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John Rafafy Batlolona; Jamaludin Jamaludin – Journal of Education and Learning (EduLearn), 2024
"Marinyo" is a culture left by the Portuguese around the 15th century in Maluku. The purpose of this study was to find out to what extent students' misconceptions about the concept of sound in the "Marinyo" case in the Kepuluan Tanimbar Regency. The method used was a qualitative study in ethnography in ten villages in two…
Descriptors: Misconceptions, Acoustics, Elementary School Students, Physics
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Caitlin Beebe; W. Douglas Robinson – American Biology Teacher, 2024
The sounds of birds form the outdoor playlist of our lives. Birds appeal to the public, in part because of the wide variety of interesting sounds they make. This popularity has led to a long history of amateur participation in ornithology, which has recently produced rapid increases in freely available online databases with hundreds of thousands…
Descriptors: Animals, Ornithology, Science Instruction, Auditory Perception
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Lee, Ilbong; Hwang, Ilha; Mukhopadhyay, Rahul Dev; Kim, Kimoon – Journal of Chemical Education, 2022
The formation of chemical patterns is in general difficult to control due to the random diffusive motions of the reacting chemical species in solution. In this paper, we present a new method using audible sound to control the formation of chemical patterns obtained in blue bottle experiments. The waves generated on the surface of the solution by…
Descriptors: Chemistry, Acoustics, Science Experiments, Science Instruction
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Voronkin, Oleksii – Physics Teacher, 2022
The integration of physics, music, and mathematics has long been used to increase students' interest and motivation in these subjects. For example, previous articles in this journal have shown how to teach physical concepts in a musical context, use a smartphone to check the resonant frequencies of whistles, use a smartphone to examine the spectra…
Descriptors: Spectroscopy, Music, Musical Instruments, Physics
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Tarigan, Hendra Jaya – Physics Teacher, 2022
We describe here a low-cost experiment for introductory physics students where they compare the physical properties of aluminum and steel by means of cantilever oscillations. This, in turn, allows the students to improve their physical intuition about these materials. Further, the students can apply their physics and mathematics knowledge and…
Descriptors: Acoustics, Physics, Science Instruction, Teaching Methods
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Vieira, Leonardo Pereira; Aguiar, Carlos Eduardo – Physics Education, 2022
The udu is a traditional Nigerian percussion instrument that can be thought of as a Helmholtz resonator with two apertures. We use a simple two-particle mechanical analogue to study the behaviour of such a resonator and find that the model describes quite well the main features of udu acoustics.
Descriptors: Physics, Acoustics, Musical Instruments, Models
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De Luca, R.; Di Mauro, M.; Naddeo, A. – Physics Teacher, 2020
Observing the bouncing of a marble on a table is a rather common experience. The tic-tac sound of the rigid ball, nevertheless, carries quite a pleasant surprise. In fact, by measuring the total time of bouncing [delta]t, the coefficient of restitution can be estimated. As is well known, in an inelastic collision the kinetic energy is not…
Descriptors: Physics, Science Instruction, Acoustics, Energy
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Ludwig-Petsch, Kim; Hirth, Michael; Kuhn, Jochen – Physics Teacher, 2022
The typical sound of George Lucas' laser blaster in the "Star Wars" series is well known. What does a laser blaster in "Star Wars" sound like, and why? Here we show a simple way to produce this sound by using low-cost lab material, like a spring or a Slinky. Building on the work of Crawford, who analyzed the sound of a Slinky…
Descriptors: Science Instruction, Physics, Lasers, Acoustics
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Pašic, Selim; Popara, Nato – Physics Education, 2022
We present a novel method for demonstrating the physical principles of ultrasound imaging at a level suitable for educational programmes up to the university level, using a simple mechanical model that is very inexpensive and accessible to a broad variety of educational institutions. The method revolves around the use of one or two steel springs…
Descriptors: Physics, Science Instruction, Diagnostic Tests, Universities
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Orzolek, Douglas C.; Blilie, Shelley A. – Physics Teacher, 2022
Like many other universities, Musical Acoustics is offered at our school as a lab-based course fulfilling general science requirements for non-majors. The course has been team-taught by a physics professor and music professor since its earliest inception and, by far, the most popular unit explores room acoustics through a variety of activities and…
Descriptors: Physics, Music, Acoustics, Science Laboratories
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Schaschke, Carl – School Science Review, 2021
Creating pleasant musical sounds by vibrating the strings of musical instruments such as guitars and violins is the result of the type of instrument played as well as the mastery of the player. This article explains the physics of vibrating strings caused either by a bow drawn over them or by being plucked, and provides a simple analysis to…
Descriptors: Musical Instruments, Physics, Scientific Concepts, Music
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Soares, A. A.; Cantão, R. F.; Pinheiro, J. B., Jr.; Castro, F. G. – Physics Education, 2022
We present an experiment designed to study standing waves in a tube with one closed end. Two smartphones are used, one to emit a sound signal with a chosen frequency and another equipped with a microphone to detect the sound pressure level inside the tube. Due to the finite diameter of the tube, the standing wave node (or antinode) appears…
Descriptors: Science Instruction, Science Experiments, Telecommunications, Handheld Devices
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Fang, Qing-ting; Li, Ze-you; Yu, Qi-pan; Zou, Cao-yi; Li, Si-qing; Luo, Duan-bin – Physics Education, 2021
By building a schlieren optical system, the visualization of a 40 KHz sound wave is realized. By using the schlieren system, the demonstration of acoustic reflection, interference and diffraction can be easily realized. At the same time, the visual acoustic field provides another simple way for the measurement of sound velocity. In this paper, the…
Descriptors: Optics, Physics, Science Instruction, Undergraduate Students
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Matsutani, Akihiro – Physics Education, 2021
In the violin, the fundamental air cavity mode (the A0 mode) is associated with the sound radiated by the f-holes. The dependences of the sound velocity of the A0 frequency on gaseous temperature and mass were investigated. It was found that the frequency of the A0 mode changed, depending on the molecular weight and the temperature of the gas…
Descriptors: Physics, Musical Instruments, Acoustics, Science Instruction
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Silva, Maria João – Research in Science & Technological Education, 2023
Background: To contribute to smart, inclusive, sustainable, and multisensory practices in science education, this paper presents research that studied the use of electronic sensors by children to address a sound pollution problem in their school. A didactic sequence was specifically designed and implemented to that purpose. Participants: The…
Descriptors: Grade 4, Elementary School Students, Acoustics, Pollution
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