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resource research Exhibitions
In this paper, Jeff Bonner of the St. Louis Science Center discusses the merits of formal versus naturalistic evaluation within the museum context. Bonner also presents the approach and findings of a two-part study designed to compare the results of these two evaluation approaches. They compared the the results of a formal analysis of the holding power, ease of use, readability of text, and overall enjoyability of nine exhibits with a naturalistic study focused on how one volunteer, two part-time employees and a staff supervisor viewed the same exhibits.
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TEAM MEMBERS: Jeff Bonner
resource research Exhibitions
In this paper, Minda Borun of the Franklin Institute discusses the publics' naive notions of science and how museums provide the opportune place to study the pre-existing misconceptions of visitors of all ages. Borun reveals findings from the Franklin Institute's 18-month study to discover visitors' naive notions about gravity and air pressure and to develop exhibits which help restructure these concepts. The project is intended to establish a new model for the design of effective science museum exhibits.
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TEAM MEMBERS: Minda Borun
resource project Media and Technology
The Exploding Optic Incredible was an experiment in expanding the boundaries of art and music with science and technology. Ostensibly a multi-media rock concert as a fund raiser for Marshall Barnes' drug free creativity efforts, it took Andy Warhol's Exploding Plastic Inevitable concept of the 1960s into unchartered territory driven by Marshall's inspiration through discussions with Omni magazine's Dick Teresi and Pamela Weintraub and Gene Youngblood's book, Expanded Cinema. Marshall incorporated 1970s era slide and film projection light show effects, with dance lights, massive strobes, spotlights, and big screen video projection that showed customized and original video special effects while bands performed, and music videos in-between accompanied by lighting effects. The first multi-media rock concert of the 1990s, the January 18, 1990 event at the Newport Music Hall was also a test for the public's reaction to over stimulation through sight and sound, the results leading to exploration and ultimate creation of psychoactive entertainment technology later that year and the formation of new technological architectures for entertainment and learning that have yet to be presented but exist in design form.
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TEAM MEMBERS: Marshall Barnes
resource project Exhibitions
The Center of Science and Industry in Columbus, OH and the Science and Technology Interactive Center in Naperville, IL collaboratively plan to develop a series of interactive exhibits on nuclear and particle physics that will convey to a wide audience an understanding of the fundamental nature of the universe and of the basic rules that underlie that universe. The purpose is to lead the visitors from the perceived complexities of our surroundings to an unperceived simpler features of the subnuclear world. The collaborators propose to develop two duplicate copies of eight exhibits, with one copy for display at each of the two institutions. They also look to making the plans available to other science centers inexpensively and on a copyright-free basis. An added feature of the project is the collaboration between the Center of Science and Industry, an established science center, and the Science and Technology Interactive Center, an emerging one.
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TEAM MEMBERS: Charles O'Connor
resource project Exhibitions
The St. Louis Science Center, originating in the Academy of Science of St. Louis, founded in 1856, is today a major American science center attracting more than 670,000 visitors each year. A 34 million dollar facility expansion will open in late 1991. As part of that expansion, the science center will develop two unique sets of interactive science exhibitions that will encourage visitor interaction with concepts and ideas through "multiple-outcome participatory exhibits." These experimental exhibitions will be developed in two clusters totalling 2,000 to 3,000 square feet of exhibits that will be integral parts of larger, themed galleries. In the first cluster visitors will explore misconceptions and personal assumptions about science, using exhibit modules that address popular myths about science. Exhibits will demonstrate experimental phenomena contrary to naive views and allow visitors to replace existing ideas with more general and more powerful scientific principles. Approximately 15 exhibits on misconceptions in newtonian mechanics and classical optics as well as other areas will be developed. The second of the two clusters will allow free, open exploration by visitors of a variety of scientific phenomena and principles of explanation. Visitors will measure as well as observe, using modern laboratory instrumentation that can be successfully operated by visitors with minimal supervision. The topics of light, motion, sound, energy, and physiology will be covered with six lab stations in each. These experimental exhibit units will be developed with the assistance of outside advisors and consultants, will involve prototyping and formative evaluation of visitor response to trial units, and will include formal evaluation at the conclusion of the project. A unique cooperative agreement with the Science Museum of Minnesota will allow exchange of audience research data, staff exchanges, and frequent consultation between the two groups. This project will explore new modes of exhibit based learning and the potential in exhibit research partnerships. Cost sharing equal to the award will be provided by the St. Louis Science Center. The resulting exhibits will be seen by more than a million visitors each year in the new science center facilities.
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TEAM MEMBERS: Jeffrey Bonner
resource project Professional Development, Conferences, and Networks
This project is aimed at perfecting and testing a new instructional method to improve the effectiveness of introductory physics teaching. the methods has two chief characteristics: 1) a systematic challenge to common sense misconceptions about the physical world, and 2) an emphasis on models and modeling as basic to physical understanding. Two versions of the method will be tested. The first version is designed especially for high school physics. It emphasizes student development of explicit models to interpret laboratory activities. After an initial test, this version will be taught to high school physics teachers in a summer Teacher Enhancement Workshop, and its effect on their subsequent teaching will be evaluated. Teachers with weak as well as strong backgrounds will be included. A special effort will be made to include females and minorities. The second version will be tested in a special college physics course designed to prepare students with weak backgrounds for a standard calculus based physics course. It emphasizes modeling techniques in problem solving. This project is jointly supported by the Division of Materials development, Research and Informal Science Education and the Division of Teacher Preparation and Enhancement.
