Pacific Science Center will expand its Science, Technology, Engineering and Math—Out-of-School Time (STEM-OST) model to new venues in the Puget Sound region to improve science literacy and increase interest in STEM careers for youth. STEM-OST brings hands-on lessons and activities in physics, engineering, astronomy, mathematics, geology, and health to elementary and middle school children in underserved communities throughout the summer months. The center will modify lessons and activities to serve students in grades K-2, align the curriculum with the Next Generation Science Standards, and increase the number of Family Science Days and Family Science Workshops offered to enhance parent involvement in STEM learning. The program will employ a tiered mentoring approach with outreach educators, teens, and education volunteers to increase interest in STEM content and provide direct links between STEM and workforce preparedness.
The National Federation of the Blind (NFB), with six science centers across the U.S., will develop, implement, and evaluate the National Center for Blind Youth in Science (NCBYS), a three-year full-scale development project to increase informal learning opportunities for blind youth in STEM. Through partnerships and companion research, the NCBYS will lead to greater capacity to engage the blind in informal STEM learning. The NCBYS confronts a critical area of need in STEM education, and a priority for the AISL program: the underrepresentation of people with disabilities in STEM. Educators are often unaware of methods to deliver STEM concepts to blind students, and students do not have the experience with which to advocate for accommodations. Many parents of blind students are ill-equipped to provide support or request accessible STEM adaptations. The NCBYS will expose blind youth to non-visual methods that facilitate their involvement in STEM; introduce science centers to additional non-visual methods that facilitate the involvement of the blind in their exhibits; educate parents as to their students' ability to be independent both inside and outside the STEM classroom; provide preservice teachers of blind students with hands-on experience with blind students in STEM; and conduct research to inform a field that is lacking in published material. The NCBYS will a) conduct six regional, two-day science programs for a total of 180 blind youth, one day taking place at a local science center; b) conduct concurrent onsite parent training sessions; c) incorporate preservice teachers of blind students in hands-on activities; and d) perform separate, week-long, advanced-study residential programs for 60 blind high school juniors and seniors focused on the design process and preparation for post-secondary STEM education. The NCBYS will advance knowledge and understanding in informal settings, particularly as they pertain to the underrepresented disability demographic; but it is also expected that benefits realized from the program will translate to formal arenas. The proposed team represents the varied fields that the project seeks to inform, and holds expertise in blindness education, STEM education, museum education, parent outreach, teacher training, disability research, and project management. The initiative is a unique opportunity for science centers and the disability population to collaborate for mutual benefit, with lasting implications in informal STEM delivery, parent engagement, and teacher training. It is also an innovative approach to inspiring problem-solving skills in blind high school students through the design process. A panel of experts in various STEM fields will inform content development. NCBYS advances the discovery and understanding of STEM learning for blind students by integrating significant research alongside interactive programs. The audience includes students and those responsible for delivering STEM content and educational services to blind students. For students, the program will demonstrate their ability to interface with science center activities. Students will also gain mentoring experience through activities paired with younger blind students. Parents and teachers of blind students, as well as science center personnel, will gain understanding in the experiences of the blind in STEM, and steps to facilitate their complete involvement. Older students will pursue design inquiries into STEM at a more advanced level, processes that would be explored in post-secondary pursuits. By engaging these groups, the NCBYS will build infrastructure in the informal and formal arenas. Society benefits from the inclusion of new scientific minds, resulting in a diverse workforce. The possibility for advanced study and eventual employment for blind students also reduces the possibility that they would be dependent upon society for daily care in the future. The results of the proposed project will be disseminated and published broadly through Web sites; e-mail lists; social media; student-developed e-portfolios of the design program; an audio-described video; and presentations at workshops for STEM educators, teachers of blind students, blind consumer groups, researchers in disability education, and museum personnel.
The project includes a simulation based Family Learning Program to be administered through the International Challenger Learning Center (CLC) network. The goal is to develop families' skills in learning as a team through science, math and technology (SMT) in an environment where parents and children are co-travelers in a world of ideas. PACCT is disseminated through ten of the Challenger Learning Centers reaching 22,000 families nationwide. Many of these activities are completed in the home at no cost to the anticipated 12,500 participating families. Through this network of centers, all types of communities are served in many states. The activities include Sim-U-Voyages, where family teams work at home; Sim-U-Challenges, where families create a physical model responding to a challenge; Sim-U-Visits, where families hear from scientists and work as scientists in a team solving a problem; and Sim-U-Ventures, which result in flying a mission. Cost sharing is 8%.
Soundprint Media Center is producing a series of 13 public radio documentaries entitled Exploring Space Science. The series will target a range of audiences: public radio listeners; listeners to radio reading services; visitors to planetariums, public libraries, and museums; teachers seeking additional information for core science subjects; and the parents and students who visit space science education centers. The programs will survey scientific inquiry into and from space. The series will include the architectures of the universe, the origins of the planets, global climate and atmospheric changes, and microgravity's effect on the human biomedical systems. A range of science will be covered including astrophysics, astronomy, planetary science, space policy, climatology and earth science, biomedical science, and the history of science.
