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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
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Jaafar, Rosly; Nazihah Mat Daud, Anis; Ali, Shaharudin; Kadri Ayop, Shahrul – Physics Education, 2017
In this study we constructed a special three-in-one resonance tube for a harmonic series sound waves experiment. It is designed for three different experiments: both-open-end, one-closed-end and both-closed-end tubes. The resonance tube consists of a PVC conduit with a rectangular hole, rubber tube, plastic stopper with an embedded microphone and…
Descriptors: Physics, Science Instruction, Acoustics, Science Experiments
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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
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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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Campbell, Dean J.; Peterson, Joshua P.; Fitzjarrald, Tamara J. – Journal of Chemical Education, 2013
These laboratory experiments are designed to familiarize students with concepts of spectroscopy by using sound waves. Topics covered in these experiments include the structure of nitinol alloys and polymer chain stiffness as a function of structure and temperature. Generally, substances that are stiffer or have higher symmetry at the molecular…
Descriptors: Spectroscopy, Acoustics, Familiarity, Laboratory Experiments
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Tho, Siew Wei; Yeung, Yau Yuen – Teaching Science, 2014
A Smartphone is not only a mobile device that is used for communication but is also integrated with a personal digital assistant (PDA) and other technological capabilities such as built-in acceleration, magnetic and light sensors, microphone, camera and Global Positioning System (GPS) unit. This handheld device has become very popular with the…
Descriptors: Instructional Innovation, Technology Uses in Education, Handheld Devices, Investigations
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Kaneko, Fumitoshi; Monjushiro, Hideaki; Nishiyama, Masayoshi; Kasai, Toshio; Harris, Harold H. – Journal of Chemical Education, 2010
An experimental system for detecting infrared absorption using the photoacoustic (PA) effect is described. It is aimed for use at high-school level to illustrate the difference in infrared (IR) absorption among the gases contained in the atmosphere in connection with the greenhouse effect. The experimental system can be built with readily…
Descriptors: Climate, Secondary School Science, Science Instruction, Chemistry
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Beke, Tamás – Acta Didactica Napocensia, 2009
Teaching Science can only be successful if we are able to answer the challenges of the 21st century. Teaching Physics, Chemistry and Biology with the traditional methods is unintelligible and considered unnecessary for most students. This situation needs to be changed. Students can only develop their abilities and skills to the full extent and can…
Descriptors: Science Instruction, Student Projects, Thermodynamics, Acoustics
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Wise, Kevin; Haake, Monica – Science and Children, 2007
In this article, the authors describe steps on how to develop a high-impact activity in which students build, test, and improve their own "coffee can" speakers to observe firsthand how loudspeakers work to convert electrical energy to sound. The activity is appropriate for students in grades three to six and lends itself best to students…
Descriptors: Investigations, Science Teachers, Energy, Student Centered Curriculum
Menelly, Daniel – Teaching Pre K-8, 1997
Describes four hands-on and inexpensive activities science teachers can employ to demonstrate, encourage, develop, and teach students the physical properties of light, heat, and sound waves, utilizing a coffee can. Details the basic experiments and provides additional information for tailoring the activities to elementary through middle…
Descriptors: Acoustics, Diffusion (Physics), Discovery Processes, Elementary Education