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Pathak, Praveen; Patel, Yogita – Physics Teacher, 2022
A smartphone magnetometer is used to record the magnetic field of a freely falling point dipole magnet. The recorded magnetic field vs. time data are analyzed in accordance with the spatial dependence of the magnetic field to calculate the acceleration due to gravity g. The experiment gives local g to be 9.79 ± 1.9% m/s[superscript 2].
Descriptors: Science Instruction, Magnets, Physics, Science Experiments
Rojas, Roberto – Physics Teacher, 2022
In one of the Faraday's experiments an electric current is induced in a conducting loop when a magnet in front of it moves towards or away from the loop. While the direction of circulation of the electric current in the loop has only two options, it depends on three experimental conditions that generate eight cases. Even though the Faraday law or…
Descriptors: Energy, Magnets, Science Experiments, Scientific Principles
Härtel, Hermann – European Journal of Physics Education, 2020
In the light of own measurements on a Faraday generator, the well-known theories concerning Unipolar Induction and the Faraday paradox seem to be problematic. On the other hand, all results obtained, and all other processes described as a paradox in connection with the Faraday generator can be explained without contradiction based on the theory of…
Descriptors: Magnets, Physics, Theories, Scientific Concepts
Minkin, Leonid; Sikes, Daniel – Physics Teacher, 2022
The magnetic field of Earth, B[subscript e], is an intriguing topic in the introductory physics curriculum that engages students' curiosity and inspires numerous speculations about the nature of this phenomenon. There are several methods for measuring Earth's magnetic field. Probably, the most widespread and visual method of measuring the field in…
Descriptors: Physics, Science Instruction, Measurement Techniques, Magnets
D'Anna, Michele; Corridoni, Tommaso – Physics Teacher, 2020
In a traditional teaching approach, a physics course begins with mechanics, and generally the braking effect due to magnetic interactions is not mentioned among the various types of friction presented (static, sliding, rolling) because students will discover magnetism only in later chapters. In our didactic experience this traditional choice is…
Descriptors: Physics, Teaching Methods, Science Instruction, Mechanics (Physics)
Kamphorst, Floor; Vollebregt, M. J.; Savelsbergh, E. R.; van Joolingen, W. R. – Science & Education, 2023
Einstein's derivation of special relativity theory (SRT), based on hypothetical reasoning and thought experiments, is regarded as a prime example of physics theory development. In secondary education, the introduction of SRT could provide a great opportunity for students to engage in physics theorizing, but this opportunity is largely being missed…
Descriptors: Physics, Scientific Concepts, Secondary School Science, Science Education
Wannous, Jarier; Horvath, Peter – Physics Teacher, 2023
Measuring permeability in a high school physics course has long been a hard task. However, with the advent of using smartphones in the classroom, it is not only possible but even easily done. This paper offers detailed instructions on how to measure permeability using a smartphone's magnetometer, starting with experimentally discovering the…
Descriptors: Magnets, Telecommunications, Handheld Devices, Physics
Taylor, Richard – Physics Teacher, 2021
Science and engineering students in the second semester of a calculus-based physics sequence typically study and measure the on-axis magnetic field for a multiple, circular turn coil. There are four benefits to this approach: 1) an analytical solution is easily obtained, 2) the coil is easily constructed using tightly wound, high-gauge wire where…
Descriptors: Science Instruction, Engineering Education, Physics, Magnets
Gulich, Damián – Physics Teacher, 2022
Physics II is an undergraduate course on basic electromagnetism that I teach for engineers, and it includes topics from optics as a natural application. Among the many challenges of conducting video lectures during the local restrictions of the SARS-CoV-2 epidemic was finding demonstration material. In this article, I describe how these…
Descriptors: Physics, Science Instruction, College Science, Undergraduate Study
Zvorykin, Ilya Yu; Katkova, Mariia R.; Maslennikova, Yulia V. – Physics Education, 2022
In this article, we propose a simple and accessible model of a magnetic levitator fitted with a Hall sensor. This model also allows to determine the magnitude of the magnetic field within the levitator working volume. Students can also compare the experimental magnetic field values to reference values in magnetism textbooks. This Arduino-based…
Descriptors: Magnets, Science Instruction, Science Experiments, Laboratory Equipment
Maheswaranathan, Ponn – Physics Teacher, 2020
A simple experiment is described to verify the current dependence of Ampère's law for a long straight current-carrying conductor. A narrow and long rectangular multi-loop design is used to increase the strength of the magnetic field in between the long sides. As expected, the magnetic field is found to be linearly proportional to the electric…
Descriptors: Science Instruction, Physics, Science Experiments, Magnets
Prytz, Kjell – Physics Education, 2020
An alternative way of introducing magnetism at all levels of education is proposed. It is stressed that magnetism can be introduced through the interaction between current-carrying conductors giving the students, at the same time, the possibility to measure the magnetic permeability [mu][subscript o]. Focusing on currents instead of permanent…
Descriptors: Physics, Science Instruction, Teaching Methods, Magnets
Boublil, Shachar; Blair, David; Treagust, David F. – Teaching Science, 2023
The demand for improving student interest in science has increased efforts toward teaching Einstein's theory of general relativity in schools. Research has already shown that teaching Einsteinian gravity at the secondary level is feasible, however, appropriate resources must be readily available for science teachers to make Einsteinian gravity…
Descriptors: Science Experiments, Scientific Concepts, Physics, Middle School Students
Saranin, Vladimir; Keldyshev, Denis; Ivanov, Yuriy – Physics Education, 2019
The article presents the results of an experimental study on the motion of a neodymium magnet on an inclined duralumin plate. During experiments, the time of motion was measured, and the steady-state velocity of the magnet motion was determined. To measure the time, a robotic set was used, which made it possible to measure the time of the motion…
Descriptors: Motion, Magnets, Robotics, Time
Karadag, Mustafa; Yavas, Pervin Ünlü – Physics Education, 2021
In this work, we made a simple electronic tool called a 'magnetic polarity detector' which can determine the magnetic poles of permanent magnets or electromagnets. We used it in some student experiments in the physics laboratory. For example, determining the magnetic poles of permanent magnets and a current-carrying coils or electromagnets.…
Descriptors: Physics, Science Instruction, Magnets, Energy