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Showing 1,246 to 1,260 of 1,705 results Save | Export
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Chandler, David – Physics Teacher, 1991
Two computer-generated star charts that can be used as overlay transparencies to show an expanding universe are presented. Directions on how to use the star charts to determine the Hubble constant and the age of the universe are provided. (KR)
Descriptors: Astronomy, Physics, Problem Solving, Science Activities
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Kernohan, James C. – Physics Teacher, 1991
The effect of background color on the perception of color by students is discussed. Explanations on why students only see certain colors when viewing colored marks on a blackboard through different color filters are provided. (KR)
Descriptors: Color, Light, Physics, Problem Solving
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Feulner, John – Physics Teacher, 1991
Described is a situation where students are allowed to enlist the aid of a computer graphing program to produce graphs for their lab reports. (KR)
Descriptors: Computer Assisted Instruction, Graphs, Physics, Problem Solving
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Medhekar, Sarang – Physics Education, 1991
Using a physical picture, an expression for the maximum possible transverse velocity and orientation required for that by a linear emitter in special theory of relativity has been derived. A differential calculus method is also used to derive the expression. (Author/KR)
Descriptors: Calculus, Computation, Higher Education, Motion
Brekke, Stewart E. – Spectrum, 1993
High school physics, if taught properly, should be accessible to 50% of students rather than the currently estimated 20% of students. Suggests changes that need to be made in course format, including giving plenty of problem-solving help, improving high school texts to conform to principles of learning, and designing a course so that all can…
Descriptors: Educational Improvement, High Schools, Instructional Effectiveness, Physics
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Brown, Helen; Meyers, Bernice; Schmidt, William – Hoosier Science Teacher, 1999
Marbles were successfully used to help primary students develop concepts of motion. Marble-unit activities began with shaking and rattling inference bags and predicting by listening just how many marbles were in each bag. Students made qualitative and quantitative observations of the marbles, manipulated marbles with a partner, and observed…
Descriptors: Concept Teaching, Elementary Education, Energy, Motion
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Sumrall, William J.; Richardson, Denise; Yan, Yuan – Science Teacher, 1998
Explains a series of laboratory activities which employ a microwave oven to help students understand word problems that relate to states of matter, collect data, and calculate and compare electrical costs to heat energy costs. (DDR)
Descriptors: Elementary Secondary Education, Hands on Science, Heat, Laboratory Procedures
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Woodring, Kathleen Mills – Science Teacher, 2000
Introduces a project of constructing a rover that can maintain its upright position with minimal gravitation that is based on National Aeronautics and Space Administration (NASA) Jet Propulsion Laboratories rover designs. Tests the project in NASA's "Vomit Comet" under zero-gravity environment. (YDS)
Descriptors: Design, Engineering, Gravity (Physics), Hands on Science
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Hewitt, Paul G. – Science Teacher, 2000
Introduces conceptual physics, which does not have the computational roadblock typical to most physics courses and appeals to both science and non-science students. First published in 1990. (YDS)
Descriptors: Concept Formation, Critical Thinking, High Schools, Mathematical Applications
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Marrongelle, Karen A. – School Science and Mathematics, 2004
The present research study investigates how undergraduate students in an integrated calculus and physics class use physics to help them solve calculus problems. Using Zandieh's (2000) framework for analyzing student understanding of derivative as a starting point, this study adds detail to her "paradigmatic physical" context and begins to address…
Descriptors: Undergraduate Students, Physics, Mathematics Education, Classification
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Perales-Palacios, F. Javier; Vilchez-Gonzalez, Jose M. – International Journal of Science Education, 2005
Given the progressive loss of influence for the school relative to television in youngsters' everyday lives, this article describes the procedure and the results of including cartoons in the physics curriculum in secondary education. Work was carried out intensively with a small group of pupils and sporadically with a larger group. In the first…
Descriptors: Research Design, Cartoons, Television, Secondary Education
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Angeli, Celestino; Borini, Stefano; Cimiraglia, Renzo – Journal of Chemical Education, 2005
A very simple strategy for the solution of the Schrodinger equation of a particle moving in one dimension subjected to a generic potential is presented. This strategy is implemented in a computer program called Kmonodium, which is free and distributed under the General Public License (GPL).
Descriptors: Computer Software, Physics, Scientific Concepts, Chemistry
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Guisasola, Jenaro; Ceberio, Mikel; Zubimendi, Jose Luis – Research in Science Education, 2006
The study we present tries to explore how first year engineering students formulate hypotheses in order to construct their own problem solving structure when confronted with problems in physics. Under the constructivistic perspective of the teaching-learning process, the formulation of hypotheses plays a key role in contrasting the coherence of…
Descriptors: Physics, Problem Solving, Teaching Methods, College Science
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Sharma, Manjula D.; Millar, Rosemary M.; Smith, Andrew; Sefton, Ian M. – Research in Science Education, 2004
We report on an investigation of students' ideas about gravity after a semester of instruction in physics at university. There are two aspects to the study which was concerned with students' answers to a carefully designed qualitative examination question on gravity. The first aspect is a classification of the answers and a comparative study of…
Descriptors: Physics, Scientific Concepts, College Science, Science Instruction
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Tuminaro, Jonathan; Redish, Edward F. – Physical Review Special Topics - Physics Education Research, 2007
Although much is known about the differences between expert and novice problem solvers, knowledge of those differences typically does not provide enough detail to help instructors understand why some students seem to learn physics while solving problems and others do not. A critical issue is how students access the knowledge they have in the…
Descriptors: Physics, Problem Solving, Phenomenology, Science Instruction
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