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Yao Wu; Chengxu Hu; Yan Hu; XiLian Cao; Jiaxin Zhang; Menglu Wang; Jun Cao; Ronghui Que – Journal of Chemical Education, 2024
Practical experiments enhance students' understanding of basic concepts and promote deep learning experiences in chemistry. The smartphone application of Lab4Chemistry was utilized to replace colorimeters with smartphone camera sensors. Low-cost and readily available materials, including anthocyanin (fresh red cabbage) and common kitchen…
Descriptors: Science Experiments, Chemistry, Science Instruction, Telecommunications
Williams, Hollis – Physics Education, 2022
Granular flows appear frequently in the natural world and in civil engineering applications. These flows can exhibit features which are surprising and counter-intuitive and are often used to test the limits of the classical continuum approximation for modelling of fluid flows. An important sub-class of the granular flows are the gravity-driven…
Descriptors: Science Instruction, Physics, Scientific Concepts, Educational Technology
Hughes, Stephen; Croxford, Tim – Physics Education, 2022
The first of the two postulates of relativity states that the laws of physics are the same in all inertial reference frames. Often it is assumed that the postulates are mainly concerned with objects moving at a significant fraction of the speed of light. However, the postulates are applicable at all speeds from a snail to a photon. To practically…
Descriptors: Physics, Science Instruction, Teaching Methods, Telecommunications
Pendrill, Ann-Marie – Physics Education, 2022
Students' understanding of forces in circular motion is often incomplete. The problems are not limited to confusions about centripetal acceleration and centrifugal forces. This paper considers possible effects of different interventions by a teacher who has discovered the many types of free-body diagrams drawn by students for circular motion in a…
Descriptors: Intervention, Teaching Methods, Physics, Science Instruction
Hughes, Stephen; Gurung, Som – Physics Education, 2021
Huygens' principle in which every point on a propagating wave acts like a point source of radiation is a foundation principle of physics. Normally, Huygens' principle is demonstrated by passing a wave, for example a water or light wave through an aperture comparable in size to the wavelength. In this paper, an experiment is described in which a…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
Niu, Zeyu Jason; Luo, Duanbin – Physics Teacher, 2022
In recent years, with the more powerful functions of smartphones, the use of sensors integrated by mobile phones as an auxiliary tool for physical experiment teaching has become more popular. Combined with the related mobile phone apps, people easily can develop and expand the physical experiment contents of mechanics, optics, acoustic phenomena,…
Descriptors: Measurement, Science Instruction, Physics, Acoustics
Kousloglou, Manolis; Molohidis, Anastasios; Nikolopoulou, Kleopatra; Hatzikraniotis, Euripides – Teaching Science, 2022
The natural sciences, by their very nature, are based on the exploration of the physical world, and digital mobile devices are considered appropriate to support this exploration (Suárez et al., 2018) since they offer the tools that make this investigation more accessible but also ubiquitous (Crompton et al., 2017). Inquiry-based learning is a…
Descriptors: Science Instruction, Inquiry, Telecommunications, Handheld Devices
Chiang, Chun-Ming; Cheng, Han-Yang – Physics Teacher, 2019
This study aims to measure Brewster's angle of glass and acrylic brick with an easy-to-obtain mobile application (app) by changing the tungsten light source to a red laser. The popularization of the smartphone has inspired many to use its various built-in sensors to carry out general physics experiments. Many others have adopted both a laser and a…
Descriptors: Physics, Science Instruction, Measurement, Telecommunications
Carroll, Ryan; Lincoln, James – Physics Teacher, 2020
The phyphox app has demonstrated itself to be useful and impressive for physics teaching. The app is free to download and has so many features that it seems it may be particularly helpful in this time of distance learning. Phyphox (pronounced to sound like "physics") works for Android and Apple phones, and there are many experiments…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Software
Coramik, Mustafa; Ürek, Handan – Physics Education, 2021
In this study, the kinetic friction coefficient for a block moving on an inclined plane was determined with the help of three different methods (a smartphone application, "Phyphox," a video analysis program, "Tracker" and a simulation program, "Algodoo") which can be performed easily using simple materials by the…
Descriptors: Science Instruction, Kinetics, Scientific Concepts, Physics
Nuryadin, Bebeh Wahid – Physics Education, 2020
This research aims to develop a falling chain experiment apparatus using kitchen scales and digital cameras (smartphones). Digital cameras were used to observe and record changes in the mass of falling chains measured using kitchen scales. Video recordings from observations of falling chain masses were analysed using Tracker 5.1.1 software. The…
Descriptors: Physics, Science Instruction, Teaching Methods, Video Technology
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
Staacks, S.; Hütz, S.; Stampfer, C.; Heinke, H. – Physics Education, 2018
The sensors in modern smartphones are a promising and cost-effective tool for experimentation in physics education, but many experiments face practical problems. Often the phone is inaccessible during the experiment and the data usually needs to be analyzed subsequently on a computer. We address both problems by introducing a new app, called…
Descriptors: Teaching Methods, Cost Effectiveness, Telecommunications, Handheld Devices
Teichrew, Albert; Erb, Roger – Physics Education, 2020
Real situations are overlaid with virtual information using augmented reality technology. In a learning environment, this technology could give everyday relevance to abstract concepts. In this paper, we will show how physical structures in typical experiments can be simply augmented by virtual objects in physics classes. This is achieved by…
Descriptors: Science Instruction, Computer Software, Educational Technology, Telecommunications
Bozzo, G. – Physics Teacher, 2020
As soon as children can see, they observe that objects fall freely. From a young age, we spontaneously construct interpretative models to understand this everyday phenomenon. Over the last three decades, numerous experiments have been developed to help students understand physics concepts regarding free fall. Although there are many…
Descriptors: Secondary School Science, Science Instruction, Physics, Teaching Methods
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