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Herman, Rhett; Ballowe, Abigail; Ashley, Joe – Physics Teacher, 2017
Two students in a recent thermodynamics/statistical mechanics course needed to complete a course-related project to receive honors credit for the class. Such courses are typically theoretical, without an accompanying laboratory, although there are existing related hands-on exercises. The choice of the project was influenced by one student's desire…
Descriptors: Thermodynamics, Mechanics (Physics), Honors Curriculum, Engineering
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Hill, Nicole Breanne – Physics Teacher, 2016
MAUVE (magnitude, answer, units, variables, and equations) is a framework and rubric to help students and teachers through the process of clearly solving and assessing solutions to introductory physics problems. Success in introductory physics often derives from an understanding of units, a command over dimensional analysis, and good bookkeeping.…
Descriptors: Physics, Science Instruction, Problem Solving, Grading
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Dib, Claudio – Physics Teacher, 2013
A major consequence of special relativity, expressed in the relation E[subscript 0] = mc[superscript 2], is that the total energy content of an object at rest, including its thermal motion and binding energy among its constituents, is a measure of its inertia, i.e., its mass. This relation was first stated by Einstein. He showed that, in order to…
Descriptors: Science Instruction, Scientific Concepts, Physics, Energy
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Lipscombe, Trevor C.; Mungan, Carl E. – Physics Teacher, 2012
In the late 18th and throughout the 19th century, lead shot for muskets was prepared by use of a shot tower. Molten lead was poured from the top of a tower and, during its fall, the drops became spherical under the action of surface tension. In this article, we ask and answer the question: "How does the size of the lead shot depend on the height…
Descriptors: Mechanics (Physics), Science Instruction, Metallurgy, Scientific Concepts
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Left, Harvey S. – Physics Teacher, 2012
Energy and entropy are centerpieces of physics. Energy is typically introduced in the study of classical mechanics. Although energy in this context can be challenging, its use in thermodynamics and its connection with entropy seem to take on a special air of mystery. In this five-part series, I pinpoint ways around key areas of difficulty to…
Descriptors: Thermodynamics, Mechanics (Physics), Scientific Concepts, Science Education
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Bohren, Craig F. – Physics Teacher, 2011
An Internet search for why objects, especially humans, cool more rapidly in water than in air, both at the same temperature, and by how much, yields off-the-cuff answers unsupported by experiment or analysis. To answer these questions in depth requires a smattering of engineering heat transfer, including radiative transfer, and the different…
Descriptors: Heat, Thermodynamics, Spectroscopy, Hydraulics
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Jadrich, James; Bruxvoort, Crystal – Physics Teacher, 2010
Fill an ordinary latex balloon with helium gas and you know what to expect. Over the next day or two the volume will decrease noticeably as helium escapes from the balloon. So what happens when a latex balloon is filled with carbon dioxide gas? Surprisingly, carbon dioxide balloons deflate at rates as much as an order of magnitude faster than…
Descriptors: Thermodynamics, Mechanics (Physics), Scientific Concepts, Chemistry
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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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Gottlieb, Herbert H., Ed. – Physics Teacher, 1975
Descriptors: Acoustics, Mechanics (Physics), Physics, Science Education
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Brown, Sanborn C. – Physics Teacher, 1976
Presents a chronicle of the life of American born Benjamin Thompson. His private life as well as descriptions of his scientific experiments are discussed. (CP)
Descriptors: Mechanics (Physics), Optics, Physics, Science Education
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Ficken, George W., Jr. – Physics Teacher, 1976
Photographs illustrate several principles of physics which can be observed in everyday situations. (CP)
Descriptors: Instructional Materials, Mechanics (Physics), Optics, Photography
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Walker, Jearl – Physics Teacher, 1978
Lists several ideas for experiments for the amateur scientist to try or design. The list covers a wide range of topics; sound, mechanics, thermodynamics, fluids, optics, and electrostatics. (GA)
Descriptors: Acoustics, Experiments, Mechanics (Physics), Optics
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Lehrman, Robert L. – Physics Teacher, 1973
The common definition is shown to be false. A modern definition must be based on the first and second laws of thermodynamics and in terms of a set of algebraic expressions written in such a way that their sum does not change when a system is isolated. (DF)
Descriptors: Energy, Force, Mechanics (Physics), Physics
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Gottlieb, Herbert H., Ed. – Physics Teacher, 1976
Descriptors: Construction (Process), Demonstrations (Educational), Educational Media, Laboratory Equipment
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Gottlieb, Herbert H., Ed. – Physics Teacher, 1975
Descriptors: Electronic Equipment, Instructional Materials, Laboratory Equipment, Magnets
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