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This guide gathers the ultimate reflections from the Erasmus+ project "Tinkering EU: Addressing the Adults." It was created for science centers, museums and other places of science education interested in exploring the potential of Tinkering for inclusive learning and engagement. It presents lessons learned about: The co-design and the development of the activities. Relevant elements to consider building meaningful relationships with the local communities. The contribution the project has given to each partner’s institutional change at a wider level. An interactive online
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resource research Informal/Formal Connections
Over the last year we have been able to take a few hours each week to step back from our current work, reflect on our assumptions, learn from others, and explore new ways that our research could both uncover and help dismantle inequities and racism in the STEM education system. This eBook, and the series of blog posts on which it is based, is the result of these conversations and this reflective process. Our goal is to explore the themes and ideas that emerged from the year and how these might fundamentally change the way we think about STEM, work with families and children, and conduct
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resource research Public Programs
A practical guide containing descriptions of 11 Tinkering activities for adult learners. It can be used by community development and informal learning practitioners working with adult groups. Some of the activities were newly developed while others were adjusted from already existing and tested activities. Special focus is given to activities suitable for adults from different backgrounds, taking into account different needs, interests and motivations. This publication is a product of Tinkering EU: Addressing the Adults, funded with support from the Erasmus+ Programme of the European Union.
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TEAM MEMBERS: Sarah Funk
resource research Public Programs
This document is aimed primarily at Informal Learning (IFL) educators working with adult learners from disadvantaged and underserved communities, who wish to: exploit the inclusive nature of Tinkering to create engaging and relevant STEM learning experiences for adult learners and their families better understand how and why collaboration and co-design with community organisations can help develop more inclusive programming in STEM learning for adults. It can also serve as a useful reference for community leaders and adult educators wishing to collaborate with the IFL sector
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TEAM MEMBERS: Emily Harris Mark Winterbottom
resource research Media and Technology
This short (approximately 2-3 hours), self-paced non-credit learning module is designed for those new to conducting research in communities impacted by energy development. You will learn about the concept of “research fatigue” and become more prepared for fieldwork by learning what to expect when you visit energy-impacted communities. Access is free for students, researchers and those living in or serving communities impacted by energy development. Participants who complete the online course can a digital badge called Understanding Research Fatigue. Earners of this certification will
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TEAM MEMBERS: Suzi Taylor Julia Hobson Haggerty Kristin Smith Ruchie Pathak
resource research Public Programs
This workbook / planning guide was designed as an outreach tool to support students and early-career researchers who are studying the social impacts of energy development and wish to better understand and mitigate “research fatigue,” a state in which citizens of a community who are already experiencing massive change may be exhausted by additional attention from researchers, the media and others outside the community. The workbook can be used as a stand-alone resource or as a complement to the Understanding Research Fatigue online module (https://eu.courses.montana.edu/CourseStatus.awp
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TEAM MEMBERS: Suzi Taylor Julia Hobson Haggerty Jeffrey Jacquet Gene Theodori Kathryn Bills Walsh
resource research Public Programs
Tinkering is an approach to learning increasingly adopted within informal learning settings to engage people with STEM learning (science, technology, engineering and mathematics). It builds on ideas in inquiry-based pedagogy and exploits some of the most engaging and motivational elements of learner-centered, immersive and hands-on learning approaches to develop 21st century skills such as critical thinking, creativity, collaboration, problem solving, communication, responsibility, self-confidence, digital literacy and entrepreneurship. In a Tinkering activity, the learner is presented with
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TEAM MEMBERS: Emily Harris Mark Winterbottom Inka de Pijper Vanessa Mignan MARIA XANTHOUDAKI
resource research Public Programs
Engaging with Tinkering is a highly stimulating and complex experience and invites rich reflections from museum practitioners and teachers. "Tinkering as an inclusive approach for building STEM identity and supporting students facing disadvantage or with low science capital” presents the reflective practice process and tools designed by the "Tinkering EU: Building Science Capital for All" project aiming to understand in more depth the potential impact of using a Tinkering approach with students facing disadvantage. Using tools specifically designed to help teachers observe their students
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TEAM MEMBERS: Emily Harris Mark Winterbottom MARIA XANTHOUDAKI
resource research Public Programs
It’s a simple idea. Introduce a kid to a scientist, and let the child ask questions—whatever they wonder about. Then ask the child to reflect a little on the conversation when it’s over by drawing a picture or writing a few words. This is the gist of Science Storytellers, a program founded by freelance science writer Jennifer Cutraro. At the ACS national meeting in Boston last month, C&EN partnered with Science Storytellers to bring this program to the ACS Kids Zone event held at the Boston Children’s Museum. Modeled after the approach professional journlists use in their work, Science
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TEAM MEMBERS: Jessica Marshall
resource research Public Programs
Tinkering creates a bridging point between a learner’s personal interests and experiences and a broad range of possible learning outcomes. It offers valuable opportunities to engage all students in STEM and fosters a more inclusive STEM education. In this way, it is very much aligned with a Science Capital Teaching Approach: fundamentally, it is a highly personalised pedagogy, which allows the learner to follow their own interests and set their own goals. This resource has been designed to help teachers integrate the Tinkering approach and the Science Capital framework in their practice
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TEAM MEMBERS: MARIA XANTHOUDAKI
resource research Public Programs
Computer science education is rapidly being recognized as essential for all students to develop into successful citizens of the 21st century. A diverse group of stakeholders, including educators, business and industry, policymakers, and parents all agree on the importance of computer science. Significant workforce needs in particular are driving the push for computer science education. In comparison to all other U.S. job categories, computing is projected to have the largest percent growth between 2014 and 2024. And this projected growth may not even entirely capture the full number of
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TEAM MEMBERS: Afterschool Alliance