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Showing 1 to 15 of 38 results Save | Export
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Priyanto, Aan; Yusmantoro; Aji, Mahardika Prasetya – Physics Teacher, 2020
When we travel in a train moving at a certain velocity, we observe the stationary objects outside are moving backwards. These stationary objects seem to move due to a relative velocity. Consider that the stationary object outside the train is a man standing on the stationary floor watching a woman moving on a train. The woman on a train will see…
Descriptors: Telecommunications, Handheld Devices, Motion, Physics
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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
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Pendrill, Ann-Marie – Physics Education, 2020
Your body is not a point particle. The nature and direction of the forces counteracting gravity influence your experience of uniform rectilinear motion--as does your own orientation in relation to the force of gravity. Sensors in smartphones or other devices can capture these forces, and help establish a connection between the personal experience…
Descriptors: Physics, Science Instruction, Telecommunications, Handheld Devices
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Hochberg, Katrin; Becker, Sebastian; Louis, Malte; Klein, Pascal; Kuhn, Jochen – Journal of Science Education and Technology, 2020
Mobile devices (smartphones or tablets) as experimental tools (METs) offer inspiring possibilities for science education, but until now, there has been little research studying this approach. Previous research indicated that METs have positive effects on students' interest and curiosity. The present investigation focuses on potential cognitive…
Descriptors: Telecommunications, Handheld Devices, Teaching Methods, Science Instruction
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Anggi Datiatur Rahmat; Insih Wilujeng; Heru Kuswanto – Journal of Science Learning, 2023
Integrating traditional games into science learning can reconstruct local knowledge into scientific knowledge. One of the most popular technologies today is the mobile phone, which almost everyone uses. This study investigates the effect of mobile learning integrated with traditional games Egrang on students' multiple representation skills. This…
Descriptors: Science Education, Educational Technology, Technology Uses in Education, Telecommunications
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Larnder, Chris I. – Physics Teacher, 2021
Today's students are increasingly immersed in a landscape of screens and handheld digital devices through which a good deal of their interactions with the world around them are mediated. Physics educators, meanwhile, continue to rely on traditional human interactions with the physical world, such as sliding down a ramp or throwing a baseball, in…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Peripherals
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Balaton, Mariana; Cavadas, Jorge; Carvalho, Paulo Simeão; Lima, J. J. G. – Physics Education, 2021
Experimental teaching is essential for a good understanding of science, especially on Physics. Practical activities play an important role for engaging students with science, mainly when they interact directly with equipment, collect experimental data with computers and/or use interactive software for data analysis. In this work, we present the…
Descriptors: Science Instruction, Physics, Robotics, Programming
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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
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Çoban, A.; Erol, M. – Physics Education, 2019
This work reports a rudimentary approach to teach and measure the kinetic friction coefficient using a smartphone that can effectively be employed for teaching purposes. More specifically, the kinetic friction coefficient, which is rather difficult to teach and measure, between various surfaces was determined by two different approaches using the…
Descriptors: Kinetics, Physics, Motion, Science Instruction
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Pili, Unofre; Violanda, Renante – Physics Teacher, 2019
In introductory physics laboratories, spring constants are traditionally measured using the static method. The dynamic method, via vertical spring-mass oscillator, that uses a stopwatch in order to measure the period of oscillations is also commonly employed. However, this time-measuring technique is prone to human errors and in this paper we…
Descriptors: Telecommunications, Handheld Devices, Physics, Scientific Concepts
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Nuryantini, Ade Yeti; Sawitri, Asti; Nuryadin, Bebeh Wahid – Physics Education, 2018
This study demonstrated that the constant average speed of a dynamic car could be measured and calculated using the smartphone magnetometer. The apparatus setup was built using a dynamic car, a linear track up to 1.50 m, a bunch of magnets, and a smartphone magnetometer application. The smartphone magnetometer application, 'Physics Toolbox Suite',…
Descriptors: Physics, Science Instruction, Teaching Methods, Motion
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Pambayun, Bima; Wirjawan, Johanes V. D.; Herwinarso, Herwinarso; Wijaya, Anthony; Untung, Budijanto; Pratidhina, Elisabeth – International Journal on Social and Education Sciences, 2019
The tremendous development of information and communication technology, especially the existence of smartphone, has a huge impact on people lifestyle. Smartphone technology allows several of applications to make life easier. Most of teenagers in Indonesia have been familiar with smartphone technology which can be potentially used on educational…
Descriptors: High School Students, Teaching Methods, Physics, Science Instruction
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Bani, Marsi; Masruddin, Masruddin – Journal of Technology and Science Education, 2021
Research has been conducted to develop a physics learning media in the form of an Android-based pocket book. We designed a Harmonic Oscillation Pocket Book and tested its feasibility and effectiveness in improving the cognitive learning outcomes of students. This study used the research and development method adapted from the ADDIE model. The…
Descriptors: High School Students, Secondary School Science, Educational Technology, Technology Uses in Education
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Apriyanti, Netty; Razak, Rafiza Abdul; Shaharom, Mohd Shahril Nizam; Rahim, Suzieleez Syrene Abdul; Halili, Siti Hajar – Malaysian Online Journal of Educational Technology, 2020
This research aims to analyze the needs of infographic media for physics learning of the concept kinematics of rectilinear motions, especially for the concept of uniform rectilinear motion and accelerated uniform motion in Senior High School. This research was conducted to teachers, students, and document analysis, namely syllabus and list of…
Descriptors: Needs Assessment, Science Education, Physics, Motion
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Lincoln, James – Physics Teacher, 2018
I am writing this article to raise awareness of burst mode photography as a fun and engaging way for teachers and students to experience physics demonstration activities. In the context of digital photography, "burst mode" means taking multiple photographs per second, and this is a feature that now comes standard on most digital…
Descriptors: Physics, Demonstrations (Educational), Science Instruction, Photography
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