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Killian, Benjamin J.; Singletary, Steven – Journal of Chemical Education, 2022
We present a modernization of the undergraduate physical chemistry laboratory experiment for determining the speed of sound in various gases from resonant frequencies in a spherical resonator. The resonator (schematic IR = 7.5 cm) is constructed by 3D printing with eco-friendly poly(lactic acid), a commercially viable alternative to traditional…
Descriptors: Undergraduate Study, College Science, Chemistry, Physics
Mayer, V. V.; Varaksina, E. I. – Physics Education, 2020
To study the absorption of ultrasound in plexiglas we propose to use gadgets that are available to each student: an ultrasound humidifier, a liquid crystal display of a pad, a polaroid analyzer, a digital camera, a multimeter with thermocouple, and a stopwatch. These devices allow us to visualize a region in plexiglas where ultrasound is absorbed…
Descriptors: Science Instruction, Physics, Science Laboratories, Scientific Concepts
Puantha, Rattanaporn; Khammarew, Wilaiwan; Tong-on, Anusorn; Saphet, Parinya – Physics Education, 2019
The purpose of this study was to develop a modern experimental apparatus using an Arduino with LabVIEW instead of the classical experiment. The wavelength of the sound was determined using the resonance of an air column. The smartphone app was used to generate the desired frequencies. A sound intensity and ultrasonic sensor was used to read the…
Descriptors: Science Instruction, Science Experiments, Laboratory Equipment, Science Laboratories
Eagle, Forrest W.; Seaney, Kyser D.; Grubb, Michael P. – Journal of Chemical Education, 2017
Quantum mechanics is a notoriously difficult subject to learn, due to a lack of real-world analogies that might help provide an intuitive grasp of the underlying ideas. Discrete energy levels and absorption and emission wavelengths in atoms are sometimes described as uniquely quantum phenomena, but are actually general to spatially confined waves…
Descriptors: Quantum Mechanics, Music, Science Instruction, Science Experiments
Dolhun, John J. – Journal of Chemical Education, 2016
The noise level from exploding chemical demonstrations and the effect they could have on audiences, especially young children, needs attention. Auditory risk from H[subscript 2]- O2 balloon explosions have been studied, but no studies have been done on H[subscript 2]-air "eggsplosions." The peak sound pressure level (SPL) was measured…
Descriptors: Acoustics, Chemistry, Science Instruction, Risk
Giménez, Marcos H.; Salinas, Isabel; Monsoriu, Juan A.; Castro-Palacio, Juan C. – Physics Teacher, 2017
The resonance phenomenon is widely known in physics courses. Qualitatively speaking, resonance takes place in a driven oscillating system whenever the frequency approaches the natural frequency, resulting in maximal oscillatory amplitude. Very closely related to resonance is the phenomenon of mechanical beating, which occurs when the driving and…
Descriptors: Science Instruction, Scientific Concepts, Physics, Acoustics
Varberg, Thomas D.; Pearlman, Bradley W.; Wyse, Ian A.; Gleason, Samuel P.; Kellett, Dalir H. P.; Moffett, Kenneth L. – Journal of Chemical Education, 2017
In this paper, we describe an experiment for the undergraduate physical chemistry laboratory in which students determine the speed of sound in the gases He, N[subscript 2], CO[subscript 2], and CF[subscript 3]CH[subscript 2]F. The experimental apparatus consists of a closed acrylic tube containing the gas under study. White audio noise is injected…
Descriptors: Science Instruction, College Science, Undergraduate Students, Chemistry
Kodejška, C.; De Nunzio, G.; Kubinek, R.; Ríha, J. – Physics Education, 2015
Conducting experiments in physics using modern measuring techniques, and particularly those utilizing computers, is often much more attractive to students than conducting experiments conventionally. However, the cost of professional kits in the Czech Republic is still very expensive for many schools. The basic equipment for one student workplace…
Descriptors: Science Instruction, Science Experiments, Science Laboratories, Laboratory Experiments
Molek, Karen Sinclair; Reyes, Karl A.; Burnette, Brandon A.; Stepherson, Jacob R. – Journal of Chemical Education, 2015
Measuring the heat capacity ratios, [gamma], of gases either through adiabatic expansion or sound velocity is a well established physical chemistry experiment. The most accurate experiments depend on an exact determination of sound origin, which necessitates the use of lasers or a wave generator, where time zero is based on an electrical trigger.…
Descriptors: Heat, Science Instruction, Science Experiments, Acoustics
Nunn, John – Physics Education, 2015
The speed of sound in a solid is determined by the density and elasticity of the material. Young's modulus can therefore be calculated once the density and the speed of sound in the solid are measured. The density can be measured relatively easily, and the speed of sound through a rod can be measured very inexpensively by setting up a longitudinal…
Descriptors: Measurement Techniques, Acoustics, Computer Software, Technology Uses in Education
Amorim, Maria Eva; Sousa, Teresa Delmira; Carvalho, P. Simeao; Sousa, Adriano Sampaioe – Physics Teacher, 2011
Sound tubes, pipes, and singing rods are used as musical instruments and as toys to perform amusing experiments. In particular, corrugated tubes present unique characteristics with respect to the sounds they can produce; that is why they have been studied so intensively, both at theoretical and experimental levels. Experimental studies usually…
Descriptors: Physics, Scientific Concepts, Acoustics, Science Activities
Halpern, Arthur M.; Liu, Allen – Journal of Chemical Education, 2008
Using an easy-to-make cylindrical resonator, students can measure the speed of sound in a gas, u, with sufficiently high precision (by locating standing-wave Lissajous patterns on an oscilloscope) to observe real gas properties at one atmosphere and 300 K. For CO[subscript 2] and SF[subscript 6], u is found to be 268.83 and 135.25 m s[superscript…
Descriptors: Molecular Structure, Measurement Techniques, Science Experiments, Laboratory Experiments
Hamilton, M. W. – European Journal of Physics, 2007
A nonlinear aspect of the acousto-optic interaction that is analogous to multi-photon absorption is discussed. An experiment is described in which the second-order acousto-optically scattered intensity is measured and found to scale with the square of the acoustic intensity. This experiment using a commercially available acousto-optic modulator is…
Descriptors: Optics, Laboratory Experiments, Science Education, Science Instruction
Kraftmakher, Yaakov – Physics Education, 2002
An experiment is proposed for learning the principles of radio. A simple radio receiver illustrates amplitude modulation and demodulation, the selectivity of a receiver and the features of a directional antenna. Both normal and computerized versions of the experiment are described. The computerized experiment employs the "ScienceWorkshop"…
Descriptors: Laboratory Experiments, Radio, Acoustics, Physics

Anderson, J. Gerard – American Journal of Physics, 1980
When examining complex waveforms by examining oscillograms from simple resonant circuits, interpretation problems occur. These problematic oscillograms are explainable by recognizing that the typical resonant filters pass significant amounts of several harmonics adjacent to the one intended. Adjacent harmonics effects are computed; resulting…
Descriptors: Acoustics, College Science, Electric Circuits, Higher Education
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