The aim of this research was to investigate the way in which parents of Grade One learners in a traditionally black school facilitate learning to help their children acquire mathematical skills and knowledge in mathematics, and also to help them become confidently involved in and give meaning to mathematics learning in Grade One. A questionnaire, which was compiled after an intensive literature study, was administered and semi-structured interviews were held. Data were analysed quantitatively and qualitatively, and it became evident that the parents of Grade One learners in the school used for
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TEAM MEMBERS:
I. EloffJ.G. MareeL.H. Miller
resourceprojectProfessional Development, Conferences, and Networks
The Coalition for Science After School (CSAS) was established in 2004 in response to the growing need for more STEM (science, technology, engineering, and mathematics) learning opportunities in out-of-school time. CSAS sought to build this field by uniting STEM education goals with out-of-school time opportunities and a focus on youth development. Over a decade of work, CSAS Steering Committee members, staff and partners advocated for STEM in out-of-school-time settings, convened leaders, and created resources to support this work. CSAS leadership decided to conclude CSAS operations in 2014, as the STEM in out-of-school time movement had experienced tremendous growth of programming and attention to science-related out-of-school time opportunities on a national level. In its ten-year strategic plan, CSAS took as its vision the full integration of the STEM education and out-of-school time communities to ensure that quality out-of-school time STEM opportunities became prevalent and available to learners nationwide. Key CSAS activities included: (1) Setting and advancing a collective agenda by working with members to identify gaps in the field, organizing others to create solutions that meet the needs, identifying policy needs in the field and supporting advocates to advance them; (2) Developing and linking committed communities by providing opportunities for focused networking and learning through conferences, webinars, and other outreach activities; and (3) Identifying, collecting, capturing, and sharing information and available research and resources in the field. The leadership of the Coalition for Science After School is deeply grateful to the funders, partners, supporters, and constituents that worked together to advance STEM in out-of-school time during the last decade, and that make up today's rich and varied STEM in out-of-school time landscape. We have much to be proud of, but as a movement there is much more work to be done. As this work continues to expand and deepen, it is appropriate for the Coalition for Science After School to step down as the many other organizations that have emerged over the last decade take on leadership for the critical work that remains to be done. A timeline and summary of CSAS activities, products, and accomplishments is available for download on this page. All resources noted in the narrative are also available for download below.
The Learning and Youth Research and Evaluation Center (LYREC) is a collaboration of the Exploratorium, Harvard University, Kings College London, SRI International and UC Santa Cruz. LYREC provides technical assistance to NSF AYS projects, collects and synthesizes their impact data, and oversees dissemination of progress and results. This center builds on the Center for Informal Learning in Schools (CILS) that has developed a theoretical approach that takes into account the particular strengths and affordances of both Out of School Teaching (OST) and school environments. This foundation will permit strengthening the potential of the NSF AYS projects to develop strong local models that can generate valid and reliable data that can guide future investment, design and research aimed at creating coherence across OST and school settings. The overarching questions for the work are: 1. How can OST programs support K-8 engagement and learning in science, and in particular how can they contribute to student engagement with K-8 school science and beyond? 2. What is the range of science learning outcomes OST programs can promote, particularly when in collaboration with schools, IHE's, businesses, and other community partners? 3. How can classroom teachers and schools build on children's OST experiences to strengthen children's participation and achievement in K-12 school science Additionally, the data analysis will reveal: 1. How OST programs may be positioned to support, in particular, high-poverty, female and/or minority children traditionally excluded from STEM academic and career paths; and 2. The structural/organizational challenges and constraints that exist to complicate or confound efforts to provide OST experiences that support school science engagement, and conversely, the new possibilities which are created by collaboration across organizational fields. Data will be gathered from surveys, interviews, focus groups, evaluation reports, and classroom and school data.
Children feed alphabet letters to a talking baby dragon, drive a New York City fire truck, paint on a six-foot art wall, and crawl through a challenge course in PlayWorks™ at the Children's Museum of Manhattan (CMOM) in New York. Manhattan’s largest public play and learning center for early childhood marries the skills that children need to succeed in kindergarten with fun stuff that kids love. The Institute of Museum and Library Services (IMLS) funded the project through a 2006 Museums for America grant to support the museum as a center of community engagement and lifelong learning. “PlayWorks™ is a joyful place for learning science, math, reading and other things. We incorporate fun and learning into the whole design to create a scaffold of learning. Families come to the museum to supplement preschool experiences,” said Andy S. Ackerman, CMOM’s executive director. The museum also offers parents, sitters, and other care-providers guidance on engaging their children with the exhibit. Based on the concept that children’s learning and personal growth is rooted in play, the 4,000-square-foot space is divided into five learning areas: Language, Math and Physics, Arts and Science, Imagination and Dramatic Play, and Practice Play (for infants and crawlers).
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TEAM MEMBERS:
Leslie Bushara
resourceprojectProfessional Development, Conferences, and Networks
This model science teacher retention and mentoring project will involve more than 300 elementary teachers in "Lesson Study" of inquiry science around school gardens. Drawing on the rich resources of the University of California Botanical Garden and the science educators at the Lawrence Hall of Science this project will develop Teacher Leaders and provide science content professional development to colleagues in four urban school districts. Using the rich and authentic contexts of gardens to engage students and teachers in scientific inquiry opens the opportunity to invite parents to become actively involved with their children in the learning process. As teachers improve their classroom practices of teaching science through inquiry with the help of school-based mentoring they are able to connect the teaching of science to mathematics and literacy and will be able to apply the lesson study approach in their teaching of other innovative projects. Teacher leaders and mentors will have on-going learning opportunities as well as engage participating teachers in lesson study and reflection aimed toward improving science content understanding and the quality of science learning in summer garden learning experiences and having context rich science inquiry experiences throughout the school year.
