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resource project Media and Technology
MarsQuest Online is an exploration-based website designed to complement the innovative MarsQuest traveling exhibit launched by the Space Science Institute (SSI) in 1997. "MarsQuest Online" will enhance and extend the exhibit, which is currently on a six-year, 18-city tour. TERC, working in collaboration with the Space Science Institute and NASA's Jet Propulsion Laboratory (JPL), will create a virtual version of the exhibit using software such as Java, Quicktime VR and JPL's sophisticated MarsNet Viewer system. Users will be immersed in an integrated, interactive environment complete with the tools and resources to carry out investigations and enhance inquiry-based learning. "MarsQuest" will expand users' understanding of the history of Mars, scientific exploration, the climate and related earth science concepts, while enabling them to follow the exploration of various landers and orbiters, and access NASA scientists. A diverse collection of Guided Inquiry experiences will foster the ability of users to develop inquiry and analysis skills, while offering options for novice, intermediate and advanced learners. Finally, a comprehensive evaluation plan will examine how the website and exhibit compare in promoting the understanding of science, broadening public interest in space exploration, and motivating further learning. The site will be promoted for use by schools as a tool for teaching earth science and space exploration. It is estimated that 300,000 people will visit "MarsQuest Online" annually.
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TEAM MEMBERS: Daniel Barstow Paul Dusenbery Paul Andres Chris Randall
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
We propose to leverage the power of the Internet and the appeal of on-line gaming environments for middle school students to create a new type of learning resource in science. Case histories of medical discovery will be transformed into "problem- based" multimedia mysteries for students to solve. Through prior research we have developed and field tested a working model for an adventure series that engages middle school students. We propose to extend the model to new content. Assuming the on-line role of a Reconstructor who seeks lost medical knowledge from the past, students will unravel the origins of specific diseases or medical discoveries. The learning objectives for each episode will be multidisciplinary. The goal is to engage students in constructing their own knowledge by participating in virtual experiments, by helping them establish a context for the discoveries, and by understanding issues involved in forming public health policy. An experienced team representing medicine, biology, history of science, education, and information technology will oversee the project, assuring the integrity of the site content, and incorporating cutting edge technology. A process of iterative prototyping, focusing heavily on teachers and students will be employed to make the resource site exciting, educational, and useful in classrooms, in homes, and in museums. The field tests will be conducted in schools, representing a cross-section of the community, assuring appropriate presentation of materials to target populations.
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TEAM MEMBERS: Leslie Miller Janice Mayes