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Oss, Stefano – Physics Education, 2022
We propose an experiment in which the sound of a drumroll is recorded and analysed according to a simple mechanical model in which the inelastic restitution coefficient of the collision between the stick and drum surface, as well as the ongoing kinematics of the drumstick, are considered. The agreement shows that this model is well suited for…
Descriptors: Science Experiments, Musical Instruments, Acoustics, Scientific Concepts
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Matsutani, Akihiro – Physics Education, 2018
The fundamental air cavity mode (A0) of a violin was investigated from the viewpoint of its dependence on the opening area and shape by using holed sheets of paper. The dependences of the frequency response of the A0 cavity mode on the shape, opening area, and orientation of the openings were observed. It was also demonstrated that the change of…
Descriptors: Musical Instruments, Science Instruction, Physics, Scientific Concepts
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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
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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
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Black, Andy Nicholas; Magruder, Robert H. – Physics Teacher, 2017
Learning and understanding physics requires more than studying physics texts. It requires doing physics. Doing research is a key opportunity for students to connect physical principles with their everyday experience. A powerful way to introduce students to research and technique is through subjects in which they might find interest. Presented is…
Descriptors: Physics, Introductory Courses, Acoustics, Scientific Research
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Stafford, Olga – Physics Teacher, 2012
A simple pipe whistle can be made using pieces of PVC pipe. The whistle can be used to measure the resonant frequencies of open or closed pipes. A slightly modified version of the device can be used to also investigate the interesting dependence of the sound frequencies produced on the orifice-to-edge distance. The pipe whistle described here…
Descriptors: Physics, Acoustics, Musical Instruments, Science Instruction
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Sheets, H. David – Physics Teacher, 1993
Describes the use of chromatic musical instrument tuners to make frequency measurements of sound waves and as an exercise in the conversion of pitch to frequency. (ZWH)
Descriptors: Acoustics, High Schools, Musical Instruments, Physics
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LoPresto, Michael C. – Physics Teacher, 2006
What follows is a description of a simple experiment developed in a non-mathematical general education science course on sound and light for fine arts students in which a guitar is used with data collection hardware and software to verify the properties of standing waves on a string.
Descriptors: Science Instruction, Science Experiments, Musical Instruments, Physics
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Lucas, Linda M. – Science and Children, 1991
Presents hands-on science activities that help students learn the concepts of hearing and sound while allowing students to practice science process skills. Students investigate the use of alternative phonograph speakers and needles and apply the knowledge learned to the construction of one-string banjos. (MDH)
Descriptors: Acoustics, Elementary Education, Hearing (Physiology), Musical Instruments