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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
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
Médjahdi, Kader – Physics Teacher, 2019
Measuring magnetic induction is occasionally performed by our students during their academic training in physics. Among the various methods used to measure it, the Hall effect is the most common and widespread. Another way consists of employing an electronic flux-meter. It is constituted by a small flat coil (SFC) connected to the input of an…
Descriptors: Magnets, Physics, Science Instruction, Teaching Methods
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
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
Tillotson, Wilson Andrew; McCaskey, Timothy; Nasser, Luis – Physics Teacher, 2017
We have developed a laboratory exercise designed to help students translate between different field representations. It starts with students qualitatively mapping field lines for various bar magnet configurations and continues with a Hall probe experiment in which students execute a series of scaffolded tasks, culminating in the prediction and…
Descriptors: Physics, Science Instruction, Teaching Methods, Science Experiments
Volkwyn, Trevor Stanton; Airey, John; Gregorcic, Bor; Heijkenskjöld, Filip – Designs for Learning, 2019
In this paper we discuss the role of transduction in the teaching and learning of science. We video-filmed pairs of upper-secondary physics students working with a laboratory task designed to encourage transduction (Bezemer & Kress, 2008). The students were simply instructed to use a hand-held electronic measurement device (IOLab) to find the…
Descriptors: Secondary School Science, Physics, Science Laboratories, Measurement
Xiao, Yang; Xu, Guiqing; Han, Jing; Xiao, Hua; Xiong, Jianwen; Bao, Lei – Physical Review Physics Education Research, 2020
Concept inventories (CIs) are commonly used in pre-post instruction to study student conceptual change. For consistency in assessment interpretation, a CI's assessment construct is desired to maintain invariance across different test times. In this study, the longitudinal measurement invariance (LMI) analysis under the confirmatory factor analysis…
Descriptors: Science Education, Science Instruction, Teaching Methods, Mechanics (Physics)
Ganci, Salvatore – Physics Education, 2011
The laboratory measurement of the magnetic force acting on a straight wire of length "l" carrying a current of intensity "i" in a magnetic field "B" is usually made using current balances, which are offered by various physics apparatus suppliers' catalogues. These balances require an adequate magnet and commonly allow only the measurement of the…
Descriptors: Physics, Magnets, Science Instruction, Scientific Principles
Peer reviewedMalerich, Charles; Ruff, Patricia K.; Bird, Aubrey – Journal of Chemical Education, 2004
An easy-to-see method for demonstrating and measuring the magnetic force between paramagnetic substance and a rare earth magnet is presented. The readily available trapezoid-shaped neodymium magnet and a low cost, easy-to-set-up, portable apparatus are used in the experiments.
Descriptors: Chemistry, Magnets, Demonstrations (Educational), Measurement
Peer reviewedHerreman, W.; Huysentruyt, R. – Physics Teacher, 1995
Describes a fast and simple method for measuring the magnetic force acting on a current-carrying conductor using a digital balance. Discusses the influence of current intensity and wire length on the magnetic force on the conductor. (JRH)
Descriptors: Electricity, Force, Magnets, Measurement

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