youth frequently engage in powerful science and engineering activities that take place after or outside-of-school. They learn STEM content, engage in STEM practices, and develop an understanding of how STEM is used in the world. To capitalize on those assets, educators and other stakeholders should learn about, leverage, and broker connections for youth across the STEM learning experiences available in and out of school.
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