A three-day art project in an afterschool program with no specific arts component illustrates the potential—and the challenges—of engaging children in creating art using recycled materials.
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TEAM MEMBERS:
Angela EckhoffAmy HallenbeckMindy Spearman
This document describes the Dimensions of Success (DoS), an assessment tool created by researchers at the Program in Education, Afterschool, and Resiliency (PEAR). DoS was created to help out-of-school time programs and researchers monitor and measure quality. It allows observers to collect systemic data along 12 quality indicators to pinpoint the strengths and weaknesses of afterschool science learning experiences.
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TEAM MEMBERS:
Anahit PapazianAshima ShahCaitlin Rufo-McCormick
Although stakeholders agree that afterschool STEM education can be powerful, there is less agreement on the critical question of which aspects of STEM education the afterschool field is best positioned to support. Hence, in spring 2012, the Afterschool Alliance undertook a study to ask afterschool stakeholders what aspects of STEM learning the field is best positioned to support. The aim of the Afterschool STEM Outcomes Study was to identify consensus views on appropriate and feasible outcomes and indicators for afterschool STEM programs. The study provides a realistic vision of the field’s
The article discusses an effective physical science center, which can be incorporated on the reading instructions of teachers, the inclined plane center, that helps enhance science teaching. It mentions that to create an inclined plane center, one must collect various objects that roll, slide and wobble and wooden cove molding for the tracks. The author thinks that it is not necessary to understand everything about force and motion, what is important is offering students with opportunities for concrete experiences.
The article focuses on an educational program called Game Design Through Mentoring and Collaboration. The program is a partnership between McKinley Tech and George Mason University (GMU) in Fairfax, Virginia. Through this program the teachers ensure students understand the pathways needed for participation in the science, technology, engineering, and math (STEM) enterprise. Kevin Clark, is the principal investigator of the program.
The article offers information on using video games as a strategy for Science, Technology, Engineering and Math (STEM) learning. According to a study from the University of California, San Francisco, which says playing video games help develop learning capabilities in children. It discusses two games Portal and Minecraft which are used to design learning systems Teach with Portals (TWP) for teaching physics and mathematics, and MinecraftEdu for teaching engineering, physics and mathematics.
This paper suggests new strategies for introducing students to robotics technologies and concepts, and argues for the importance of providing multiple entry points into robotics. In particular, the paper describes four strategies that have been successful in engaging a broad range of learners: (1) focusing on themes, not just challenges; (2) combining art and engineering; (3) encouraging storytelling; (4) organizing exhibitions, rather than competitions. The paper describes a new technology, called the PicoCricket, that supports these strategies by enabling young people to design and program
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TEAM MEMBERS:
Natalie RuskMitchel ResnickRobbie BergMargaret Pezalla-Granlund
At the 1939–1940 New York World's Fair, several thousand boys and girls, all members of a growing national network of high school science and engineering clubs, displayed their science fair projects and conducted live experiments to more than 10 million visitors. Housed in the building sponsored by the Westinghouse Electric and Manufacturing Company, their exhibits depicted a wide range of scientific phenomena. They also represented the conflicting values of science educators and industrialists about the societal worth of science education. In some instances, students' projects and laboratory
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TEAM MEMBERS:
Sevan Terzian
resourceresearchProfessional Development, Conferences, and Networks
In this article, the author expresses her views on how science technology, engineering, and mathematics (STEM) standards can be developed to upgrade lifelong science learning. She mentions that the International Conference in the Learning Sciences (ICLS) that will be conducted by the International Society for the Learning Sciences (ISLS) will have an advantage to the development of the STEM standards. She also comments on the establishment of cyberlearning environments to improve science education.
Many adolescents develop ideas about and attitudes toward engineering through their exposure to out-of-school representations of science and technology. Yet few studies have investigated the nature of these representations and found ways to use them in formal engineering learning. This article explores media representations of science and technology that today's adolescents are familiar with. It analyzes how the embedded representations compare with those found in academic engineering and examines how these representations influence students' knowledge of and dispositions toward engineering
The article discusses how STEM (Science, Technology, Engineering, and Mathematics) education resources can be implemented in to public libraries and services for teenagers. The author notes that with an increased importance placed on STEM subjects, it is important for librarians to consider resources and programs for students beyond what they typically offer. The article lists suggested ways librarians can integrate STEM into public library work, including introducing STEM resources to students when visiting schools, promoting STEM programs to parents and educators, and creating STEM booklists
The article discusses ways racial and ethnic minorities are excluded from science, technology, engineering and math (STEM) fields. According to the article, the lack of minority STEM professionals in industries is blamed on their less rigorous early educational experience, lack of mentors and difficult work environment. Library staff can help alleviate many of these disadvantages through teacher education and thoughtful programming for students in a professional environment.