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Vogt, Gregory L.; Shearer, Deborah A. – National Aeronautics and Space Administration (NASA), 2011
Among the thousands of questions that need to be answered before astronauts travel to distant planets and asteroids are questions related to the astronauts themselves. How much food will they need and what foods can they take? We are fortunate on Earth to have an amazing variety of foods to eat. When astronauts do go to Mars and other…
Descriptors: Space Sciences, Space Exploration, Nutrition, Food
National Aeronautics and Space Administration (NASA), 2013
With just a few materials, building a paper model of the International Space Station (ISS) can become an excellent group, troop, or class project. This publication contains a brief overview of the ISS, its parts, the science that occurs on board, instructions, and extensions for an interdisciplinary technology experience. Discover more about the…
Descriptors: Space Sciences, Space Exploration, Science Instruction, Simulation
Rulf Fountain, Alyssa; Levy, Abigail Jurist – Abt Associates, 2010
This report was requested by the National Aeronautics and Space Administration's (NASA), Office of Education in July 2009 to evaluate the Informal Education Program. The goals of the evaluation were twofold: (1) to gain insight into its investment in informal education; and (2) to clarify existing distinctions between its informal education…
Descriptors: Informal Education, Federal Government, Space Exploration, Program Evaluation
Tuchscherer, Tyson – National Aeronautics and Space Administration (NASA), 2010
The Calculator Controlled Robots activities are designed to engage students in hands-on inquiry-based missions. These activities address National science and technology standards, as well as specifically focusing on mathematics content and process standards. There are ten missions and three exploration extensions that provide activities for up to…
Descriptors: Graphing Calculators, Educational Technology, Robotics, Discovery Learning
Lockwood, Jeff – National Aeronautics and Space Administration (NASA), 2008
NASA (National Aeronautics and Space Administration) is one of the biggest employers of engineers in the world--about 90,000 among its own employees and its corporate partners. So it's not surprising that NASA wants kids to learn more about engineering, become interested in the things engineers do, and experience the world of engineering…
Descriptors: Engineering, Space Exploration, Astronomy, Aviation Technology
Shearer, Deborah A.; Vogt, Gregory L. – National Aeronautics and Space Administration (NASA), 2008
This guide provides teachers and students many opportunities. Chapters within the guide present the history of rocketry, National Aeronautics and Space Administration's (NASA's) 21st Century Space Exploration Policy, rocketry principles, and practical rocketry. These topics lay the foundation for what follows--a wealth of dynamic rocket science…
Descriptors: Space Exploration, Science Activities, Class Activities, Learning Activities
Schneider, Twila, Ed. – National Aeronautics and Space Administration (NASA), 2010
This educator guide is organized into seven chapters: (1) Overview; (2) The Design Challenge; (3) Connections to National Curriculum Standards; (4) Preparing to Teach; (5) Classroom Sessions; (6) Opportunities for Extension; and (7) Teacher Resources. Chapter 1 provides information about Environmental Control and Life Support Systems used on NASA…
Descriptors: Glossaries, Web Sites, Technological Literacy, Space Sciences
National Aeronautics and Space Administration (NASA), 2010
National Aeronautics and Space Administration (NASA) Engineers at Marshall Space Flight Center, Dryden Flight Research Center, and their partners at other NASA centers and in private industry are currently developing X-33, a prototype to test technologies for the next generation of space transportation. This single-stage-to-orbit reusable launch…
Descriptors: Space Sciences, Astronomy, Engineering, Worksheets
Haddad, Nick; McWilliams, Harold; Wagoner, Paul – National Aeronautics and Space Administration (NASA), 2007
NASA (National Aeronautics and Space Administration) Engineers at Marshall Space Flight Center along with their partners at other NASA centers, and in private industry, are designing and beginning to develop the next generation of spacecraft to transport cargo, equipment, and human explorers to space. These vehicles are part of the Constellation…
Descriptors: Space Exploration, Space Sciences, Astronomy, Aviation Technology
National Aeronautics and Space Administration (NASA), 2007
This student employee handbook offers tips on planning, design process, and presentation of a student Lunar Nautics project. Each section includes mission, task, challenge, and guide questions. With the activities presented, students will learn to design a Lunar Lander, Lunar Miner, and Lunar Base; investigate the geography and geology of the moon…
Descriptors: Geology, Geography, Lunar Research, Hands on Science
Huegele, Vince; Hill, Kristy; Terry, Brenda – National Aeronautics and Space Administration (NASA), 2008
This guide was prepared as a tool useful for informal education venues (4-H, Boys and Girls Clubs, Boy Scouts, Girl Scouts, etc.), science clubs and related programs, and can be adopted for formal education settings. An exciting and productive study in rocket science can be implemented using the selected activities for the above-mentioned…
Descriptors: Space Sciences, Informal Education, Clubs, Scientific Principles
Haddad, Nick; McWilliams, Harold; Wagoner, Paul – National Aeronautics and Space Administration (NASA), 2007
National Aeronautics and Space Administration (NASA) Engineers at Marshall Space Flight Center, and their partners at other NASA centers and in private industry, are designing and beginning to develop the next generation of spacecraft to transport cargo, equipment, and human explorers to space. These vehicles--the Ares I and Ares V launch…
Descriptors: Space Exploration, Space Sciences, Heat, Secondary School Science
Manholt, Donna; And Others – 1993
This teaching guide for 4th through 6th grade classes integrates science, language arts, and math concepts into ready-to-use space and space technology lessons. Significant learning outcomes for this curriculum are linked to Ohio's educational objectives for science in an at-a-glance curriculum matrix. A summary of the significant 4-H life skills…
Descriptors: Food, Force, Integrated Activities, Interdisciplinary Approach
Maryland State Dept. of Education. Baltimore. Div. of Planning, Results and Information Management. – 1994
One component of the Maryland School Performance Assessment Program (MSPAP) is the state's performance-based assessments, criterion-referenced tests that require students to apply what they know and can do to solve problems and display other higher-order thinking skills. This document helps parents, teachers, students, and other citizens…
Descriptors: Criterion Referenced Tests, Critical Thinking, Grade 8, Grouping (Instructional Purposes)
Echaore, Susan D. – 1982
The Science in Action series is designed to teach practical science concepts to special-needs students. It is intended to develop students' problem-solving skills by teaching them to observe, record, analyze, conclude, and predict. This document contains a student workbook which deals with basic concepts about how the earth moves and its…
Descriptors: Aerospace Education, Astronomy, Earth Science, Educationally Disadvantaged
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