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Seperuelo Duarte, E.; Mota, A. T.; de Carvalho, J. R.; Xavier, R. C.; Souza, P. V. S. – Physics Education, 2021
In this paper, we present a physical modeling activity whose objective is to allow students to determine the differences between a disk and a sphere using pure scientific criteria. Thereunto, we reproduce the Sun-Earth-Moon system with low-cost materials and compare the illumination effects on the Moon considering two possible shapes for it (a…
Descriptors: Science Instruction, Teaching Methods, Comparative Analysis, Scientific Research
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Lahaye, Thierry – European Journal of Physics, 2012
I describe how to obtain a rather good experimental determination of the eccentricity of the Earth's orbit, as well as the obliquity of the Earth's rotation axis, by measuring, over the course of a year, the elevation of the Sun as a function of time during a day. With a very simple "instrument" consisting of an elementary sundial, first-year…
Descriptors: Science Instruction, Science Experiments, Earth Science, Physics
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Keating, C. F. – Physics Teacher, 2007
The role of greenhouse gases in our atmosphere is the subject of considerable discussion and debate. Global warming is well-documented, as is the continually increasing amount of greenhouse gases that human activity puts in the air. Is there a relationship between the two? The simple experiment described in this paper provides a good demonstration…
Descriptors: Climate, Science Experiments, Science Instruction, Secondary School Science
Walker, Ormiston H. – 1995
This is a resource book for four major areas of study: basic astronomy, a star's life, the planets, and the atmosphere. The activities and demonstrations included can be done in a classroom setting during the day by using readily available materials. Topics covered include: refracting and reflecting telescopes, star finder, circumpolar…
Descriptors: Astronomy, Earth Science, Science Activities, Science Experiments
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Starr, Richard R. – Journal of Geological Education, 1973
Describes methods using basic trigonometry which enable secondary earth science students to make astronomical calculations. The literature and mathematics available to high school students allow calculation of the earth's dimensions, which in turn permit calculation of the sun's distance. Once the sun's distance is known, stellar distances can be…
Descriptors: Astronomy, Earth Science, Mathematics, Physical Sciences
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Hoehn, Robert G. – Science Activities, 1974
Describes student activities with mercuric oxide and mercury that help them to form models of the solar system and its creation. (JR)
Descriptors: Astronomy, Earth Science, General Science, Laboratory Procedures
French, Bevan M. – 1977
This booklet describes the results of NASA's Viking spacecraft on Mars. It is intended to be useful for the teacher of basic courses in earth science, space science, astronomy, physics, or geology, but is also of interest to the well-informed layman. Topics include why we should study Mars, how the Viking spacecraft works, the winds of Mars, the…
Descriptors: Aerospace Education, Aerospace Technology, Astronomy, Earth Science
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Russo, Richard – Science Teacher, 1988
Provides background information on the equipment and knowledge necessary to do an astronomy activity on the earth's rotation. Details an activity in which students can measure the rotation of the earth using a camera and the stars. (CW)
Descriptors: Astronomy, Earth Science, Photography, Physical Sciences
VanCleave, Janice – 2001
This book provides opportunities for engaging students in scientific investigations, offering a hands-on approach that encourages students to understand science concepts, gives them ways to apply the concepts, and introduces and reinforces the skills they need to become independent investigators. The basic outline and objectives of each section of…
Descriptors: Astronomy, Biological Sciences, Earth Science, Elementary Secondary Education
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White, James C., II – Mercury, 1996
Describes several of the labs developed by Project CLEA (Contemporary Laboratory Experiences in Astronomy). The computer labs cover simulated spectrometer use, investigating the moons of Jupiter, radar measurements, energy flow out of the sun, classifying stellar spectra, photoelectric photometry, Doppler effect, eclipsing binary stars, and lunar…
Descriptors: Astronomy, Computer Simulation, Earth Science, Higher Education
Clark, Lenwood G., Ed.; And Others – 1984
The Long Duration Exposure Facility (LDEF) has been designed to take advantage of the two-way transportation capability of the space shuttle by providing a large number of economical opportunities for science and technology experiments that require modest electrical power and data processing while in space and which benefit from postflight…
Descriptors: Astronomy, Biological Sciences, Earth Science, Electronics
New York State Education Dept., Albany. Bureau of Curriculum Development. – 1985
Listed in this science syllabus are concepts and understandings in five areas of astronomy (earth, studying the heavens, earth's moon, the sun and other stars, and the solar system) and two areas of aerospace science (flight in air and flight in space). Included with these The booklet also includes questions for students to answer and, when…
Descriptors: Aerospace Education, Astronomy, Course Descriptions, Earth Science
Walsh, Terry – SASTA Journal, 1980
Summarizes "you do it" activities presented at the 1978 South Australian Science Teachers Association Conference. Topics include microscope use and maintenance, chemical slide cells, chemical models, sound waves, microwaves, astronomy, plant keys, reading geological maps, and natural dye processes. (DS)
Descriptors: Astronomy, Biology, Chemistry, Demonstrations (Educational)
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McKeever, S. W. S. – School Science Review, 1980
Summarizes scientific findings resulting from the Apollo missions, including lunar rocks and soil, age determination, and the moon's interior, evolution, and origin. Indicates experiments for future lunar research. (SK)
Descriptors: Astronomy, College Science, Earth Science, Higher Education
Bosak, Susan V.; And Others – 1991
This book helps teachers fulfill curriculum requirements by building both science content and process skills through hands-on exploration. Ten broad subject areas are covered: (1) Discovering Science, (2) Matter and Energy, (3) Humans, (4) The Environment, (5) Rocks, (6) Plants, (7) Living Creatures, (8) Weather, (9) The Heavens, and (10) Applying…
Descriptors: Astronomy, Biology, Botany, Earth Science
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