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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 5 to 8 explore the concepts of measurement, ratios, and graphing in the context of designing a dragster. The units in the series have been developed to enhance and enrich mathematics, science, and technology education and to accommodate different teaching and learning styles. Each unit…
Descriptors: Aerospace Technology, Design, Force, Intermediate Grades
Northwest Educational Technology Consortium, Portland, OR. – 2001
This 15-minute VHS videotape introduces an interdisciplinary math, science, and language arts project for eighth grade. Students learn about and apply laws of motion, linear functions, and technical reporting as they design and present an ultimate roller coaster. The project is organized in five phases that generate knowledge about design…
Descriptors: Design Requirements, Grade 8, Interdisciplinary Approach, Junior High Schools
2000
This CD-ROM consists of simulation software that allows students to conduct countless experiments using 20 Java simulators and curriculum units that explore light and color, forces and motion, sound and waves, static electricity and magnetism, current electricity, the nature of matter, and a unit on underpinnings. Setups can be designed by the…
Descriptors: Acoustics, Computer Simulation, Curriculum Development, Electricity
Peer reviewedChampagne, Audrey B.; And Others – Research in Science and Technological Education, 1983
Discusses the nature of naive conceptions and the influence of these conceptions on students' interpretations of instructional events. Also discusses implications of this research for designing instruction to facilitate the reconciliation of naive conceptions with scientific theories. (JN)
Descriptors: College Science, Concept Formation, Elementary School Science, Elementary Secondary Education
Ford, Bruce – Classroom Computer News, 1983
Microcomputer-based instrumentation packages enable computers to collect continuous analog data, convert data to digital form for processing, and display results on monitor. Discusses classroom advantages of these packages, describes one package for teaching harmonic motion, and provides a list of currently available packages (including vendor and…
Descriptors: College Science, Computer Oriented Programs, Computer Programs, Electronic Equipment
Peer reviewedAdams, Thomas – Mathematics Teaching in the Middle School, 1997
Students investigate the concept of motion by making simple paper airplanes and flying them in the classroom. Students are introduced to conversion factors to calculate various speeds. Additional activities include rounding decimal numbers, estimating, finding averages, making bar graphs, and solving problems. Offers ideas for extension such as…
Descriptors: Estimation (Mathematics), Graphs, Group Activities, Instructional Materials
Peer reviewedSchamp, Homer W., Jr. – Science Teacher, 1990
Discussed is the idea that models should be taught by emphasizing limitations rather than focusing on their generality. Two examples of gas behavior models are included--the kinetic and static models. (KR)
Descriptors: Chemistry, Cognitive Dissonance, Concept Formation, Energy
Peer reviewedKruglak, Haym – Physics Teacher, 1992
Outlines 39 physics demonstrations that utilize simple objects such as coffee and soda cans to illustrate scientific concepts. (12 references) (MDH)
Descriptors: Demonstrations (Educational), Density (Matter), Electricity, Energy
Peer reviewedDe Jong, Marvin L. – Physics Teacher, 1992
Studies the simple dynamical system of the pendulum and the chaotic behavior that occurs when the pendulum is both damped and driven. Provides an algorithm and BASIC program for the numerical solution to the differential equations encountered in the discussion. (MDH)
Descriptors: Algorithms, Chaos Theory, Computer Assisted Instruction, Differential Equations
Peer reviewedRonen, Miky; Lipman, Aharon – Physics Teacher, 1991
Proposes the V-Scope as a teaching aid to measure, analyze, and display three-dimensional multibody motion. Describes experiment setup considerations, how measurements are calculated, graphic representation capabilities, and modes of operation of this microcomputer-based system. (MDH)
Descriptors: Computer Assisted Instruction, Courseware, High Schools, Instructional Materials
How Many Miles per Hour Is That Fan Going? An Experiment to Implement Problem Solving in Grades 5-8.
Peer reviewedCochener, David; Cochener, Debbie – School Science and Mathematics, 1993
Describes the process of problem identification, data collection, and generalization in a mathematical experiment to find the speed at which a bug travels at the end of a fan blade. Presents the learning outcomes of the experiment and possible implications of using this teaching method. (MDH)
Descriptors: Elementary Secondary Education, Experiments, Geometric Concepts, Heuristics
Peer reviewedDemana, Franklin; Waits, Bert K. – Mathematics Teacher, 1993
Discusses solutions to real-world linear particle-motion problems using graphing calculators to simulate the motion and traditional analytic methods of calculus. Applications include (1) changing circular or curvilinear motion into linear motion and (2) linear particle accelerators in physics. (MDH)
Descriptors: Acceleration (Physics), Calculus, Computer Assisted Instruction, Computer Simulation
Gerny, Marianne; Alpers, Burkhard – International Journal of Computers for Mathematical Learning, 2004
In this article we describe a mathematical microworld for investigating car motion on a racing course and its use with a group of grade 12 students. The microworld is concerned with the mathematical construction of courses and functions which describe car motion. It is implemented in the computer algebra system, Maple[R], which provides the means…
Descriptors: Motor Vehicles, Motion, Grade 12, Algebra
Seker, Hayati; Welsh, Laura C. – Science & Education, 2006
This paper reports a 4-month study that investigated the effectiveness of curriculum materials incorporating the history of science (HOS) on learning science, understanding the nature of science (NOS), and students' interest in science. With regards to these objectives, three different class contexts were developed with three main types of…
Descriptors: Scientific Principles, Student Interests, Science Interests, Motion
Svec, Michael T. – 1995
Graphs of objects in motion are frequently used in introductory high school or college physics courses since they offer a valuable alternative to verbal and algebraic descriptions by offering students another way of manipulating the developing concepts. If graphs are to be a valuable tool for students, then the level of the students' graphing…
Descriptors: Computer Interfaces, Computer Uses in Education, Concept Formation, Graphs

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