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Lewalle, Alexandre – Physics Teacher, 2008
A pair of fine tweezers and a steady hand may well be enough to pick up a grain of sand, but what would you use to hold something hundreds of times smaller still, the size of only one micron? The answer is to use a device that is not mechanical in nature but that relies instead on the tiny forces that light exerts on small particles: "optical…
Descriptors: Thermodynamics, Optics, Laboratory Experiments, Science Instruction
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Heck, Andre; van Dongen, Caroline – Physics Education, 2008
Human walking is a complicated motion. Movement scientists have developed various research methods to study gait. This article describes how a high school student collected and analysed high quality gait data in much the same way that movement scientists do, via the recording and measurement of motions with a video analysis tool and via…
Descriptors: Science Laboratories, High School Students, Motion, Human Body
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Hernandez-Walls, R.; Rojas-Mayoral, E.; Baez-Castillo, L.; Rojas-Mayoral, B. – Physics Education, 2008
An inexpensive and easily implemented device to measure wind velocity is proposed. This prototype has the advantage of being able to measure both the speed and the direction of the wind in two dimensions. The device utilizes a computational interface commonly referred to as a "mouse." The mouse proposed for this prototype contains an…
Descriptors: Laboratory Equipment, Motion, Kinetics, Weather
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Sanchez, Katheryn M.; Schlamadinger, Diana E.; Gable, Jonathan E.; Kim, Judy E. – Journal of Chemical Education, 2008
Protein folding is an exploding area of research in biophysics and physical chemistry. Here, we describe the integration of several techniques, including absorption spectroscopy, fluorescence spectroscopy, and Forster resonance energy transfer (FRET) measurements, to probe important topics in protein folding. Cytochrome c is used as a model…
Descriptors: Spectroscopy, Physics, Chemistry, Biophysics
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Robinson, A. W.; Patrick, C. G. – Physics Education, 2008
We present a case study of the physical principles necessary to model the high altitude parachute jump made by Colonel Joseph Kittinger, USAF, in 1960, in order to determine the maximum speed attained and to calculate whether this speed was sufficient to exceed the speed of sound at that altitude. There is considerable discrepancy in the value of…
Descriptors: Mathematical Models, Visual Aids, Physics, Case Studies
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Lapp, David R. – Physics Education, 2008
This article describes an activity that can be performed with an inexpensive plastic toy popper. The activity builds skill at analysing motion and results in the calculation of a surprisingly extreme acceleration. (Contains 1 figure.)
Descriptors: Scientific Concepts, High School Students, Secondary School Science, Science Instruction
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Liu, Xiufeng; Fulmer, Gavin – Journal of Science Education and Technology, 2008
This article reports on an analysis of alignment between NY state core curricula and NY Regents tests in physics and chemistry. Both the curriculum and test were represented by a two dimensional table consisting of topics and cognitive demands. The cell values of the table were numbers of major understandings in the curriculum and points of test…
Descriptors: Core Curriculum, Test Items, Science Curriculum, Curriculum Development
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Mazur, Zygmunt; Grech, Dariusz – European Journal of Physics, 2008
A simple model of the random Brownian walk of a spherical mesoscopic particle in viscous liquids is proposed. The model can be solved analytically and simulated numerically. The analytic solution gives the known Einstein-Smoluchowski diffusion law r[superscript 2] = 2Dt, where the diffusion constant D is expressed by the mass and geometry of a…
Descriptors: Science Instruction, Science Laboratories, Physics, College Science
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Cano, M. E.; Cordova-Fraga, T.; Sosa, M.; Bernal-Alvarado, J.; Baffa, O. – European Journal of Physics, 2008
A description of the measurement procedure, related theory and experimental data analysis of the magnetic susceptibility of materials is given. A short review of previous papers in the line of this subject is presented. This work covers the whole experimental process, in detail, and presents a pragmatic approach for pedagogical sake. (Contains 2…
Descriptors: Thermodynamics, Equations (Mathematics), Problem Solving, College Science
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Santillan, M.; Zeron, E. S.; Del Rio-Correa, J. L. – European Journal of Physics, 2008
In the traditional statistical mechanics textbooks, the entropy concept is first introduced for the microcanonical ensemble and then extended to the canonical and grand-canonical cases. However, in the authors' experience, this procedure makes it difficult for the student to see the bigger picture and, although quite ingenuous, the subtleness of…
Descriptors: Textbooks, Thermodynamics, Mechanics (Physics), Scientific Concepts
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Suson, Daniel J.; Cox, Paul H.; Hewett, Lionel D.; Leckenby, Henry J.; Espinosa, James; Fisher, Paul; Craig, David; Marble, Daniel K.; Balasubramanya, M. K.; Gonzalez, O.; Ni, Q.; Willson, V. L. – Journal of Science Education and Technology, 2008
The Texas Electronic Coalition for Physics was established in 2000 as a means of demonstrating that by linking together, small programs can maintain their vitality in higher education. Using Interactive Television, the Internet, telephones, faxes, and other electronic media, five physics programs scattered across the state of Texas formed a…
Descriptors: Distance Education, Physics, Educational Technology, Electronic Learning
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Peralta, Luis; Farinha, Ana Catarina; Rego, Florbela – European Journal of Physics, 2008
X-ray fluorescence is a non-destructive technique that allows elemental composition analysis. In this paper we describe a prescription to obtain the elemental composition of homogeneous coins, like 50 cent Euro coins, and how to get the quantitative proportions of each element with the help of Monte Carlo simulation. Undergraduate students can…
Descriptors: Undergraduate Students, Monte Carlo Methods, Chemistry, Science Laboratories
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Capelli, R.; Pozzi, G. – European Journal of Physics, 2008
It is shown how the same physically appealing method can be applied to find analytic solutions for two difficult and apparently unrelated problems in optics and electrostatics. They are: (i) the diffraction of a plane wave at a perfectly conducting thin half-plane and (ii) the electrostatic field associated with a parallel array of stripes held at…
Descriptors: Undergraduate Students, Optics, Calculus, Science Instruction
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Basu, Sreyashi Jhumki – Journal of Research in Science Teaching, 2008
An array of data suggests that low-income, minority students are excluded from a high-quality physics education. The education literature proposes that cultivating student voice in classrooms helps youth feel a deeper, more meaningful connection with school. However, limited data exist in the physics education literature on how student voice is…
Descriptors: High Schools, Science Education, Physics, Case Studies
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Pendrill, Ann-Marie – Physics Education, 2008
A carousel gives possibilities to explore physics in rotating systems and to gain first-hand experience of methods to measure rotation, without the need for an external reference. This paper discusses the Foucault pendulum, as well as the sideways deflection of horizontally and vertically moving objects in a rotating system. These experiments lay…
Descriptors: Physics, Measurement Techniques, Scientific Principles, Science Instruction
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