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National Aeronautics and Space Administration, Hampton, VA. Langley Research Center. – 2000
This teaching unit is designed to help students in grades 4-8 explore the concepts of scaling and proportion in the context of spacecraft design. The units in this series have been developed to enhance and enrich mathematics, science, and technology education and to accommodate different teaching and learning styles. Each unit consists of a…
Descriptors: Aerospace Technology, Astronomy, Elementary Education, Geometry
National Aeronautics and Space Administration, Hampton, VA. Langley Research Center. – 2000
This teaching unit is designed to help students in grades 4-8 explore the concepts of scaling and proportion in the context of spacecraft design. The units in this series have been developed to enhance and enrich mathematics, science, and technology education and to accommodate different teaching and learning styles. Each unit consists of a…
Descriptors: Aerospace Technology, Air Transportation, Astronomy, Elementary Education
National Aeronautics and Space Administration, Hampton, VA. Langley Research Center. – 2000
This teaching unit is designed to help students in grades 4-8 explore the concepts of algebra in the context of exploring the universe. The units in this series have been developed to enhance and enrich mathematics, science, and technology education and to accommodate different teaching and learning styles. Each unit consists of a storyline…
Descriptors: Aerospace Technology, Algebra, Astronomy, Chemical Reactions
National Aeronautics and Space Administration, Washington, DC. – 2001
The NASA "Why?" Files is a free annual instructional distance learning program that integrates science, mathematics, and technology. The program targets 3rd through 5th grade students and uses a problem-based teaching approach. This lesson guide includes four segments, each with objectives, vocabulary, video component resources, career ideas, and…
Descriptors: Astronomy, Distance Education, Earth Science, Educational Technology
Whitlock, Laura; Bene, Meredith; Granger, Kara – 1999
This CD-ROM contains four astronomy and space science learning center sites individually captured from the World Wide Web in January of 1999. Each site contains its own learning adventure full of facts, fun, music, beautiful images, movies, and excitement. Space science learning sites include: (1) Imagine the Universe! geared for ages 14 and up…
Descriptors: Astronomy, Earth Science, Elementary Secondary Education, Hands on Science
Mulvey, Patrick J. – 1999
The 1990s have seen change in the populations of graduate students in physics departments across the country. The Graduate Student Survey captures demographic characteristics of approximately 10,600 physics and astronomy students who were enrolled in the 1996-97 academic year. It describes the students' sources of support, areas of specialization,…
Descriptors: Astronomy, College Graduates, Enrollment Trends, Financial Support
Peer reviewedHoff, Darrel; Wentzel, Donat G. – American Journal of Physics, 1973
Describes exhibits, invited talks, discussions, and references of a Conference on Demonstrations for Classroom Use in Astronomy,'' and informs of the establishment of a Task Group on Education in Astronomy designed for the purpose of providing a focus for both college and high school teachers. (CC)
Descriptors: Astronomy, College Science, Computer Assisted Instruction, Conference Reports
Hurst, Donna – Instructor, 1980
The author suggests methods of drawing the study of the solar system into every area of the curriculum, thereby capitalizing on the recent outer space craze of movies and television. (KC)
Descriptors: Art Activities, Astronomy, Creative Activities, Creative Dramatics
Peer reviewedCoyle, Harold P. – Mercury, 1994
Describes five astronomy education projects implemented by the Harvard-Smithsonian Center for Astrophysics Science Education Department and funded by the National Science Foundation. Project efforts have concentrated in three major areas: (1) curriculum development; (2) teacher support; and (3) classroom technology. (DDR)
Descriptors: Astronomy, Cognitive Structures, Concept Formation, Course Content
Peer reviewedJordan, Thomas M. – Science Teacher, 1989
Explained is a representation of the three categories of spectra. Discusses what a lesson on spectra should include, background information, and equipment needed. Provided is a diagram of an absorption box. (RT)
Descriptors: Astronomy, Chemistry, Laboratory Equipment, Light
Peer reviewedPrice, Jill S.; Hafer, Abigail A. – Mercury, 1995
A collection of articles that address the question of why minorities are still underrepresented in science after years of civil rights legislation and affirmative action. A variety of programs aimed at increasing minorities and women in the field of astronomy and other sciences are discussed. Personal accounts are also provided. (LZ)
Descriptors: Affirmative Action, Astronomy, Elementary Secondary Education, Environmental Education
Peer reviewedField, George; Goldsmith, Donald – Mercury, 1990
The Hubble Space Telescope project is described. Discussed are the project directors, construction, launch, deployment, hazards, rationale, and hope of the project. (CW)
Descriptors: Astronomy, College Science, Earth Science, Higher Education
Peer reviewedVillard, Ray – Mercury, 1990
Presented is the best understanding of the flaw discovered in the optics of the Hubble Space Telescope and the possible solutions to the problems. The spherical aberration in the telescope's mirror and its effect on the quality of the telescope's imaging ability is discussed. (CW)
Descriptors: Astronomy, College Science, Earth Science, Higher Education
Peer reviewedBaxter, John – Physics Education, 1991
Discussed is the idea that students come into their lessons with already preformed notions for many basic astronomical events. Examples of students' responses during an astronomy lesson are included. Suggestions for uncovering students' alternative frameworks are presented. (KR)
Descriptors: Astronomy, British National Curriculum, Cognitive Structures, Concept Formation
Peer reviewedWagon, Stan – Mathematics Magazine, 1990
Described is a way that elemental mathematics can be applied to explain an astronomical phenomenon. The fact that the extreme of sunrise and sunset do not occur on the shortest or longest days of the year is analyzed using graphs and elementary calculus. (KR)
Descriptors: Astronomy, Calculus, College Mathematics, Graphs


