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Sanchez, Juan Carlos; Penick, John – Science Scope, 2007
Explosions and fires--these are what many students are waiting for in science classes. And when they do occur, students pay attention. While we can't entertain our students with continual mayhem, we can catch their attention and cater to their desires for excitement by saying, "Let's make rockets." In this activity, students make simple, reusable…
Descriptors: Physics, Science Experiments, Science Instruction, Student Motivation
National Aeronautics and Space Administration, Washington, DC. – 2003
This educator guide provides background information on Wilbur and Orville Wright and activities on aeronautics that provide templates for building the 1900, 1901, and 1902 Gliders and the 1903 Flyer. Activities include: (1) Early Aviation; (2) Your First Interview; (3) Your First Report; (4) Build a Model of the 1900 Glider; (5) Questions on the…
Descriptors: Aerospace Education, Physics, Science Activities, Science Interests
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Gerhab, George; Eastlake, Charles – Physics Teacher, 1991
A phenomena, boundary layer control (BLC), produced when visualizing the fluidlike flow of air is described. The use of BLC in modifying aerodynamic characteristics of airfoils, race cars, and boats is discussed. (KR)
Descriptors: Aerospace Education, Air Flow, Motion, Physics
Rodriguez, Charley; Raynovic, Jim – 2000
This document describes methods for designing and building two types of rockets--rockets from paper and rockets from bottles. Devices used for measuring the heights that the rockets obtain are also discussed. (KHR)
Descriptors: Aerospace Education, Curriculum Development, Instructional Materials, Physics
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Gould, Laurence I.; Waiveris, Charles – Physics Teacher, 1991
A procedure for estimating the speed and distance of plane, assuming the speed of sound and the velocity of the plane are constant, is described. (KR)
Descriptors: Aerospace Education, Motion, Physics, Problem Solving
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Crane, H. Richard, Ed. – Physics Teacher, 1993
Compares the aerodynamics involved in bird flight, movement of a tortoise, and a gliding plane. (ZWH)
Descriptors: Aerospace Education, Air Flow, Birds, High Schools
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Riss, Pam Helfers; Niccum, Edward C. – Science Scope, 1994
Presents detailed descriptions and diagrams for having students build their own syringe-powered rockets. Describes how the students can learn about variables that influence the stability of the rockets flight. (PR)
Descriptors: Aerospace Education, Junior High Schools, Learning Activities, Middle Schools
Frensch, Helen – 1990
The activities in this book are designed to reinforce the elementary concepts of flight. General background information, suggested activities, questions for discussion, and answers are provided. Twenty-eight reproducible worksheets are contained in this guide. Topics include: hot air balloons, the physics of flight, air resistance, airplane…
Descriptors: Aerospace Education, Aviation Technology, Elementary Education, Elementary School Science
National Aeronautics and Space Administration, Hampton, VA. Langley Research Center. – 2001
The National Aeronautics and Space Administration (NASA) has produced a distance learning series of four 60-minute video programs with an accompanying Web site and companion teacher guides. This teacher guide accompanies the fourth video in the series. The story lines of each program involve six ethnically diverse, inquisitive schoolchildren who…
Descriptors: Aerospace Education, Educational Technology, Elementary Education, Elementary School Science
Giessow, Jean; Giessow, Fred – 1990
The activities in this book are designed to reinforce elementary concepts in the study of the universe. General background information, suggested activities, questions for discussion, and answers are provided. Twenty-eight reproducible worksheets are contained in this guide. Topics include: the solar system, orbits, planets, the sun, forces in…
Descriptors: Aerospace Education, Aerospace Technology, Astronomy, Elementary Education
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Keeports, David – Physics Teacher, 1990
Discussed is the use of model rocketry to teach the principles of Newtonian mechanics. Included are forces involved; calculations for vertical launches; two-dimensional trajectories; and variations in mass, drag, and launch angle. (CW)
Descriptors: Acceleration (Physics), Aerospace Education, Aviation Technology, College Science
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Fitzgerald, Mike – Tech Directions, 2005
In this article, the author gives basic information on constructing a wind tunnel that teachers can use for instructional activities with their students for many years to come. He illustrates and describes the procedure and materials that he developed in constructing his own wind tunnel. This information should be viewed as a guide. (Contains 1…
Descriptors: Educational Technology, Design, Construction (Process), Construction Materials
National Aeronautics and Space Administration, Kennedy Space Center, FL. John F. Kennedy Space Center. – 1992
This book is designed as a resource for teachers and parents concerned with early childhood education. It is hoped that the ideas and activities presented herein will serve in the creation of a space science and mathematics curriculum that is both child-centered and exciting. The basic philosophy for this curriculum is that of Piaget. This…
Descriptors: Aerospace Education, Astronomy, Elementary School Science, Elementary School Students
Defendorf, Jean, Ed. – 1986
This unit of study is designed to teach the science of flight to students in the intermediate grades. Included are a list of materials for the unit, a discussion of the use of process skills, a list of unit objectives, vocabulary, teacher background information, 12 lessons, 5 quizzes, math problems, and a unit test. Lessons are oriented toward…
Descriptors: Aerospace Education, Aviation Vocabulary, Elementary School Science, Grade 5