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Septianto, R. D.; Suhendra, D.; Iskandar, F. – Physics Education, 2017
This paper reports on the result of a research into the utilisation of a smartphone for the study of magnetostatics on the basis of experiments. The use of such a device gives great measurement result and thus it can replace magnetic sensor tools that are relatively expensive. For the best experimental result, firstly the position of the magnetic…
Descriptors: Magnets, Measurement Techniques, Measurement Equipment, Handheld Devices
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Robertson, Bill – Science and Children, 2013
Electromagnetic induction is the technical name for the fact that, when a wire is moved near a magnet or a magnet is moved near a wire, an electric current flows in the wire. Although Bill Robertson honestly admits to not knowing why this happens, he does say that it is possible to get a deeper understanding of what's going on in terms of…
Descriptors: Energy, Magnets, Equipment, Scientific Concepts
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Harrison, Mark – Physics Education, 2017
Earth wires and fuses work together in UK mains circuits to keep users safe from electric shocks and are taught in many school contexts. The subject can be quite abstract and difficult for pupils to grasp, and a simple but visually clear and direct demonstration is described which would be easy for most physics departments to build and which can…
Descriptors: Demonstrations (Educational), Electronics, Energy Education, Power Technology
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Wilson, Marcus T. – Physics Teacher, 2021
Many high school and first-year university courses include discussion of the magnetic effect of currents. Frequently discussed textbook examples include long, straight wires, circular current loops, and solenoids, partly because these examples are tractable mathematically. The solenoid naturally leads to discussion on magnetic materials since it…
Descriptors: Misconceptions, Science Education, Magnets, Secondary School Science
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Shakur, Asif; Emmert, Jeffrey – Physics Teacher, 2019
The introduction of the Wireless Smart Cart by PASCO scientific in April 2016 has ushered in a paradigm shift in the design and implementation of low-cost undergraduate physics and engineering laboratory experiments. The use of smartphones in experimental physics is by now widely accepted and documented. The smart cart in combination with…
Descriptors: Science Instruction, Physics, College Science, Engineering Education
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Straulino, S.; Cartacci, A. – Physics Education, 2014
The measurement of the force acting between two parallel, current-carrying wires is known as Ampère's experiment. A mechanical balance was historically employed to measure that force. We report a simple experiment based on an electronic precision balance that is useful in clearly showing students the existence of this interaction and how to…
Descriptors: Measurement Techniques, Physics, Motion, Energy
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Mayer, V. V.; Varaksina, E. I. – Physics Education, 2017
We propose to attach a small stroboscopic light source to a moving object and connect the source to a pulse generator with the help of insulated thin flexible multi-cored wires. Students can assemble such a device independently in a school laboratory. The device can be used to obtain trajectories with time marks in students' research projects in…
Descriptors: Science Instruction, Science Experiments, Mechanics (Physics), Science Laboratories
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Kada, Vasiliki; Ravanis, Kostantinos – South African Journal of Education, 2016
This paper presents a study of how preschool-aged children go about creating and operating a simple electric circuit (wires, light bulb, and battery), and how they view the elements that comprise it, particularly how they view the role of the battery. The research involved 108 children aged between five and six, who were individually interviewed.…
Descriptors: Early Childhood Education, Science Instruction, Electronics, Equipment
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Prentice, A.; Fatuzzo, M.; Toepker, T. – Physics Teacher, 2015
By describing the motion of a charged particle in the well-known nonuniform field of a current-carrying long straight wire, a variety of teaching/learning opportunities are described: 1) Brief review of a standard problem; 2) Vector analysis; 3) Dimensionless variables; 4) Coupled differential equations; 5) Numerical solutions.
Descriptors: Magnets, Motion, Physics, Learning Activities
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Cheng, Ka Wai Eric; Chan, Chung Lun – Education Sciences, 2019
A remote-controlled experiment for power electronics was developed for a virtual laboratory. Power converter experiments were set up, allowing students to conduct a remote-controlled experiment with special hardware and electric power. Students can activate parameter controls, connect wires, and tune electric load conditions with preset electronic…
Descriptors: Electronics, Engineering Education, Virtual Classrooms, Undergraduate Students
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Grinnell, Sandie; Angal, Sharon – Science and Children, 2016
In a 2012 blog post, John Maeda discusses the idea that while science, technology, engineering, and mathematics (STEM) education plays an important role in innovation, limitations exist when we focus exclusively on STEM. Maeda advocates for the addition of the "A" for Art to the acronym, insisting that the arts promote the creativity and…
Descriptors: STEM Education, Interdisciplinary Approach, Art Education, Elementary Education
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Gerstl-Pepin, Cynthia – Peabody Journal of Education, 2015
Two popular media forms are examined--the documentary film "Waiting for 'Superman'" and the HBO television series, "The Wire"--that present distinct, and at times conflicting, depictions of how to address educational inequity. Qualitative media content analysis was used to analyze the two media documents and to situate them…
Descriptors: Documentaries, Television, Programming (Broadcast), Academic Failure
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Wammes, Dannie; Slof, Bert; Schot, Willemijn; Kester, Liesbeth – International Journal of Technology and Design Education, 2022
This study aimed to develop and validate, based on the Evidence Centered Design approach, a generic tool to diagnose primary education pupils' prior knowledge of technological systems in primary school classrooms. Two technological devices, namely the Buzz Wire device and the Stairs Marble Track, were selected to investigate whether theoretical…
Descriptors: Elementary School Students, Knowledge Level, Prior Learning, Educational Technology
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Littleton, Joshua A. H.; Secco, Richard – Physics Teacher, 2018
Magnetism is traditionally taught within the subject of electromagnetism at the undergraduate and graduate levels in physics courses, with the goal of establishing a solid foundation of the underlying physical mechanisms before advancing to more specialized topics. Oftentimes, a laboratory component of these courses involves practical, hands-on…
Descriptors: Magnets, Physics, Electronics, Hands on Science
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Ladino, L. A.; Rondón, S. H. – Physics Education, 2015
In this paper, we present a low-cost method to study the Gay-Lussac's law. We use a heating wire wrapped around the test tube to heat the air inside and make use of a solid state pressure sensor which requires a previous calibration to measure the pressure in the test tube.
Descriptors: Science Instruction, Science Experiments, Scientific Concepts, Heat
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