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Troy, Tia; Reiner, Megan; Haugen, Andrew J.; Moore, Nathan T. – Physics Education, 2017
The work describes an analogy-based small oscillations analysis of a standard static equilibrium lab problem. In addition to force analysis, a potential energy function for the system is developed, and by drawing out mathematical similarities to the simple harmonic oscillator, we are able to describe (and experimentally verify) the period of small…
Descriptors: Conservation (Concept), Energy, Motion, Physics
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Vongsawad, Cameron T.; Berardi, Mark L.; Neilsen, Tracianne B.; Gee, Kent L.; Whiting, Jennifer K.; Lawler, M. Jeannette – Physics Teacher, 2016
Although acoustics examples and demonstrations can be an effective tool for engaging students in introductory physics classes and outreach, teaching principles of sound and vibration to the deaf and hard of hearing needs to be approached carefully. The deaf and hard of hearing have less intuition with sound but are no strangers to some of the…
Descriptors: Acoustics, Deafness, Physics, Introductory Courses
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Gluck, Paul – Physics Teacher, 2011
A recent note in this journal presented a demonstration of standing waves along a cord consisting of two parts having different material densities, showing different sized wavelengths in each part. A generalization of that experiment to a continuously varying linear mass density is to vibrate a strip of material with gradually varying width (mass…
Descriptors: Scientific Concepts, Science Instruction, Demonstration Programs, Scientific Principles
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Feldman, Gerald – Physics Teacher, 2011
An operational understanding of Newton's third law is often elusive for students. Typical examples of this concept are given for contact forces that are closer to the students' everyday experience. While this is a good thing in general, the reaction force can sometimes be taken for granted, and the students can miss the opportunity to really think…
Descriptors: Scientific Principles, Science Instruction, Physics, Scientific Concepts
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Greenslade, Thomas B., Jr. – Physics Teacher, 2011
In my previous article on apparatus named after physicists and physics teachers, I discussed five relatively common pieces of apparatus from the 1875-1910 era. Now I will go back to the 18th and early-19th centuries to discuss eponymous apparatus that we are still using in lecture demonstrations. [For Part I, see EJ912907.]
Descriptors: Physics, Science Instruction, Laboratory Equipment, Scientists
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Van Domelen, Dave – Physics Teacher, 2010
It's always hard to know what to expect when bringing computers into an educational setting, as things are always changing. Student skills with computers are different today than they were 10 years ago, and 20 years ago almost counts as an alien world. Still, one hopes that some of these changes result in positive trends, such as student attitudes…
Descriptors: Student Attitudes, Demonstration Programs, Gender Differences, Physics
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Yoder, G.; Cook, J. – Physics Teacher, 2010
Interactive lecture demonstrations (ILDs) are a powerful tool designed to help instructors bring state-of-the-art teaching pedagogies into the college-level introductory physics classroom. ILDs have been shown to improve students' conceptual understanding, and many examples have been created and published by Sokoloff and Thornton. We have used the…
Descriptors: Physics, Motion, Calculus, Lecture Method
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Gluck, Paul – Physics Education, 2008
Special events like science days, teacher's meetings and physics recruiting efforts require spectacular and, if possible, interactive experiments for the audience. Based on past experience with such events, we have gathered and present here a series of demonstration experiments in mechanics, optics, waves and electricity which are suitable, and…
Descriptors: Mechanics (Physics), Optics, Science Experiments, Science Instruction
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Wilson, Jack M.; Ingoldsby, Tim C. – Physics Today, 1983
Describes several outstanding high school physics programs and analyzes the reasons for their success. This analysis suggests a set of conditions for creating successful programs at other schools. A list of goals for successful physics programs is included. (JN)
Descriptors: Demonstration Programs, Educational Objectives, High Schools, Magnet Schools
TENDAM, D.J.; AND OTHERS – 1961
AN ATTEMPT WAS MADE TO ASCERTAIN WHETHER MOTION PICTURE FILMS OF SELECTED PHYSICS DEMONSTRATION EXPERIMENTS WERE AS EFFECTIVE AS DEMONSTRATIONS PERFORMED DURING COLLEGE PHYSICS LECTURES. A SECOND OBJECTIVE WAS TO DETERMINE WHETHER STUDENTS WOULD TAKE ADVANTAGE OF THE OPPORTUNITY TO VIEW SOME EXPERIMENTS ON FILM OUTSIDE OF CLASS ON A VOLUNTARY…
Descriptors: Academic Achievement, Achievement, Achievement Rating, College Students
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Burke, Edward W., Jr. – Journal of College Science Teaching, 1993
Describes how to create good physics programs in small colleges. (PR)
Descriptors: College Science, Demonstration Programs, Higher Education, Physics
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Bowen, David; And Others – Physics Teacher, 1985
Twenty secondary physics teachers from southeast Michigan participated in a National Science Foundation Honors workshop on excellence in physics teaching. Presented are the classroom practices, important resources, and roles for good programs they identified and their recommendations for improving student/counselor/administrator perceptions of…
Descriptors: Demonstration Programs, Educational Objectives, High Schools, Physics
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Khandelwal, D. P. – Physics Education, 1993
Highlights the need to make the undergraduate physics laboratory more exciting and commensurate with the time assigned for it in the curriculum. Suggests establishing a model undergraduate physics laboratory at one place then reproducing it in five places for a massive reorientation program for teachers. Contains brief outlines of 30 experiments…
Descriptors: Demonstration Programs, Foreign Countries, Higher Education, Indians
Center for Occupational Research and Development, Inc., Waco, TX. – 1987
This document provides the findings of pilot tests of 10 units for an applied science course for high school vocational students. Each of the reports on the pilot tests of the Principles of Technology units contains information on procedures, methodology limitations, sample, the pretest/posttest instrument and results, student attitude results,…
Descriptors: Competency Based Education, Curriculum Evaluation, Demonstration Programs, Field Tests
Office of Educational Research and Improvement (ED), Washington, DC. – 2001
In 1994 with the initiation of Congress, the Office of Educational Research and Improvement (OERI) created a panel for the evaluation of educational programs in the content areas of mathematics, science, gender equity, educational technology, and safe, disciplined drug-free schools. In 1998, the Expert Panel on Mathematics and Science Education…
Descriptors: Academic Achievement, Demonstration Programs, Elementary Secondary Education, Environmental Education
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