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Bates, Alan – Physics Teacher, 2017
The measurement of the speed of sound in air with the resonance tube is a popular experiment that often yields accurate results. One approach is to hold a vibrating tuning fork over an air column that is partially immersed in water. The column is raised and lowered in the water until the generated standing wave produces resonance: this occurs at…
Descriptors: Science Instruction, Physics, Hands on Science, Scientific Concepts
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Nelson, Jim; Nelson, Jane – Physics Teacher, 2017
There are several variations of resonance laboratory activities used to determine the speed of sound. This is "not" one of them. This activity uses the resonance tube idea to teach "resonance," not to verify the speed of sound. Prior to this activity, the speed of sound has already been measured using computer sound-sensors and…
Descriptors: Science Instruction, Teaching Methods, Physics, Acoustics
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Safadi, Rafi' – Physics Teacher, 2017
Self-diagnosis (SD) activities require students to self-diagnose their solutions to problems that they solved on their own. This involves identifying where they went wrong and then explaining the nature of their errors--why they went wrong--aided by some form of support. Worked examples (WEs) are often used to support students in SD activities. A…
Descriptors: Science Instruction, Physics, Demonstrations (Educational), Learning Strategies
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Frost-Schenk, J. W.; Diget, C. Aa.; Bentley, M. A.; Tuff, A. – Physics Education, 2018
An interactive activity to teach the hot Carbon, Nitrogen and Oxygen (HCNO) cycle is proposed. Justification for why the HCNO cycle is important is included via an example of x-ray bursts. The activity allows teaching and demonstration of half-life, nuclear isotopes, nuclear reactions, protons and a-particles, and catalytic processes. Whilst the…
Descriptors: Science Instruction, Teaching Methods, Interaction, Science Activities
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Ponnambalam, Michael – Physics Teacher, 2018
The laws of physics are often seen as objective truth, pure and simple. Hence, they tend to appear cerebral and cold. However, their presentation is necessarily subjective and may vary from being boring to being exciting. A detailed analysis of physics education reform efforts over the last three decades finds that interactive instruction results…
Descriptors: Emotional Response, Physics, Science Instruction, Educational Change
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Jacobs, Greg C. – Physics Teacher, 2018
The Tasks Inspired by Physics Education Research (TIPERS) workbooks pose questions in styles quite different from the end-of-chapter problems that those of us of a certain age were assigned back in the days before Netscape. My own spin on TIPERS is not just to do them on paper, but to have students set up the situations in the laboratory to…
Descriptors: Physics, Science Education, Workbooks, Science Activities
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Dilek, Ufuk; Erol, Mustafa – Physics Education, 2018
Developed by using ARKit, a novel app which can be used to detect position in physics experiments was introduced. The ARKit relies on a new technique. The result of the experiment presented in this study was satisfactory, suggesting that the new technique can be employed in position detection experiments/demonstrations that are conducted using…
Descriptors: Physics, Science Experiments, Courseware, Instructional Materials
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Balta, Nuri; Korganci, Nuri – Physics Education, 2018
Water exhibits a maximum in density at normal pressure at around 4° degree temperature. This paper demonstrates that during cooling, at around 4 °C, the temperature remains constant for a while because of heat exchange associated with convective currents inside the water. Superficial approach implies it as a new anomaly of water, but actually it…
Descriptors: Heat, Water, Science Instruction, Scientific Concepts
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Paulson, Pryce; Curtis, Jarret; Bartel, Evan; Cyr, Waycen Owens; Lamsal, Chiranjivi – Physics Education, 2018
In this study, the nuts and bolts of designing and building a high powered rocket have been presented. A computer simulation program called RockSim was used to design the rocket. Simulation results are consistent with time variations of altitude, velocity, and acceleration obtained in the actual flight. The actual drag coefficient was determined…
Descriptors: Physics, Science Instruction, Space Sciences, Computer Simulation
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Simpson, Zach; Prince, Robert – Designs for Learning, 2018
Quantitative literacy is the ability to solve problems using mathematical and statistical information that is represented in various forms, including visual, written and mathematical forms. It is central to many of the disciplines within higher education. In this paper, we examine a particular quantitative literacy event within an undergraduate…
Descriptors: Numeracy, College Science, Mechanics (Physics), Undergraduate Students
Krumins Grazzini, Baiba – NAMTA Journal, 2018
"To Educate the Human Potential" by Maria Montessori, first released in 1948, conveyed the Montessori theme of human solidarity as a unifying force for human history and integrated the sciences of geography, chemistry, biology, and physics. The concluding chapter of this journal places the reader in touch with the great questions of life…
Descriptors: Montessori Method, History, Geography, Chemistry
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Caballero, Marcos; Merner, Laura – Physical Review Physics Education Research, 2018
A national survey of physics faculty was conducted to investigate the prevalence and nature of computational instruction in physics courses across the United States. 1246 faculty from 357 unique institutions responded to the survey. The results suggest that more faculty have some form of computational teaching experience than a decade ago, but it…
Descriptors: Undergraduate Students, Physics, Computation, Science Instruction
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Melo, Énery; Bächtold, Manuel – Science & Education, 2018
This article presents and discusses an innovative pedagogical device designed for training pre-service teachers on the nature of science. We endorse an approach according to which aspects of the nature of science should be explicitly discussed in order to be understood by learners. We identified quantum physics, and more precisely the principles…
Descriptors: Scientific Principles, Scientific Concepts, Preservice Teachers, Preservice Teacher Education
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Cross, Rod – Physics Education, 2018
When measuring the speed of an object with a video camera, a correction may be needed for the time taken by the camera to acquire the image in each frame. Examples are given where the correction is quite significant.
Descriptors: Video Technology, Physics, Science Instruction, Telecommunications
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Martins, J. E. M. Perea – Physics Education, 2018
This work presents experiments to teach fundamentals of automation through a sequence of laboratory practices that naturally guide to development of an on/off control system. It focuses on the integration of technological and scientific concepts, based on an educational approach associated with a problem-solving technique.
Descriptors: Physics, Science Instruction, Science Laboratories, Problem Solving
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