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Galante, Lorenzo; Arlego, Marcelo; Fanaro, Maria; Gnesi, Ivan – Physics Education, 2019
In this paper we present a pedagogical strategy to introduce the Heisenberg uncertainty principle to high school students. The basis on which this proposal relies is the Fourier transform, connecting the quantum function in the x domain, ?(x), with the function in the wave number domain, A(k). This mathematical relationship directly leads to the…
Descriptors: Science Instruction, Secondary School Science, High School Students, Teaching Methods
Ganci, Salvatore – Physics Education, 2016
A simple setup is designed to investigate a "time-of-flight" measurement of the speed of sound in water. This experiment only requires low cost components and is also very simple to understand by students. It could be easily used as a demonstration experiment.
Descriptors: Acoustics, Motion, Water, Measurement Techniques
Zendri, G.; Valdan, M.; Gratton, L. M.; Oss, S. – Physics Education, 2015
Wind musical instruments are affected in their intonation by temperature. We show how to account for these effects in a simple experiment, and provide results in languages accessible to both physics and music professionals.
Descriptors: Science Instruction, Musical Instruments, Scientific Concepts, Physics
Tsakmaki, Paraskevi; Koumaras, Panagiotis – School Science Review, 2016
Science education research has shown that students use causal reasoning, particularly the model "agent--instrument--object," to explain or predict the outcome of many natural situations. Students' reasoning seems to be based on a small set of few intuitive rules. One of these rules quantitatively correlates the outcome of an experiment…
Descriptors: Science Experiments, Scientific Concepts, Scientific Literacy, Scientific Methodology
Perry, Spencer B.; Gee, Kent L. – Physics Teacher, 2014
Vortex cannons have been used by physics teachers for years, mostly to teach the continuity principle. In its simplest form, a vortex cannon is an empty coffee can with a hole cut in the bottom and the lid replaced. More elaborate models can be purchased through various scientific suppliers under names such as "Air Cannon" and…
Descriptors: Acoustics, Physics, Scientific Concepts, Science Equipment
Eshach, H.; Volfson, A. – Physics Education, 2015
In the present paper we suggest an original physical explanatory model that explains the mechanism of the sound amplification process in a stethoscope. We discuss the amplification of a single pulse, a continuous wave of certain frequency, and finally we address the resonant frequencies. It is our belief that this model may provide students with…
Descriptors: Acoustics, Physics, Models, Science Equipment
Mayer, V. V.; Varaksina, E. I. – Physics Education, 2014
Students form a more exact idea of the action of optical mirrors if they can observe the wave field being formed during reflection. For this purpose it is possible to organize model experiments with flexural waves propagating in thin elastic plates. The direct and round edges of the plates are used as models of plane, convex and concave mirrors.…
Descriptors: Optics, Acoustics, Models, Science Experiments
Bednarek, Stanislaw – Physics Education, 2014
This article describes the Lissajous generalized figure and the original instrument for its investigation. Two specially prepared electrodynamic loudspeakers--a horizontal and a vertical--cause oscillations in two mirrors. It is possible to precisely control the motion of the mirrors, achieve a high frequency of oscillation and investigate…
Descriptors: Investigations, Physics, Science Activities, Program Descriptions
Clarage, James B. – Science & Education, 2013
Much of the mathematical reasoning employed in the typical introductory physics course can be traced to Pythagorean roots planted over two thousand years ago. Besides obvious examples involving the Pythagorean theorem, I draw attention to standard physics problems and derivations which often unknowingly rely upon the Pythagoreans' work on…
Descriptors: Music, Mechanics (Physics), Energy Conservation, Optics
Aristov, Natasha; Habekost, Gehsa; Habekost, Achim – Journal of Chemical Education, 2011
A Kundt tube is normally used to measure the speed of sound in gases. Therefore, from known speeds of sound, a Kundt tube can be used to identify gases and their fractions in mixtures. In these experiments, the speed of sound is determined by measuring the frequency of a standing sound wave at a fixed tube length, temperature, and pressure. This…
Descriptors: Chemistry, Acoustics, Science Instruction, College Science
Lindquist, William; Forsberg, Britt – Science and Children, 2014
One author shares the unique opportunity to be immersed in the science of "sound at work" through participation in NOAA's (National Oceanic and Atmospheric Administration) Teacher at Sea Program. A third- through fifth-grade learning outcome within the Nature of Science section of the "Next Generation Science Standards"…
Descriptors: Acoustics, Instructional Innovation, Science Course Improvement Projects, Teaching Methods
Sommer, Wilfried; Meier-Boke, Ralf; Meinzer, Nicholas – Physics Teacher, 2010
The hydromonochord is a horizontal vibrating string that just makes contact with the surface of a water bath. The motion of the string sets up a pattern of swirls on the surface of the water, thus complementing the usual pattern of nodes and antinodes. The device is based on the traditional monochord. A water basin (Fig. 1) has two slits in the…
Descriptors: Science Instruction, Scientific Principles, Water, Motion
Gunckel, Kristin L. – Science and Children, 2010
In an activity sequence that took place over several days, the class learned about sound and how people hear sounds. Following each activity, students engaged in whole-group sharing sessions and individual journal-writing sessions that were designed to help them see the patterns that emerged from their explorations. The activities were carefully…
Descriptors: Scientific Principles, Science Activities, Sequential Learning, Acoustics
Gluck, Paul; Perkalskis, Benjamin – Physics Teacher, 2009
Optical elements manipulate light waves. They may be used to focus the light or to change the phase, the polarization, the direction, or the intensity of light. Many of these functions are often demonstrated with microwaves, since the devices normally available in teaching laboratories produce wavelengths in the centimeter range and are therefore…
Descriptors: Physics, Science Instruction, Science Laboratories, Acoustics
Sickel, Aaron J.; Lee, Michele H.; Pareja, Enrique M. – Science and Children, 2010
How can a teacher simultaneously teach science concepts through inquiry while helping students learn about the nature of science? After pondering this question in their own teaching, the authors developed a 5E learning cycle lesson (Bybee et al. 2006) that concurrently embeds opportunities for fourth-grade students to (a) learn a science concept,…
Descriptors: Scientific Principles, Learning Processes, Science Instruction, Scientific Concepts
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