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Showing 31 to 45 of 77 results Save | Export
TERC, Cambridge, MA. – 2000
This educator's guide discusses whether there is water on the planet Mars. The activities, written for grades 9-12, concern physical, earth, and space sciences. By experimenting with water as it changes state and investigating some effects of air pressure, students not only learn core ideas in physical science but can also deduce the water…
Descriptors: Aerospace Education, Hands on Science, Science Activities, Science Instruction
Peer reviewed Peer reviewed
Grauer, Albert D.; Tanis, N. Bruce – Physics Teacher, 1974
Descriptors: Aerospace Education, Aerospace Technology, Astronomy, Lunar Research
Smith, Hubert C. – Aviation/Space, 1982
Presents arguments why science and engineering majors need to take courses in the humanities and why humanities majors need science courses. Suggests that aerospace education serves as an excellent and dramatic example of the correct approach to technological development and cites a sample course. (DC)
Descriptors: Aerospace Education, Aerospace Technology, College Science, Engineering Education
Rosenberg, Carla B.; Rogers, Melissa J. B. – 2000
This inquiry-based activity discusses the development of a glovebox like those used on the International Space Station and Space Shuttle. A glovebox is a box used for experimentation in which the user inserts hands into gloved access holes in order to work in the box. Activities concerning the study of liquid droplets are included to give students…
Descriptors: Aerospace Education, Design, Hands on Science, Matter
National Aeronautics and Space Administration, Washington, DC. – 1998
This educational brief discusses observatory stations built by the National Aeronautics and Space Administration (NASA) for looking at the universe. This activity for grades 5-12 has students build paper models of the observatories and study their history, features, and functions. Templates for the observatories are included. (MVL)
Descriptors: Aerospace Education, Design, Elementary Secondary Education, Hands on Science
National Aeronautics and Space Administration, Washington, DC. – 2000
This brief discusses the basics of flight using a model of the first supersonic aircraft. This activity for grades 5-12 has students build a glider and learn how to change the flight characteristics of the glider. A template for the glider is included. (MVL)
Descriptors: Aerospace Education, Design, Elementary Secondary Education, Hands on Science
Peer reviewed Peer reviewed
Ward, Alan – School Science Review, 1981
Summarized are general procedures for and student reactions to three different science units for primary students. Topics included are timing things, yogurt pot telephones, and parachutes. (DC)
Descriptors: Acoustics, Aerospace Education, Aerospace Technology, Elementary Education
Peer reviewed Peer reviewed
Loud, Gwyneth E. – Science and Children, 1986
Describes an activity which simulates a trip to the moon. Explains the preparations, procedures, and tests involved in this culminating activity of an astronomy unit for the third grade student. Examples of student's assignments during the exercise are included. (ML)
Descriptors: Aerospace Education, Astronomy, Elementary School Science, Grade 3
Wright, Russell G. – 2001
This book is designed for middle school students to learn scientific literacy through event-based science. Unlike traditional curricula, the event-based earth science module is a student-centered, interdisciplinary, inquiry-oriented program that emphasizes cooperative learning, teamwork, independent research, hands-on investigations, and…
Descriptors: Aerospace Education, Group Activities, Hands on Science, Inquiry
National Aeronautics and Space Administration, Washington, DC. – 2000
This brief discusses growing protein crystals. Protein crystals can be very difficult to grow. This activity for grades 9-12 provides a simple recipe for growing protein crystals from Brazil nuts. Included are a history of protein crystals, a discussion of microgravity effects on growth, connections to academic standards, and lab sheets. (MVL)
Descriptors: Aerospace Education, Biology, Crystallography, Hands on Science
Peer reviewed Peer reviewed
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
National Aeronautics and Space Administration, Washington, DC. – 2001
This brief discusses human movement and robotic human movement simulators. The activity for students in grades 5-12 provides a history of robotic movement and includes making an End Effector for the robotic arms used on the Space Shuttle and the International Space Station (ISS). (MVL)
Descriptors: Aerospace Education, Design, Elementary Secondary Education, Hands on Science
National Aeronautics and Space Administration, Washington, DC. – 1999
This brief discusses X-gliders and flight research with experimental gliders. In this activity, designed for grades K-4, students will learn how to change the flight characteristics of a glider using scientific inquiry methods. Glider plans and a template are included. (MVL)
Descriptors: Aerospace Education, Design, Elementary Education, Hands on Science
National Aeronautics and Space Administration, Washington, DC. – 1998
This brief discusses the space shuttle and the docking procedures used with the International Space Station (ISS). Using this activity designed for grades 5-12, students demonstrate and identify procedures for determining the best method for completing the docking activity. Students will also study and identify Newton's Laws of Motion. A mockup…
Descriptors: Aerospace Education, Design, Elementary Secondary Education, Hands on Science
Frizzell, Helen; And Others – Aviation/Space, 1979
An outline of a lesson plan/strategy of the space shuttle model, intended for an elementary level learning unit, is presented. (Author/SA)
Descriptors: Aerospace Education, Aviation Technology, Elementary Education, Elementary School Science
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