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Kozhevnikov, Maria; Motes, Michael A.; Hegarty, Mary – Cognitive Science, 2007
Three studies were conducted to examine the relation of spatial visualization to solving kinematics problems that involved either predicting the two-dimensional motion of an object, translating from one frame of reference to another, or interpreting kinematics graphs. In Study 1, 60 physics-naive students were administered kinematics problems and…
Descriptors: Visualization, Motion, Graphs, Eye Movements
Araujo, Ives Solano; Veit, Eliane Angela; Moreira, Marco Antonio – Computers & Education, 2008
The purpose of this study was to investigate undergraduate students' performance while exposed to complementary computational modelling activities to improve physics learning, using the software "Modellus." Interpretation of kinematics graphs was the physics topic chosen for investigation. The theoretical framework adopted was based on Halloun's…
Descriptors: Learning Theories, Experimental Groups, Control Groups, Undergraduate Students
Terzella, T.; Sundermier, J.; Sinacore, J.; Owen, C.; Takai, H. – Physics Teacher, 2008
In one of the classic free-fall experiments, a small mass is attached to a strip of paper tape and both are allowed to fall through a spark timer, where sparks are generated at regular time intervals. Students analyze marks (dots) left on the tape by the timer, thereby generating distance-versus-time data, which they analyze to extract the…
Descriptors: Photography, Intervals, Physics, Science Instruction
Thomsen, John S. – Amer J Phys, 1970
Descriptors: College Science, Graphs, Physics, Temperature
Rutledge, Harley D. – Amer J Phys, 1970
Discusses a graphical method of teaching elementary collisions. This method yields universal solutions to head-on collision problems with the target at rest by the use of parameters and graphical analysis at a mathematical level that beginning physics students can understand. The author concludes that this method is better than the traditional…
Descriptors: College Science, Energy, Graphs, Instruction
Merrill, John R. – Amer J Phys, 1969
Descriptors: College Science, Computer Programs, Electricity, Graphs
Wittmann, Michael C. – Physical Review Special Topics - Physics Education Research, 2006
We introduce resource graphs, a representation of linked ideas used when reasoning about specific contexts in physics. Our model is consistent with previous descriptions of coordination classes and resources. It represents mesoscopic scales that are neither knowledge-in-pieces nor large-scale concepts. We use resource graphs to describe several…
Descriptors: Physics, Graphs, Educational Resources, Bibliographies
Pavlekovic, Margita, Ed.; Kolar-Begovic, Zdenka, Ed.; Kolar-Super, Ruzica, Ed. – Online Submission, 2013
The universities and faculties which educate teachers of mathematics for teaching pupils/students of any age group from pre-school age to higher education carefully monitor and compare valuable results of this research, detect the areas in which the mathematical achievements of pupils should be improved at the national level and propose the ways…
Descriptors: Operations Research, Geometric Concepts, Foreign Countries, Mathematics Instruction
Peer reviewedHodges, Laurent – Physics Today, 1975
Analyzes the commercial energy statistics of the world by dividing the nations into three groups: developed market economy, developed planned economy, and developing nations. (GS)
Descriptors: Economic Development, Energy, Graphs, Physics
Peer reviewedBalchin, A. A. – Physics Education, 1971
Descriptors: College Science, Graphs, Models, Optics
Bonham, Scott – Physics Teacher, 2007
What is physics without graphs and diagrams? The web is becoming ubiquitous, but how can one expect students to make graphs and diagrams on the web? The solution is to extend functionality through Java applets. Four examples of exercises using the Physics Applets for Drawing (PADs) will illustrate how these can be used for physics instruction to…
Descriptors: Physics, Teaching Methods, Graphs, Computer Uses in Education
Lovell, M.S. – Physics Education, 2007
This paper presents a derivation of all five Lagrange points by methods accessible to sixth-form students, and provides a further opportunity to match Newtonian gravity with centripetal force. The predictive powers of good scientific theories are also discussed with regard to the philosophy of science. Methods for calculating the positions of the…
Descriptors: Motion, Physics, Scientific Concepts, Science Instruction
Farkas, N.; Ramsier, R. D. – Physics Education, 2006
We present a simple activity that permits students to determine the coefficient of restitution of bouncing balls using only a stopwatch, a metre stick and graphical analysis. The experiment emphasizes that simple models, in combination with careful attention to how students make measurements, can lead to good results in a straightforward way.
Descriptors: Physics, Teaching Methods, Graphs, Learning Activities
Peer reviewedBlickensderfer, Roger – Physics Teacher, 1985
Presents a laboratory exercise designed to introduce graphical extrapolation. Major advantages of the method are in its simplicity and speed. The only measuring devices are a centimeter ruler and a micrometer caliper to check wall thickness. (JN)
Descriptors: College Science, Graphs, Higher Education, Physics
Peer reviewedBarnes, Howard – Physics Education, 2000
Teaches data interpretation using the example of world running records for men and women. Explains different ways of plotting data. (YDS)
Descriptors: Data Analysis, Graphs, Physics, Science Education

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