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resource project Media and Technology
The University of Massachusetts Lowell and Machine Science Inc. propose to develop and to design an on-line learning system that enables schools and community centers to support IT-intensive engineering design programs for students in grades 7 to 12. The Internet Community of Design Engineers (iCODE) incorporates step-by-step design plans for IT-intensive, computer-controlled projects, on-line tools for programming microcontrollers, resources to facilitate on-line mentoring by university students and IT professionals, forums for sharing project ideas and engaging in collaborative troubleshooting, and tools for creating web-based project portfolios. The iCODE system will serve more than 175 students from Boston and Lowell over a three-year period. Each participating student attends 25 weekly after-school sessions, two career events, two design exhibitions/competitions, and a week-long summer camp on a University of Massachusetts campus in Boston or Lowell. Throughout the year, students have opportunities to engage in IT-intensive, hands-on activities, using microcontroller kits that have been developed and classroom-tested by University of Massachusetts-Lowell and Machine Science, Inc. About one-third of the participants stay involved for two years, with a small group returning for all three years. One main component for this project is the Handy Cricket which is a microcontroller kit that can be used for sensing, control, data collection, and automation. Programmed in Logo, the Handy Cricket provides an introduction to microcontroller-based projects, suitable for students in grades 7 to 9. Machine Science offers more advanced kits, where students build electronic circuits from their basic components and then write microcontroller code in the C programming language. Machine Science offers more advanced kits, which challenge students to build electronic circuits from their basic components and then write microcontroller code in the C programming language. Machine Science's kits are intended for students in grades 9 to 12. Microcontroller technology is an unseen but pervasive part of everyday life, integrated into virtually all automobiles, home appliances, and electronic devices. Since microcontroller projects result in physical creations, they provide an engaging context for students to develop design and programming skills. Moreover, these projects foster abilities that are critical for success in IT careers, requiring creativity, analytical thinking, and teamwork-not just basic IT skills.
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TEAM MEMBERS: Fred Martin Douglas Prime Michelle Scribner-MacLean Samuel Christy
resource research Media and Technology
In this study our goal is to conduct a "connective ethnography" that focuses on how gaming expertise spreads across a network of youth at an after-school club that simultaneously participates in a multi-player virtual environment (MUVE). We draw on multiple sources of information: observations, interviews, video recordings, online tracking and chat data, and hundreds of hours of play in the virtual environment of Whyville ourselves. By focusing on one particular type of insider knowledge, called teleporting, we traced youth learning in a variety of online and offlien social contexts, both from
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TEAM MEMBERS: Yasmin Kafai Deborah Fields
resource evaluation Media and Technology
Goodman Research Group, Inc. conducted a comprehensive multi-method external evaluation of the first season of the Design Squad TV series and outreach initiative. The broad evaluation goals were to: assess the extent to which children's knowledge, interest, and awareness of engineering increased as a result of watching the Design Squad series, document the implementation of community events resulting form the November 2006 Engineering Summit, and assess the effectiveness of the Afterschool Educators Guide with leaders and students.
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TEAM MEMBERS: Peggy Vaughan Emilee Pressman Irene Goodman WGBH
resource project Media and Technology
WGBH Educational Foundation is requesting funds to produce 20 new shows and new outreach and Web activities for "ZOOM," which will be renamed "Hot Seat." "Hot Seat" is a daily half-hour PBS television series targeted to kids ages 8 to 11. Uniquely by and for kids, the program gives its viewers a chance to explore, to experiment and to share their creativity. The series, along with its far-reaching outreach, offers its audience an innovative curriculum that promotes the acquisition of basic math and science knowledge and the development of problem solving skills called "Habits of Mind." The intended impacts are to: (1) establish a project that uniquely integrates television, the Web and outreach as a model for how media can teach science and math; (2) engage kids and teach them science and math content and process skills; (3) provide curriculum and professional development to organizational partners. Innovation includes developing three new content areas for the series -- Invention, Space Science and Earth Science -- and evolving the project design by incorporating new production techniques that enhance the "reality factor" of the science programming. Outreach for the project will include printed materials for kids, families and educators. A new collaborative partnership is being developed with the American Library Association to help distribute the new afterschool curricula to librarians across the country. "Hot Seat" will support the existing network of "ZOOM" outreach partners and convert the museum "ZOOMzones" to "Hot Seat Spots." "ZOOM" currently is carried by 269 public broadcasting stations and is viewed by 4 million children each week.
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TEAM MEMBERS: Kate Taylor
resource research Media and Technology
The focus of this paper is to turn our attention to the arts as an understudied area within the computer-supported collaborative learning community and examine how studying the learning of arts and programming can open new avenues of research. We document, describe, and analyze urban youths’ media arts practices within the context of the design studio, particularly by focusing on how collaboration, computation, and creativity play out within this context. We utilize a mixed methods design that draws upon three approaches: (1) participant observations; (2) media arts object analyses; and (3)
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TEAM MEMBERS: Kylie Peppler Yasmin Kafai