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Holmes, N. G.; Bonn, D. A. – Physics Teacher, 2015
In a recent report, the American Association of Physics Teachers has developed an updated set of recommendations for curriculum of undergraduate physics labs. This document focuses on six major themes: constructing knowledge, modeling, designing experiments, developing technical and practical laboratory skills, analyzing and visualizing data, and…
Descriptors: Introductory Courses, Physics, Statistical Analysis, Comparative Analysis
Suppapittayaporn, Decha; Panijpan, Bhinyo; Emarat, Narumon – Physics Teacher, 2010
After learning how to trace the principal rays [Fig. 1(i)] through a thin lens in order to form the image in the conventional way, students sometimes ask whether it is possible to use other rays emanating from the object to form exactly the same image--for example, the two arbitrary rays shown in Fig. 1(ii). The answer is a definite yes, and this…
Descriptors: Light, Problem Solving, Scientific Concepts, Science Instruction
Chamberlain, Jeff – Physics Teacher, 2010
The rapid compression or expansion of a gas in a plastic syringe is a poor approximation of an adiabatic process. Heat exchange with the walls of the syringe brings the gas to equilibrium in an amount of time that is not significantly greater than the length of the compression or expansion itself. Despite this limitation, it is still possible to…
Descriptors: Physics, Science Experiments, Measurement Techniques, Scientific Concepts
Hack, William Nathan; Baird, William H. – Physics Teacher, 2012
The speed of sound is a physical property that can be measured easily in the lab. However, finding an inexpensive and intuitive way for students to determine this speed has been more involved. The introduction of affordable consumer-grade high-speed cameras (such as the Exilim EX-FC100) makes conceptually simple experiments feasible. Since the…
Descriptors: Video Technology, Photography, Motion, Physics
Peer reviewedSpiegel, F. Xavier; Weigman, Bernard J. – Physics Teacher, 1971
Descriptors: College Science, Course Descriptions, Demonstrations (Educational), Instruction
Peer reviewedRobertson, William C. – Physics Teacher, 1985
Describes an introductory laboratory format (used for 12 years at Colorado College) that involves students in the design and exploration phases of experiments. The laboratory features include choices of experiments; clearly explained goals; student selection of methods; wise equipment use; check-out procedures with instructor questions; and no…
Descriptors: College Science, Higher Education, Laboratory Procedures, Physics
Peer reviewedDeWitt, Randolph A. – Physics Teacher, 1972
Descriptors: College Science, Course Descriptions, General Education, Laboratory Experiments
Peer reviewedRichter, Herbert W. – Physics Teacher, 1971
Descriptors: Academic Achievement, Instruction, Laboratory Procedures, Physics
Peer reviewedStewart, James E. – Physics Teacher, 1991
The effects of temperature and pressure on the collapsing of soda cans are discussed. The use of various temperatures and substances for the cooling bath are described. (KR)
Descriptors: Laboratory Procedures, Physics, Pressure (Physics), Problem Solving
Peer reviewedGlasser, Jim – Physics Teacher, 1991
An activity in which students design and build an apparatus that can be used to rapidly determine the specific gravities of small substances is described. Calculations needed to determine the density of substances when using the Jolly balance are included. (KR)
Descriptors: Density (Matter), Laboratory Equipment, Laboratory Procedures, Physics
Peer reviewedRiley, James A.; Fryer, Oscar G. – Physics Teacher, 1980
Describes three accessories developed to be used in conjunction with the rotating platform or turntable. Three demonstrations using these accessories are included. These demonstrations are: (a) conservation of angular momentum; (b) gravity-defying goblets; and (c) direct measurement of centripetal force. (HM)
Descriptors: College Science, Guides, Higher Education, Laboratory Procedures
Peer reviewedPhelps, F. M., III; Jacobson, B. S. – Physics Teacher, 1980
Presents two methods for measuring the index of refraction of glass or lucite. These two methods, used in the freshman laboratory, are based on the fact that a ray of light inside a block will be refracted parallel to the surface. (HM)
Descriptors: College Science, Higher Education, Instructional Materials, Laboratory Procedures

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