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resource project Public Programs
During the 3 years of this project, 72 high school and middle school teachers and 36 students will work as members of atmospheric research teams studying each of ten airshed around the Portland, OR metropolitan area. Each summer's activities include a 4-week atmospheric interaction research course and a one-week air quality measurement campaign during a pollution episode. Transfer to the classroom is anticipated through action research projects during the academic year. An interactive webpage will enable all partners to access data, real time models of the atmosphere, and descriptions of the action research projects. A lead high school will serve as the Horizons-Air site for an airshed zone and will work collaboratively with four other middle/high schools, the Horizons-Met sites.
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TEAM MEMBERS: Linda George Daniel Johnson William Becker
resource project Exhibitions
The Museum of the Rockies will plan an exhibit "The Rockies Rise Again." When completed, this exhibit will illustrate evolving Cenozoic landscapes and life forms as understood through research conducted by the museum's staff in the Northern Rocky Mountain region. This exhibit will provide the natural historical context for visitors as they explore the cultural history exhibits that will follow this section. Together, the Museum's exhibits will illustrate the theme "One Place Through All of Time." With this award they will engage in a series of planning activities will include a front-end evaluation study of the public's knowledge and interest in this subject, consultation with expert advisors, review of related Cenozoic exhibits in selected natural history museums, and a two-day symposium which will include a dialogue about the exhibit concepts between the scientists and the public to help complete the plan. They will also hire an educator to develop an educational plan that will link the exhibit with the needs of teachers and will address national and state science standards. Special attention will be given to developing materials and dissemination strategies that will serve educators in this largely rural setting. At the end of the twelve month planing period they will have a completed exhibit and education plan and will be able to move forward with the exhibit.
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TEAM MEMBERS: Bonnie Sachatello-Sawyer Christopher Hill
resource project Public Programs
The Astronomical Society of the Pacific requests $1,348,428 to enhance the dissemination of Project ASTRO in communities by building new capability into an existing network to serve the "whole family". Family ASTRO will consist of the following components: Six Family Astronomy Kits, in English and Spanish, each consisting of a suite of hands-on activities that can be done with simple materials that are available to a wide range of families. All families will have the capability to perform these activities. A Family Astronomy Events Manual to help partners and site leaders use star parties, Sun, Moon, and Shadows sessions, and other larger group astronomy events into the project. Training protocols and materials at three levels: to train the families in doing astronomy activities directly, to train the astronomy/teachers partners to work with families and to train regional site leaders on the best ways to work with their local partners to start their own Family ASTRO program. The project will have a strong focus on families of underserved populations in science by continuing the work of Project ASTRO sites in urban areas such as Chicago and San Francisco, and in rural areas like southern New Mexico.
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TEAM MEMBERS: Andrew Fraknoi
resource project Public Programs
The Astronomical Society of the Pacific requests $1,317,701 over three years to implement its California pilot project to six sites around the country. Each site will establish local, self- sustaining coalitions linking science centers, astronomical institutions, school districts, and community groups. These coalitions will, with training and support from the national Project ASTRO staff, identify, link, and support the astronomer/teacher partners in their area to use the excitement of astronomy to improve the teaching and learning of science in elementary and middle school. A second strand of the project will use the Project ASTRO materials and techniques to train astronomers and teachers at national meetings outside the six sites to set up individual ASTRO partnerships on their own. Materials to be produced include a: Project ASTRO Coalition Manual; Training Manual; update to the Resource Notebook for the Teaching of Astronomy. Target audiences are students in grades 4-9.
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TEAM MEMBERS: Andrew Fraknoi
resource project Media and Technology
This Phase I SEPA proposal supports a consortium of science and education partners that will develop System Dynamics (SD) computer models to illustrate basic health science concepts. The consortium includes Oregon Health Sciences University (OHSU), Portland Public Schools (PPS), Saturday Academy, and the Portland VA Medical Center. SD is a computer modeling technique in which diagrams illustrate system structure and simulations illustrate system behavior. Desktop computers and commercial software packages allow SD to be applied with considerable success in K-12 education. NSF grants to Portland Public Schools have trained over 225 high school teachers in Portland and surrounding areas. Two magnet programs have been established with an emphasis on systems and at least five other schools offer significant systems curriculum. Major components of this project include (1) Annual summer research internships at OHSU for high school teachers and high school students, (2) Development of SD models relevant to each research project, (3) Ongoing interactions between high school science programs and OHSU research laboratories, (4) Development of curriculum materials to augment the use of the SD model in the high school classroom or laboratory setting, and (5) Development of video materials to support the classroom teacher. Content will focus on four fundamental models: linear input/exponential output, bi-molecular binding (association/dissociation), population dynamics, and homeostasis. Each of these models is very rich and may be extended to a broad variety of research problems. In addition these models may be combined, for example to illustrate the effect of drugs (binding model) on blood pressure (homeostasis model). System Dynamics is an exemplary tool for the development of materials consistent with National Science Education Standards. SD was specifically developed to emphasize interactions among system structure, organization, and behavior. Students use these material as part of inquiry-based science programs in which the teacher serves as a guide and facilitator rather than the primary source of all content information; technical writing by students is also encouraged. Finally, these SD materials will provide a coherent body of work to guide the ongoing professional development of the classroom science teacher.
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TEAM MEMBERS: Edward Gallaher
resource project Media and Technology
The Internet, specifically the World Wide Web (WWW), has the potential to deliver science education materials directly to classrooms, media centers, libraries and homes. The current application seeks to use this new technology through a collaborative effort of an active scientist and a group of middle school science teachers to develop, disseminate and evaluate educational materials related to neuroscience for use in middle school science classes. This project attempts to introduce new technologies into the science classroom, extend science education to include the information superhighway and increase parental involvement in their children's education. Materials will be integrated with the existing middle school science curriculum and will include l) on-line and off-line experiments and activities covering a range of topics in neuroscience, 2) a "virtal neuroscience laboratory", 3) an Internet neuroscience resource list and 4) a "Neuroscientist Network" consisting of active neuroscientists around the world who will serve as experts answering student questions. All activities will be designed will attention to being self-paced, hands-on, entertaining and to involve Cooperative learning. Both quantitative and qualitative methods will be used to evaluate the usage of the Intemet Neuroscience Resource. It is hoped that this project will serve as a model to other scientists and teachers and to encourage them to develop Internet resources in their own areas of expertise for use in the classroom.
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TEAM MEMBERS: Eric Chudler