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Pereyra, C. J.; Osorio, M.; Laguarda, A.; Gau, D. L. – Physics Education, 2018
In this work we present a simple and low-cost setup to illustrate the dependence of the behaviour of a standing wave in a guitar string with the initial conditions. To do so, we impose two kinds of initial conditions; in the first instance, the initial shape of the string is varied. Secondly, different nodes are imposed on the string. This…
Descriptors: Acoustics, Audio Equipment, Handheld Devices, Scientific Concepts
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Dittrich, William; Drosd, Robert; Minkin, Leonid; Shapovalov, Alexander S. – Physics Teacher, 2016
The second law of thermodynamics has various formulations. There is the "Clausius formulation," which can be stated in a very intuitive way: "No process is possible whose sole result is the transfer of heat from a cooler to a hotter body." There is also the "Kelvin-Plank principle," which states that "no cyclic…
Descriptors: Scientific Concepts, Laboratory Experiments, Thermodynamics, Heat
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Lasby, B.; O'Meara, J. M.; Williams, M. – Physics Teacher, 2014
This is a classic classroom demonstration of resonance, nodes, anti-nodes, and standing waves that has been described elsewhere. The modern age twist that we are advocating is the coupling of this classic demo with free (or relatively inexpensive) sound analysis software, thereby allowing for quantitative analysis of resonance while experimenting…
Descriptors: Acoustics, Class Activities, Science Experiments, Computer Simulation
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Igoe, D. P.; Parisi, A. V. – Physics Education, 2015
Solar current is an increasingly important aspect of modern life and will be even more so crucial in the students' future. Encouraging students to be the "toolmakers" allows students to take ownership of scientific investigations, as well as forcing them to refine their research questions and hypothesis, including the design and…
Descriptors: Physics, Student Developed Materials, Courseware, Class Activities
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Rohr, Jim; Lopez, Veronica; Rohr, Tyler – Physics Teacher, 2014
While observing the bounce heights of various kinds of sports balls dropped from different heights onto a variety of surfaces, we thought of the following question: Could measurements of drop and bounce heights of balls of different diameters, but of the same material, falling from different heights, but on the same surface, be expressed by a…
Descriptors: Reflection, Mathematical Formulas, Class Activities, Science Experiments
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Allen, Michael – Research in Education, 2015
A medium-scale quantitative study (n = 90) found that 10-11-year-old pupils dealt with theory and evidence in notably different ways, depending on how the same science practical task was delivered. Under the auspices of a 2×2 part-randomised and part-quasi experimental design, pupils were asked to complete a brief, apparently simple task involving…
Descriptors: Science Experiments, Science Instruction, Middle School Students, Foreign Countries
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Walker, Mark; Kremer, Angelika; Schluter, Kirsten – Science and Children, 2007
"The Dirty Water Challenge" is a fun activity that teaches children about their environment in an engaging and practical way. Inquiry is embedded within the practical--students have to design, plan, and then build their own design of water filter. Students are exposed to important concepts from a variety of scientific disciplines, including how…
Descriptors: Geology, Water Quality, Class Activities, Environmental Education
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Jones, Brian – Physics Teacher, 1993
Presents a laboratory exercise to reinforce the concepts of conductivity and resistance. Students measure resistance over rolled out Play-Doh of differing lengths and widths using the four-point resistance measurement method. (MDH)
Descriptors: Class Activities, Electricity, High Schools, Learning Activities
Lough, Tom – 1986
Student-designed laboratory exercises have become an important part of the physics classes at Piedmont Virginia Community College. Rather than filling in the blanks of a laboratory workbook, students are required to design and carry out weekly experiments which relate to the physics concepts being studied. Using computers, standard laboratory…
Descriptors: Class Activities, Community Colleges, Laboratory Experiments, Physics
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Rogis, Jeanne A. – Science Scope, 1991
Presents a class activity in which students use trigonometry to calculate the height attained by a water rocket. Provides a lesson plan that includes a list of materials needed, procedures to carry out the experiment, suggestions to extend the activity, and a reproducible worksheet for the students to register their calculations. (MDH)
Descriptors: Class Activities, Computation, Integrated Activities, Junior High Schools