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Dorph, Rena; Schunn, Christian D.; Crowley, Kevin – Afterschool Matters, 2017
The Coalition for Science After School highlights the dual nature of outcomes for science learning during out-of- school time (OST): Learning experiences should not only be positive in the moment, but also position youth for future success. Several frameworks speak to the first set of immediate outcomes--what youth learn, think, and feel as the…
Descriptors: After School Programs, Science Programs, Science Interests, Competency Based Education
Bevan, Bronwyn; Ryoo, Jean; Shea, Molly – Afterschool Matters, 2017
This article outlines key findings of a study of STEM-rich afterschool Making programs offered by the four organizations participating in a project called the California Tinkering Afterschool Network. Over three years, the project identified key characteristics of inclusive and equity-oriented Maker activities and facilitation. It also defined the…
Descriptors: STEM Education, After School Programs, Creative Activities, Science Course Improvement Projects
Bevan, Bronwyn; Petrich, Mike; Wilkinson, Karen – Educational Leadership, 2015
Are makerspaces--where children can create gas-powered Roman chariots, singing greeting cards, or playdough circuit boards--just the site for a slightly wacky explosion of inventiveness? Or can these maker activities be channeled to support deep STEM learning? Bronwyn Bevan, director of the Exploratorium Institute for Research and Learning in San…
Descriptors: Science Activities, Class Activities, Teaching Methods, Hands on Science
Parker, Carolyn; Kruchten, Catherine; Moshfeghian, Audrey – Afterschool Matters, 2017
The STEM Achievement in Baltimore Elementary Schools (SABES) program is a community partnership initiative that includes both in-school and afterschool STEM education for grades 3-5. It was designed to broaden participation and achievement in STEM education by bringing science and engineering to the lives of low-income urban elementary school…
Descriptors: Student Projects, Urban Schools, STEM Education, Science Course Improvement Projects
Groome, Meghan; Rodríguez, Linda M. – Afterschool Matters, 2014
You have to stick with it. It takes time, patience, trial and error, failure, and persistence. It is almost never perfect or finished, but, with a good team, you can build something that works. These are the lessons youth learn when building a robot, as many do in the out-of-school time (OST) programs supported by the initiative described in this…
Descriptors: STEM Education, After School Programs, Robotics, Science Course Improvement Projects
Barker, Bradley S.; Nugent, Gwen; Grandgenett, Neal F. – International Journal of Technology and Design Education, 2014
In the United States and many other countries there is a growing emphasis on science, technology, engineering and mathematics (STEM) education that is expanding the number of both in-school and out-of-school instructional programs targeting important STEM outcomes. As instructional leaders increasingly train teachers and facilitators to undertake…
Descriptors: Fidelity, Program Implementation, STEM Education, Alignment (Education)
Bennie, Fiona; Corbett, Charlotte; Palo, Angela – Odyssey: New Directions in Deaf Education, 2015
This article describes an after-school program at the Horace Mann School for the Deaf (HMS), the oldest public day school for deaf students in the United States, where almost half of the student body imagined and created bridge and robotic machines. The Deaf Robotics Engineering and Math Team, or the DREAM Team club, included HMS students in…
Descriptors: After School Programs, Robotics, Deafness, Program Descriptions
Subramaniam, Mega; Ahn, June; Waugh, Amanda; Taylor, Natalie Greene; Druin, Allison; Fleischmann, Kenneth R.; Walsh, Greg – School Library Research, 2013
Within the school library community, there have been persuasive calls for school librarians to contribute to science learning. We present a conceptual framework that links national standards of science education ("Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas," referred to as…
Descriptors: Academic Standards, Science Education, School Libraries, Library Role
Rosen, Linda – Principal, 2012
STEM--science, technology, engineering, and mathematics--has become a fixture of the education debate, and much effort already has been put toward improving student performance. Yet troubling statistics persist: On the latest round of testing for the National Assessment of Educational Progress (NAEP), only 40 percent of fourth graders nationwide…
Descriptors: Partnerships in Education, STEM Education, School Business Relationship, Science Course Improvement Projects
Sherman, Helene J.; Catapano, Susan – Educational Research Quarterly, 2011
After-school programs specifically designed to improve students' mathematics achievement in collaboration with classroom teachers' planning and in class daily instruction have been found to be successful in improving student learning (Hock, Pulvers, Deshler, & Schumaker, 2001). The purpose of this article is to describe the results of an…
Descriptors: Urban Schools, Elementary School Mathematics, School Activities, Mathematics Achievement
Redmond, Adrienne; Thomas, Julie; High, Karen; Scott, Margaret; Jordan, Pat; Dockers, Jean – School Science and Mathematics, 2011
This case study reviewed the collaborative efforts of university engineers, teacher educators, and middle school teachers to advance sixth- and seventh-grade students' learning through a series of project-based engineering activities. This two-year project enriched regular school curricula by introducing real-world applications of science and…
Descriptors: Engineering Education, Mentors, Problem Based Learning, Teaching Methods