During half-hour sessions, four third grade girls and four third grade boys from a Long Island elementary school were observed individually while playing an early prototype of a computer game called 'Inventors' Workshop. The procedure involved assessment of student interpretation of the part visuals and renaming of parts once the game had been experienced; suggestions for additional parts; comprehension of the connection of parts; understanding of rotation feature; ability to respond to three different and successively more difficult challenges; ability to invent their own challenge for
Cyberchase produced a Math & Sports unit during Season 6. Focus groups with fourth graders were implemented to assess understanding of sports diagramming and using symbols to represent plays and ball passes. Cyberchase is the Emmy Award-winning mathematics series and website on PBS KIDS GO! using broadcast, web, new media and educational outreach to impact millions nationwide. Designed for children ages 8 to 11 and packed with mystery, humor, and action, Cyberchase's mission is to improve kids' problem-solving and math skills, and inspire them with confidence and enthusiasm toward math. The TV
To prepare for future summative research on the synergy among multiple educational media, the present pilot research explored real-life use of Cyberchase outreach materials. The present pilot study included: a Web survey of 48 outreach providers (representing over 3000 children in 19 states), follow-up phone interviews with 26 of these providers, and in-person observations at two outreach sites, one in New York and one in Massachusetts. With an eye toward future summative research, the resulting data yield conclusions and implications in two broadly defined areas: providers' use of Cyberchase
In this article, Marjorie Schwarzer, Professor of Museum Studies at John F. Kennedy University in Berkeley, California, describes eleven of the most influential exhibitions from the 20th century, according to NAME members surveyed for her book "Riches, Rivals and Radicals: 100 Years of Museums in America."
What's the BIG Idea? will infuse STEM content and concepts into librarians' practice in order to establish the public library as the site of ongoing, developmentally appropriate, standards-based STEM programming for young children and their families. This project will facilitate the infusion of STEM content and concepts into all aspects of library service -- programming, collections development, displays, newsletters, and bibliographies. Science educators and advisors will review and critique the project's STEM content. Building on prior NSF-funded projects, an experienced team of STEM developers and trainers will provide librarians with the content, skills and processes needed to stimulate innovative STEM thinking. Vermont Center for the Book (VCB) will train and equip librarians from three different library systems -- Houston, Texas, the Clinton-Essex-Franklin Library System in New York and statewide in Delaware. The strategic impact of this project is ongoing STEM programming for children and families in large, small, urban and rural libraries. VCB will investigate these questions, among others: How can the public library become a STEM learning center? What information, knowledge, training and materials do librarians need to infuse appropriate science and mathematics language and process skills into their practice and programming? Who are the community partners who can augment that effort? How can the answers to these questions be disseminated nationally? Innovation stems from: 1) STEM content to incorporate into their current practice and 2) skills and processes to create their own STEM programming. In addition, the results will be transferable to a wide range of libraries throughout the nation. The Intellectual Merit lies in augmenting librarians' current expertise so that they can incorporate STEM content and materials into all aspects of the library, a universal community resource. The Broader Impact lies in creating a body of content and approaches to programming that librarians all over the country can use to infuse mathematics and science language and content into their interactions with peers, children, families and the community. This will allow inquiry into what and how new informal STEM knowledge and practice can be effectively introduced into a variety of library settings.
Thirteen/WNET New York will develop and produce ten new episodes for a fifth season of Cyberchase. Broadcast daily on 340 PBS stations, Cyberchase has helped millions of children acquire a stronger foundation in mathematics. Cyberchase's content spans the 3rd-5th grade standards of the National Council of Mathematics. Ancillary materials, outreach and a highly popular Web site extend the learning and help make Cyberchase the sole mathematics media project available for the target age group of 8 to 11 year-olds. The new season will introduce a new campaign, "Math & Inventions: My Big Idea", to link mathematics and technology education and involve children in the invention process. These new programs will enrich the series' content while keeping viewers tuning in to the current shows. Plans include enhancing the Web site, building the inventory of multi-media outreach activities, strengthening the show's presence in after-school programs, and launching a new relationship with the museum community. Multimedia Research will conduct formative evaluation of two new elements to "My Big Idea" and a prototype of the online "Invention Machine." MediaKidz Research and Consulting (MRC) will conduct the pilot phase of a groundbreaking research study to evaluate the impact of varied media, and the interactions between the television series, Web site and outreach components, on children's mathematical thinking and attitudes toward mathematics.
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TEAM MEMBERS:
Sandra SheppardMichael TempletonBarbara Flagg
Geometry Playground created by The Exploratorium, playground designers Landscape Architecture, Inc., the Science Museum of Minnesota, Brooklyn Children's Museum, Sciencenter-Ithaca, and Science Works-Ashland is a 4,500-square foot traveling exhibition that includes immersive, table-top hands-on and electronic game elements on spatial and mathematical learning (Shape Garden, Surface City and Pattern Jungle); outdoor versions of selected exhibits from the full exhibition for public and school playgrounds and museums; and a Web site optimized for Web-enabled mobile phones.