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Maidana, Nora L.; da Fonseca, Monaliza; Barros, Suelen F.; Vanin, Vito R. – Physics Education, 2016
The Virtual Laboratory was created as a complementary educational activity, with the aim of working abstract concepts from an experimental point of view. In this work, the motion of a ring rolling and slipping in front of a grid printed panel was recorded. The frames separated from this video received a time code, and the resulting set of images…
Descriptors: Physics, Virtual Classrooms, Scientific Concepts, Science Experiments
Hirth, Michael; Gröber, Sebastian; Kuhn, Jochen; Müller, Andreas – Physics Teacher, 2016
A variety of experiments with smartphones and tablet PCs allow a precise analysis of acoustic phenomena. For example, we recently described an experiment in which a noise signal simultaneously triggered harmonic acoustic resonances in the air column of a tube open at both ends and a tube closed at one end. The measured resonant frequencies were…
Descriptors: Science Instruction, Science Experiments, Acoustics, Scientific Concepts
Petit, Matthieu; Michez, Lisa; Raimundo, Jean-Manuel; Dumas, Philippe – Physics Education, 2016
Semiconductor materials are at the core of electronics. Most electronic devices are made of semiconductors. The operation of these components is well described by quantum physics which is often a difficult concept for students to understand. One of the intrinsic parameters of semiconductors is their bandgap energy E[subscript g]. In the case of…
Descriptors: Science Instruction, Physics, Mechanics (Physics), Quantum Mechanics
Blumenthal, Jack; Beljak, Lauren; Macatangay, Dahlia-Marie; Helmuth-Malone, Lilly; McWilliams, Catharina; Raptis, Sofia – Physics Teacher, 2016
In a recent paper in "The Physics Teacher (TPT)", DiLisi and Rarick used the National Football League "Deflategate" controversy to introduce to physics students the physics of a bouncing ball. In this paper, we measure and analyze the environmental effects of time, ambient temperature, and moisture on the internal pressure of…
Descriptors: Climate, Time, Physics, Environmental Influences
Hadiati, Soka; Kuswanto, Heru; Rosana, Dadan; Pramuda, Adi – International Journal of Instruction, 2019
This study aims to examine students' reasoning based on the model in each laboratory work style and find the effect on scientific attitude and student activity. This study uses a quantitative approach with the experimental method. The study was conducted in three classes with different lab work styles. Arduino and sensors were used as a…
Descriptors: Logical Thinking, Scientific Attitudes, Laboratory Procedures, Open Source Technology
Yahya, Razak Abd Samad; Daud, Anis Nazihah Mat; Jaafar, Rosly – Malaysian Online Journal of Educational Technology, 2019
The purpose of this study is to develop and evaluate Multi-frames Video Recorded Experiments (MFVREs) as self-learning materials for Electricity topic of the Malaysian Form Five Physics curriculum. The development of MFVREs consisted of eight steps; selecting topic, selecting related experiments, preparing apparatus and materials for experiments,…
Descriptors: Video Technology, Science Experiments, Independent Study, Energy
Nguyen, Van Bien; Vylaychit, Xayparseut; Nguyen, Anh Thuan – Online Submission, 2019
How to help teachers to design teaching plan for raising student's competency at secondary school in Laos is now of great concern. On the other hand, teachers teach sciences almost by lecturing theoretical only. They rarely explain the problems based on actual phenomena that occur in pupils' daily life nor do experiment during the class. Thus, one…
Descriptors: Secondary School Students, Early Adolescents, Science Experiments, Foreign Countries
White, Colin – Physics Education, 2017
This paper describes three methods of measuring the coefficient of restitution (CoR) for two different types of ball-on-ball collision. The first collision type (for which two different CoR measurement procedures are described) is a static, hanging steel ball forming part of a Newton's cradle arrangement, which is then hit by its adjacent…
Descriptors: Comparative Analysis, Measurement Techniques, Motion, Kinetics
Dilek, Ufuk; Sengören, Serap Kaya – Physics Education, 2017
The position of a ball was measured by using the touchscreen of a mobile phone during its rolling motion. The translational speed of the ball was determined using the recorded position and time data. The speed was also calculated by a conventional method. The speed values determined by the two methods were consistent, thus it was proven that a…
Descriptors: Science Instruction, Physics, Motion, Teaching Methods
Troy, Tia; Reiner, Megan; Haugen, Andrew J.; Moore, Nathan T. – Physics Education, 2017
The work describes an analogy-based small oscillations analysis of a standard static equilibrium lab problem. In addition to force analysis, a potential energy function for the system is developed, and by drawing out mathematical similarities to the simple harmonic oscillator, we are able to describe (and experimentally verify) the period of small…
Descriptors: Conservation (Concept), Energy, Motion, Physics
Parent, Kelley – Physics Teacher, 2017
Introducing new physics phenomena through inquiry labs has been a staple of the successful physics teacher for years. Introducing new vocabulary through lab work, however, is less common. This paper offers an example of a simple and short lab that does just that, and one that I have found to be quite useful in my college prep physics courses to…
Descriptors: Science Instruction, Inquiry, Teaching Methods, Physics
Arnone, Stefano; Moauro, Francesco; Siccardi, Matteo – Physics Education, 2017
The year 2014 marked the four-hundred-and-fiftieth anniversary of Galileo's birth, making it the perfect occasion to present and illustrate a GeoGebra applet which reproduces some of Galileo's celebrated experiments on the uniformly accelerated motion, as reported on in "Discourses and Mathematical Demonstrations Relating to Two New…
Descriptors: Science Instruction, Physics, Science Experiments, Motion
Adhitama, Egy; Fauzi, Ahmad – Physics Education, 2018
In this study, a pendulum experimental tool with a light-based timer has been developed to measure the period of a simple pendulum. The obtained data was automatically recorded in an Excel spreadsheet. The intensity of monochromatic light, sensed by a 3DU5C phototransistor, dynamically changes as the pendulum swings. The changed intensity varies…
Descriptors: Spreadsheets, Educational Technology, Technology Uses in Education, Science Instruction
Berggren, Calvin; Gandhi, Punit; Livezey, Jesse A.; Olf, Ryan – Physics Teacher, 2018
We describe a set of conceptual and hands-on activities based around understanding the dynamics of a Slinky that is hung vertically and released from rest. This Slinky drop experiment typically lasts a fraction of a second, but when observed in slow motion, one sees the Slinky compress from the top down while the bottom portion remains at…
Descriptors: Science Instruction, Hands on Science, Science Activities, Scientific Concepts
Schwinefus, Jeffrey J.; Checkal, Caleb; Saksa, Brian; Baka, Nadia; Modi, Kalpit; Rivera, Carlos – Journal of Chemical Education, 2015
In this laboratory experiment, students determine the number-average molar masses and second virial coefficients of polyethylene glycol (PEG) polymers ranging in molar mass from 200 to 1500 g mol[superscript -1] using vapor pressure osmometry (VPO). Students assess VPO in relation to accurate molar mass calculations of PEG polymers. Additionally,…
Descriptors: Laboratory Experiments, Science Experiments, Science Instruction, Chemistry

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