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resource project Exhibitions
Science Museums of Charlotte, Inc. will develop a 5500 square foot traveling exhibit on SCIENCE of FASHION for the Science Museum Exhibit Collaborative (SMEC). Opening in February 1994, SCIENCE of FASHION will tour eight major U.S> cities over thirty-two months, introducing 2.5 million people to principles of chemistry, physics, biology, mathematics, and technology that drive the textile industry. SCIENCE of FASHION integrates diverse disciplines and will help public explore science in a wholistic manner. Because the subject matter is somewhat unusual fare, SCIENCE of FASHION will help diversify audiences, drawing in population segments, particularly women, who may not normally visit science museums. SCIENCE of FASHION is an eloquent vehicle for science-rich exhibitry which teaches the mathematics of pattern geometry, production statistics, and retail costs, polymer chemistry for engineering new fabrics, the genetics of new natural colors and strong aware fibers, and the sophisticated research, robotics, and computerized technologies that keep America's textile industry at the top international commerce. Rigorous evaluation will ensure a satisfying product that is educationally-effective, durable, and appealing to a broad public audience. SCIENCE of FASHION will be a worthy addition to the rich menu of science fare in SMEC exhibitry.
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TEAM MEMBERS: Rudyard Cooper Jo Ann Leichte
resource project Exhibitions
"How Things Fly" is a major new exhibit gallery being produced by the National Air and Space Museum and is scheduled to open in 1995. The goal of this permanent exhibition is to convey, to the broadest possible audience, the essential principles by which aircraft and spacecraft fly. "How Things Fly" represents an important departure from other exhibitions at the Museum in both content and execution. Instead of relying on static displays of historical artifacts, "How Things Fly" will use interactive devices and live demonstrations designedto spark curiosity, invite visitor participation, and provide children and adults with the opportunity to discover for themselves answers to some of their fundamental questions about flight. "How Things Fly" will be the first major exhibiton at the Museum devoted entirely to hands-on learning. It will incorporate some of the best interactive exhibitry ideas from othermuseums, improve upon them where possible, and include a substantial number of original exhibits. While intended to help visitors more fully appreciate the Museum's collection, the cooperative efforts, such as publications, a traveling exhibition, and educational outreach programs, will extend the exhibition's impact across the nation.
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TEAM MEMBERS: Barbara Brennan Steven Soter Christopher Stetser David Romanowski Joann Hinkel
resource project Exhibitions
To provide the general public with an understanding of the basic principles that underlie the transmission, storage, and retrieval of information, the Fleet Center proposes to build SIGNALS, a 4,500 square foot exhibition. SIGNALS will be divided into three sections, of approximately 15 interactive exhibits each, which explore the physical principles of wave motion, the properties of electromagnetic pulses useful for communications, and the signal processing that enables us to handle information. An Advisory Committee comprised of highly qualified individuals at the leading edge of their fields will support development of SIGNALS; a very experienced team of exhibit developers will fabricate the exhibition. SIGNALS will become a permanent exhibition in an expanded Fleet Center, where it is expected to attract 1 million visitors a year, including at least 100,000 K-12 students. Since the lack of technological understanding is a national problem, we propose to build a 3,000 square foot traveling version of SIGNALS, contingent upon an NSF review of the completed permanent exhibition. The total cost for both exhibitions is $1,983,480. We are requesting $985,900 from NSF: $692,800 for the permanent exhibition and $293,100 for the traveling exhibition. The project will begin in June, 1992, and be completed by June, 1996.
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TEAM MEMBERS: Lynne Kennedy
resource project Exhibitions
This project launches the creation of a new class of playground apparatus based on an emerging understanding of how students learn mathematics and science concepts. The equipment will be highly interactive and instrumented, providing opportunities for thoughtful, planned actions that children can evaluate with the aid of instrumentation. The design principles used are applicable to many mathematics and science topics, but this initial demonstration is restricted to creating units which embody some important concepts from classical mechanics. We will create, test, evaluate, and begin the dissemination of units incorporating timing, motion, and force sensor electronics designed to give children real- time, symbolic feedback to reflect their experiences. The first nine months will be devoted to the apparatus design, building, testing, safety evaluation, and formative research. We will install apparatus in three highly varied sites to evaluate the design. In a second phase, improved units will be built for one site and detailed research on student learning undertaken. If we observe the hypothesized learning, the approach we use in mechanics will have broad generalizability. This work could lead to interesting and highly educational apparatus addressing other science fields and useful in a broad range of informal learning environments.
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TEAM MEMBERS: John King Robert Tinker
resource project Media and Technology
EINSTEIN is a series of three prime time television programs to be shown nationally on the Public Broadcasting Service (PBS). The series will present a scientific biography of Albert Einstein. The series will treat the life of Albert Einstein on several levels. The central narative thread will trace the development and impact of Einstein's work in physics. The three programs will examine Einstein's impact beyond physics -- as a muse for the arts; a dissident voice in politics; a moral sensibility; ultimately as the greatest public symbol of scientific accomplishment. With original texts (including newly identified documents from the Einstein archives), historical footage, interviews, documentary sequences, the most sophisticated computer animation available, and other techniques as appropriate, EINSTEIN will present to its audience a unique picture of the role of Albert Einstein in the making of the modern world. Beyond its broadcast in 1992, the series also will receive wide educational distribution in secondary schools and colleges and a large foreign audience.
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TEAM MEMBERS: Paula Apsell Thomas Levenson Barbara Flagg
resource project Media and Technology
This is a request from Claypoint Productions for 124,700 of a total budget of $526,178 to produce a one-hour prime-time documentary program on the Wright Brothers, the processes of science and engineering used in their work, and the science and technology behind their development of the airplane. The PBS program will cover the subjects of aerodynamics, aeronautics, geometry, algebra, applied mathematics, mechanical engineering, the process of invention, and the history of technology. A teacher's guide will be developed to supplement the film.
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TEAM MEMBERS: Richard O'Regan Gino Delguercio
resource project Exhibitions
This exhibit will integrate graphics, artifacts, highly interactive electro-mechanical demonstration devices together with state of the art interactive educational computer technology to demonstrate how probability shapes nature. It will draw its examples from a variety of scientific fields including physics, chemistry, earth sciences, and biology. It is planned as a permanent addition to the Museum's exhibition program, but will be designed to facilitate easy reproduction for individual copies or for circulation as a travelling exhibit. Millions of visitors--families, teachers, children form diverse communities--will gain a first hand aesthetic appreciation of the pattern finding process of scientific investigation as well as a better understanding of the usefulness of mathematics in explaining how the natural world works.
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TEAM MEMBERS: H. Eugene Stanley Douglas Smith Edwin Taylor