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Minnix, Richard B.; Carpenter, D. Rae, Jr., Eds. – Physics Teacher, 1982
Thirteen demonstrations using a capacitor-start induction motor fitted with an aluminum disk are described. Demonstrations illustrate principles from mechanics, fluids (Bernoulli's principle), waves (chladni patterns and doppler effect), magnetism, electricity, and light (mechanical color mixing). In addition, the instrument can measure friction…
Descriptors: Acceleration (Physics), College Science, Demonstrations (Educational), Electricity
Hofstadter, Douglas R. – Scientific American, 1981
Discusses Heisenberg's uncertainty principle in simple terms. Presents scientific examples leading to the development of the principle and describes popular misconceptions associated with it. (SK)
Descriptors: College Science, Energy, Higher Education, Light
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Bettencourt, D. G.; And Others – Physics Education, 1979
Describes simple methods of making both a reflection and a transmission hologram, as a teaching aid to stimulate students' interest in physics. Lists the various items of equipment necessary for making a hologram. (GA)
Descriptors: College Science, Demonstrations (Educational), Higher Education, Holography
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Weichman, F. L.; Austen, D. J. – American Journal of Physics, 1979
Describes the details of constructing, and use of, a solar collector. Uses a black liquid to absorb the energy, the thermosyphon effect to drive the liquid through the collector, and a floodlamp as a surrogate sun. (GA)
Descriptors: College Science, Energy, Heat, Higher Education
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Bloom, Arthur L.; Fox, Andrew N. – Journal of Geological Education, 1990
Described is the use of Thematic Mapper images in undergraduate geology instruction. The work of the Andes Project at Cornell University is discussed. Digitally enhanced illustrations of landforms in the Andes mountains of South America are provided. (CW)
Descriptors: College Science, Computer Assisted Instruction, Earth Science, Environmental Education
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Watts, Mike; Pope, Maureen – Physics Education, 1989
Explores how constructivism is important to changes taking place in physics education, especially in curriculum development and teaching. Presents an example illustrating children's conceptions of light. Twenty-six references are listed. (YP)
Descriptors: Concept Formation, Concept Teaching, Elementary School Science, Elementary Secondary Education
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Leff, Harvey S. – Physics Teacher, 1990
Presents ideas on how common household light bulbs can be used to develop interest in learning physics. Focuses on supermarket data taking and analyses, filament temperatures, detective work with three-way bulbs, and lifetime statistics. (YP)
Descriptors: College Science, Electricity, Higher Education, Laboratory Experiments
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Olson, Dale W. – Physics Teacher, 1992
Describes the design and fabrication of a classroom hologram and activities utilizing the hologram to teach the concepts of real and virtual images to high school and introductory college students. Contrasts this method with three other approaches to teach about images. (MDH)
Descriptors: High Schools, Higher Education, Holography, Lasers
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Hardy, Garry R.; Tolman, Marvin N. – Science and Children, 1993
Illustrates the concept of phototropism and the development of root systems using a classroom-constructed clinostat. Provides instructions to construct the clinostat and tips to promote plant growth. (MDH)
Descriptors: Biology, Concept Formation, Elementary Education, Elementary School Science
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Jones, D. G. C. – Physics Education, 1991
Discussed is how modern physics is usually approached via the photoelectric effect and how this can lead to a physically wrong picture of light. The importance of using the quantum theory developed after 1920 to explain the properties of light is discussed. (KR)
Descriptors: College Science, Course Content, Higher Education, Light
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Eylon, Bat-Sheva; And Others – Journal of Science Education and Technology, 1996
Explores the potential of the RAY learning environment in improving learning about optics. Results indicate that this environment, which includes a flexible ray-tracing simulation, had a significant effect on the spontaneous and correct use of the model by students in solving problems and a limited effect on conceptual understanding, but promoted…
Descriptors: Case Studies, Computer Uses in Education, Educational Technology, Foreign Countries
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Katayama, Nobuyasu; Kanaizuka, Yasuhiro; Sudarmi, Rini; Yokohama, Yasutsugu – Journal of Biological Education, 2003
The method for extracting and separating hydrophobic photosynthetic pigments proposed by Katayama "et al." ("Japanese Journal of Phycology," 42, 71-77, 1994) has been improved to introduce it to student laboratories at the senior high school level. Silica gel powder was used for removing water from fresh materials prior to…
Descriptors: High Schools, Chemistry, Laboratories, Botany
Manitoba Dept. of Education and Training, Winnipeg. – 1991
This guide is one of a set of 10 science guides, each covering a separate grade in Manitoba, together covering kindergarten through grade 9. The guides have been designed to provide a framework for building scientific concepts and developing the learning of process skills. They replace an earlier set of guides dated 1979. Each guide is essentially…
Descriptors: Animals, Classroom Environment, Curriculum Guides, Elementary School Science
Eickhoff, Luvern R. – 1985
This instructional manual contains 20 learning activity packets for use in a workshop on lasers and fiber optics. The lessons cover the following topics: what a laser; coherent light; setting up the laser; characteristics of the laser beam; scattering of light; laser beam divergence, intensity, color, ophthalmology, and reflections; directivity of…
Descriptors: Competency Based Education, Course Content, Equipment, Industrial Arts
New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction. – 1984
This ninth grade student manual was developed to be used in conjunction with some of the experimental science activities described in the teacher's guide. It contains laboratory worksheets for: (1) measurement; (2) basic energy concepts; (3) heat energy; (4) light; (5) sound; (6) electricity; and (7) present and future energy resources. Additional…
Descriptors: Alternative Energy Sources, Electricity, Energy Education, General Science
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