Geoff Haines-Stiles Productions is producing and distributing a project that will follow the upcoming NASA 2003 Mars Exploration Rover project. To Mars with MER consists of three prime-time PBS programs scheduled to be broadcast to coincide with key events in the MER project: the day before the launch, the day before landing and after the 90 day surface mission. These programs will examine such mission milestones as key engineering tests and selecting where to land based on the scientific questions we have about Mars. The prime time specials will be edited and, along with additional live and taped video, distributed to science centers, planetariums, educational cable networks and schools with satellite or high-bandwidth Internet connections. Passport to Knowledge, a partner in the project, will adapt NASA's public domain materials and its own Live from Mars resources (teacher's guide, websites, etc.) to provide customized resources for teachers and students and for the parents and families who will be watching coverage of the mission on broadcast and cable. All materials will be made available online.
This project for six (6) months' duration will bring advisors and designers together to plan an environment of interactive touch-screen displays to draw high-school students and their parents into thoughtful consideration of careers in science, mathematics, and technology. Housed at Kennedy Space Center's Visitor Center and in keeping with the theme of space exploration, the visitor will become a crewmember on a future voyage and solve problems encountered on the journey via computer simulations. Veteran astronauts will narrate the scenarios, since they have actually encountered unexpected problems in space. The proposed final exhibit will have six (6) stations, each featuring a different episode and levels of complexity of a common storyline. After solving the problem using math, science, technology and critical thinking skills, a registration mechanism will enable the student to request information on spedific careers and information about post-secondary schools that offer such training.
The Space Science Institute of Boulder, Colorado in partnership with the Franklin Institute Science Museum and the Electric Producers Research Institute will develop a 3000 sq. ft. traveling exhibit entitled Electric Space: Exploring Our Plasma Universe. Visitors to the exhibit will be introduced to the physics of the sun and the polar aurora. They will learn about the effect solar variability has on technology and humans working in space. The exhibit is divided into seven sections: Space is Not Empty; SkyWatchers; Plasma: the Fourth State of Matter; The Dynamic Sun; Planet Earth: a Great Magnet; Reaching Toward the Starts: the Heliosphere; and The Cosmic Connection. Its design is guided by the desire to create a total immersion environment that will allow visitors to explore the many realm of the plasma university from Earth's upper atmosphere to distant galaxies. It is the developers intention to demystify science by concentrating on process rather than facts, to create a stimulating informal learning environment, to reach a diverse audience, to motivate young people to pursue science as an interest and a career, and to have the exhibit serve as an interface between the scientific community and the general public. In addition to the exhibit, supplemental curriculum modules using an inquiry-based approach will be developed in cooperation with the Science Discovery Project at the University of Colorado. These materials will provide teachers, students, and parents the opportunity to explore the concepts presented in the exhibit. An extensive evaluation plan will be carried. The exhibit will open at the Maryland Science Center the summer of 1995. It will then travel to nine major US cities reaching an estimated two million adults and children who represent a great diversity of ages and education an ethnic backgrounds.
How do we know the distance to a star? How do we know what a star is made of? How do we know how fast an object is moving? These questions are addressed in this 1,488 square foot permanent exhibit which emphasizes astronomical spectroscopy - the detailed analysis of light from astronomical objects. This interactive, bilingual (English/Spanish) exhibit will demonstrate different applications of spectroscopy that provide insight into the universe, and will provide opportunities for students, teachers, parents, and the general public to learn about the universe. Bilingual ancillary materials will be produced: pre- and post-visit materials for school visitors; a "Life at an Observatory" ten-minute orientation/information video to be shown at the visitor center. Target audiences are students in grades K-12, and general visitors.
The University of Texas at Austin requests $399,341 to expand the current Universo translations of StarDate into Spanish to more culturally relevant programs for a growing Hispanic audience. Plans include creation of longer programs with a different format for Hispanic Heritage Month for 1998-2000 and creation of complimentary collateral materials for distribution to 200 Spanish- language radio stations. Programs will also be distributed to 1,650 classrooms. A teacher's guide for using Universo in the classroom will be developed in English with activities available in both English and Spanish. A parent's guide to Universo/StarDate will also be produced to encourage parents to get involved in skywatching activities.
The University of Arkansas Center for Math and Science Education (CMASE), one of eleven mathematics and science centers on university and college campuses around the state, provides quality resources and materials to the home, private and public education community. The Arkansas NASA Educator Resource Center, located within CMASE, is the state's dissemination point for education materials provided by NASA. Resources and school/classroom presentations are free of charge. The main objectives of both centers are to provide: (1) K-16 education outreach to the home, private and public Northwest Arkansas education community; (2) quality professional development for pre-service and in-service teachers at local, regional, state and national levels; (3) access points for dissemination of educational materials, resources and information; and (4) links to common education allies throughout the state and nation.
This award-winning website includes a comprehensive collection of standards-based, space science education materials. Site visitors can explore a variety of resources such as A Hubble Gallery, Online Explorations, Tonight’s Sky, and Star Witness News science content readings. The “For Educators” side of site includes support materials such as science background information and overview pages that provide strategies for using Amazing Space activities in educational settings.
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Space Telescope Science InstituteBonnie Eisenhamer