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Prytz, Kjell – Physics Teacher, 2016
It will be demonstrated how the reflection law may be derived on an atomic basis using the plane wave approximation together with Huygens' principle. The model utilized is based on the electric dipole character of matter originating from its molecular constituents. This approach is not new but has, since it was first introduced by Ewald and Oseen…
Descriptors: Scientific Concepts, Scientific Principles, Molecular Structure, Physics
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Wahab, M. Farooq; Gore, Gordon R. – Physics Teacher, 2013
In a recent issue of "TPT," Gordon Gore made interesting observations about the red or yellow fluorescence when laser beams are passed through olive oil. With the excellent visuals contained in that article, we present a pictorial explanation of the questions that were raised in Ref 1 ("Fun with Fluorescence in Olive Oil,"…
Descriptors: Science Instruction, Physics, Molecular Structure, Light
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Bochnícek, Zdenek – Physics Teacher, 2013
In this paper the mechanical properties of carbon nanotubes are discussed in connection with the possibility to use them for the construction of a space elevator. From the fundamental information about the structure of a carbon nanotube and the chemical bond between carbon atoms, Young's modulus and the ultimate tensile strength are…
Descriptors: Science Instruction, Physics, Scientific Principles, Mechanics (Physics)
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Hobson, Art – Physics Teacher, 2011
In order to explain certain features of radioactive beta decay, Wolfgang Pauli suggested in 1930 that the nucleus emitted, in addition to a beta particle, another particle of an entirely new type. The hypothesized particle, dubbed the neutrino, would not be discovered experimentally for another 25 years. It's not easy to detect neutrinos, because…
Descriptors: Physics, Science Instruction, Molecular Structure, Scientific Principles
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Richert, Alex; Binder, P. -M. – Physics Teacher, 2011
The siphon is a very useful example of early technology, the operation of which has long been well understood. A recent article makes the claim that established beliefs regarding this device are incorrect and proposes a "chain model" in which intermolecular forces within the fluid play a large role while atmospheric pressure does not. We have…
Descriptors: Play, Science Experiments, Science Instruction, Molecular Structure
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Groff, Jeffrey R. – Physics Teacher, 2012
Bioscience and premedical profession students are a major demographic served by introductory physics courses at many colleges and universities. Exposing these students to biological applications of physical principles will help them to appreciate physics as a useful tool for their future professions. Here I describe an experiment suitable for…
Descriptors: Science Instruction, Optics, Physics, College Science
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Heilig, Steven J. – Physics Teacher, 2010
Several years ago a student asked why so many things in the solar system were round. He noted that many objects in the solar system, although not all, are round. The standard answer, which he knew, is that the mutual gravitational attraction of the molecules pulls them into the shape that gets them as close to each other as possible: a sphere.…
Descriptors: Astronomy, Science Instruction, Physics, Scientific Concepts
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Chang, Wheijen – Physics Teacher, 2011
The literature has revealed that many students encounter substantial difficulties in applying the first law of thermodynamics. For example, university students sometimes fail to recognize that heat and work are independent means of energy transfer. When discussing adiabatic processes for an ideal gas, few students can correctly refer to the…
Descriptors: Thermodynamics, Climate, Calculus, Science Instruction
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Liff, Mark I. – Physics Teacher, 2010
The unusual thermal behavior of rubbers, though discovered a long time ago, can still be mind-boggling for students and teachers who encounter this class of polymeric systems. Unlike other solids, stretched elastic polymers shrink upon heating. This is a manifestation of the Gough-Joule (G-J) effect. Joule in the 1850s studied the thermal behavior…
Descriptors: Heat, Scientific Concepts, Memory, Science Instruction
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Huggins, Elisha – Physics Teacher, 2009
The paper on "Magnetism and Simultaneity" by Adler provides an excellent new thought experiment involving the lack of simultaneity in Einstein's special relativity. Adler uses the lack of simultaneity rather than the Lorentz contraction to derive the formula for the magnetic force on a moving charged particle. Advantages of his derivation are that…
Descriptors: Physics, Magnets, Scientific Principles, Molecular Structure
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Freeman, Mark – Physics Teacher, 2009
This paper overviews the occurrence and study of magnetism on nanometer-length scales, that is, at sizes where the natural unit on a ruler would be one-billionth of a meter. Nanomagnetism has fascinating early origins on planet Earth, and we must first go back a couple billion years to get to the beginning of the story. Then we will quickly make…
Descriptors: Science Instruction, Physics, Scientific Principles, Magnets
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Zable, Anthony C. – Physics Teacher, 2010
The concepts of Newtonian mechanics, fluids, and ideal gas law physics are often treated as separate and isolated topics in the typical introductory college-level physics course, especially in the laboratory setting. To bridge these subjects, a simple experiment was developed that utilizes computer-based data acquisition sensors and a digital gram…
Descriptors: Thermodynamics, Mechanics (Physics), Scientific Concepts, Science Experiments
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Chasteen, Stephanie V.; Chasteen, N. Dennis; Doherty, Paul – Physics Teacher, 2008
Fruit batteries and saltwater batteries are excellent ways to explore simple circuits in the classroom. These are examples of air batteries in which metal reacts with oxygen in the air in order to generate free electrons, which flow through an external circuit and do work. Students are typically told that the salt or fruit water acts as an…
Descriptors: Chemistry, Science Teachers, Physics, Scientific Principles
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Goldader, Jeffrey D. – Physics Teacher, 2008
The Celsius and Kelvin temperature scales, we tell our students, are related. We explain that a change in temperature of 1 degree C corresponds to a change of 1 Kelvin and that atoms and molecules have zero kinetic energy at zero Kelvin, -273 degrees C. In this paper, we will show how students can derive the relationship between the Celsius and…
Descriptors: Kinetics, Physics, Climate, Science Instruction
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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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