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TEAM MEMBERS: David Hestenes Malcolm Wells
resource project Exhibitions
The Children's Museum proposes to develop two versions of an interative physical.science exhibit dealing with wave mechanics and the related actions of vibrating and oscillation systems. One version will be a permanent exhibit that is to be a central component in the new science area of the museum, while the other will be a traveling exhibit that will tour the country under the auspices of the Association of Science.Technology Centers. The purpose of the exhibit is to heighten the interest of children in scientific experimentation, with learning taking place at three levels including sensory.motor, perceptual.operational and intutitive.conceptual. Materials for teachers will supplement the exhibit, and an internship program will train largely minority middle.school students in basic concepts and then use them as "explainers" for the general public. The request to the National Science Foundation represents 73% of the total cost of the exhibits, with the remainder coming from institutional and other sources.
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TEAM MEMBERS: Signe Hanson Bernard Zubrowski
resource project Exhibitions
The New York Hall of Science will develop a major exhibition on quantum theory--one of the most important developments in physical science in this century and one which has not been significantly treated by science museums. This exhibition will be the first major museum program to introduce quantum theory and its applications to the public. Elements of the exhibit will include models of the atom, the puzzle of light, applications of the theory and, finally, the human story of the creation of a new theory. Numerous participatory exhibits will be developed in conjunction with the project so that visitors can learn by doing. Formative evaluation will be an integral part of this exhibit. This technique has recently been adopted by museums as a way to test exhibit prototypes with museum visitors and then redesign as necessary. A workshop will be held for museum personnel and a guidebook, Improving Exhibits Through Formative Evaluation, will be produced. This book will be the first complete description of the formative evaluation process and will be a valuable addition to the museum field.
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TEAM MEMBERS: Alan Friedman
resource project Exhibitions
The investigation of naive conceptions of science has many implications for both teaching and learning. The predominant model for past investigations has been with school children or within very formal settings. Extending investigations of misconceptions to informal settings is the challenge of this research. Museum visitors' misconceptions about two topics, gravity and mechanical advantage, will be recorded through a variety of interview formats. Twenty-five persons from each of the age ranges 9-11, 12-14, 15-18, and college students/adults will be interviewed. Information from the interview will be used to modify the current exhibit or to build new prototypes. The research will determine if a modification can be made that results in individuals moving from their previous misconceptions toward a correct conceptualization of the concepts. This research will document what individuals actually learn from museum exhibits and how "front end evaluation" can be used to redesign exhibits for maximum concept learning. The proposed research is challenging and has the potential of adding significant information to science education research on misconceptions. The principal investigator is highly respected in the field of museum education and the associated staff and consultants are the top scholars in their respective fields.
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TEAM MEMBERS: Minda Borun
resource project Public Programs
The Science Museum of Minnesota will develop a series of "experiment benches" that are to be an unique feature of "labworks," a major new hall of physical science and technology. The small bench-top laboratory exhibits will allow visitors to create their own experiments and to become informally but directly involved in the experimental process. The target audience is junior highschool students, especially those who come as individuals and who are repeat visitors. Selected students will be trained as interns and will be paid to act as mentors for visitors. The project will include a published report, "a recipe book" for dissemination, and a subsequent conference of exhibit developers from other science museums.
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TEAM MEMBERS: J Newlin
resource project Exhibitions
The Ann Arbor Hands-On Museum proposes to design and construct a traveling exhibit on energy. The proposed exhibit will have two goals: one, to produce an imaginative exhibit that will stimulate interest and cognitive growth in understanding about geometry; two, to develop a related education program that will reach out to underserved audiences in Michigan and beyond, including minorities, children and citizens who live far from science centers, and audiences of small- and medium-sized science centers and children's museums in the state.
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TEAM MEMBERS: Cynthia Yao
resource project Public Programs
The Thames Science Center collaborative with the resources of the Smithsonian Astrophysical Observatory, Wesleyan University and the National Air and Space Museum will design and develop the project, "Shoot For the Moon." This science education project will capitalize on the attraction, familiarity and proximity of the moon using it as a basis to enrich and supplement the eight and ninth grade physical science curriculum. Ten classroom units, complimentary experiments and demonstrations will be developed. "Moonwatch" software and audio visual materials, including an instructional videotape and a multi.image presentation will accompany the units. Sixteen teachers and museum educators will participate in the training, evaluation and testing as the project is integratedinto the curriculum of twelve schools and four museums. The project is designed to be replicated in schools and science centers in different geographical locations nationally. The site for development and testing will be the Thames Science Center, a regional science museum in eastern Connecticut. The science center offers formal science enrichment programs and tours for students and teacher professional development programs throughout the region.
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TEAM MEMBERS: Jane Holdsworth William Gill