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Showing 166 to 180 of 235 results Save | Export
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Matteucci, G. – European Journal of Physics, 2007
In the so-called electric Aharonov-Bohm effect, a quantum interference pattern shift is produced when electrons move in an electric field free region but, at the same time, in the presence of a time-dependent electric potential. Analogous fringe shifts are observed in interference experiments where electrons, travelling through an electrostatic…
Descriptors: Energy, Science Instruction, Quantum Mechanics, Physics
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Gabovich, Alexander M.; Gabovich, Nadezhda A. – European Journal of Physics, 2007
The mass of electromagnetic radiation in a cavity is considered using the correct relativistic approach based on the concept of a scalar mass not dependent on the particle (system) velocity. It is shown that due to the non-additivity of mass in the special theory of relativity the ensemble of chaotically propagating mass-less photons in the cavity…
Descriptors: College Science, Undergraduate Study, Radiation, Scientific Concepts
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Freeman, W. Larry; Freda, Ronald F. – Physics Teacher, 2007
Many general physics laboratories involve the use of springs to demonstrate Hooke's law, and much ado is made about how this can be used as a model for describing the elastic characteristics of materials at the molecular or atomic level. In recent years, the proliferation of computers, and appropriate sensors, have made it possible to demonstrate…
Descriptors: Science Experiments, Physics, Scientific Principles, Mechanics (Physics)
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Dasgupta, Ananda – European Journal of Physics, 2007
The Bondi K-calculus is a delightful method that has been used to provide rich insights into relativistic kinematics. In this paper, we will try to show how several important results of relativistic kinetics can be derived simply by using this approach. In addition, we will also indicate how the K-calculus can be used to simplify certain…
Descriptors: Kinetics, Calculus, Science Instruction, Motion
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Briese, Nicholas; Jakubowsk, Henry V. – Biochemistry and Molecular Biology Education, 2007
A laboratory project for a first semester biochemistry course is described, which integrates the traditional classroom study of the structure and function of biomolecules with the laboratory study of these molecules using fluorescence spectroscopy. Students are assigned a specific question addressing the stability/function of lipids, proteins, or…
Descriptors: Spectroscopy, Physics, Laboratory Experiments, Biochemistry
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Drexler, K. Eric – Physics Education, 2005
Fabrication techniques are the foundation of physical technology, and are thus of fundamental interest. Physical principles indicate that nanoscale systems will be able to fabricate a wide range of structures, operating with high productivity and precise molecular control. Advanced systems of this kind will require intermediate generations of…
Descriptors: Manufacturing, Physics, Molecular Structure, Science Education
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Maroto, J. A.; Perez-Munuzuri, V.; Romero-Cano, M. S. – European Journal of Physics, 2007
We describe experiments on Benard-Marangoni convection which permit a useful understanding of the main concepts involved in this phenomenon such as, for example, Benard cells, aspect ratio, Rayleigh and Marangoni numbers, Crispation number and critical conditions. In spite of the complexity of convection theory, we carry out a simple and…
Descriptors: Undergraduate Students, Thermodynamics, Internet, Laboratory Experiments
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Pujol, O.; Perez, J. P. – European Journal of Physics, 2007
Scientific and pedagogical comments about the fundamental physical concept of energy are made. In particular, we argue for an historical presentation of this concept because its essential justification is the research, conscious or not, of a characteristic quantity of a system whose fundamental property is to be conservative. Some delicate issues…
Descriptors: College Science, Molecular Structure, Concept Formation, Energy
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Badala, A.; Blanco, F.; La Rocca, P.; Pappalardo, G. S.; Pulvirenti, A.; Riggi, F. – European Journal of Physics, 2007
The basic properties of extensive air showers of particles produced in the interaction of a high-energy primary cosmic ray in the Earth's atmosphere are discussed in the context of educational cosmic ray projects involving undergraduate students and high-school teams. Simulation results produced by an air shower development code were made…
Descriptors: Undergraduate Students, Physics, Internet, College Science
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Flinn, I. – Physics Education, 1975
Describes the piezoelectric effect in ceramics and presents a quantitative representation of this effect. Explains the processes involved in the manufacture of piezoelectric ceramics, the materials used, and the situations in which they are applied. (GS)
Descriptors: Ceramics, Electricity, Electronics, Molecular Structure
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Daniel, Michael – Physics Education, 2006
Quantum fields are introduced in order to give students an accurate qualitative understanding of the origin of Feynman diagrams as representations of particle interactions. Elementary diagrams are combined to produce diagrams representing the main features of the Standard Model.
Descriptors: Concept Formation, Scientific Concepts, Science Instruction, Models
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Chapline, George; Wood, Lowell – Physics Today, 1975
Outlines the prospects of generating coherent x rays using high-power lasers and indentifies problem areas in their development. Indicates possible applications for coherent x rays in the fields of chemistry, biology, and crystallography. (GS)
Descriptors: Biology, Chemistry, Lasers, Molecular Structure
Hakim, Joy – American Educator, 2002
Shows how physics, arguably the most confusing of the sciences, can be told as an interesting and informative tale of determination and discovery that even middle school students can grasp, presenting the story of the scientific detective work that eventually convinced the world that the atom existed. (SM)
Descriptors: Atomic Structure, Molecular Structure, Physics, Science Education
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Olsson, Lars-Fride; Kloo, Lars – Journal of Chemical Education, 2004
The interplay between a nucleus and an electron pair is explained through a basic application of an electrostatic and balanced model to determine the correlated and repulsive movements of the electron pair. The stable correlation depends on the positive charge produced by the combined force, which in turn establishes a negative potential energy.
Descriptors: Science Education, Physics, Chemistry, Models
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Zimmermann, Jan; van Dorp, Arthur; Renn, Alois – Journal of Chemical Education, 2004
The investigation of photochemistry and photophysics of individual quantum systems is described with the help of a wide-field fluorescence microscopy approach. The fluorescence single molecules are observed in real time.
Descriptors: Quantum Mechanics, Chemistry, Physics, Molecular Structure
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