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Showing 1 to 15 of 668 results
Zuza, Kristina; Almudí, José-Manuel; Leniz, Ane; Guisasola, Jenaro – Physical Review Special Topics - Physics Education Research, 2014
In traditional teaching, the fundamental concepts of electromagnetic induction are usually quickly analyzed, spending most of the time solving problems in a more or less rote manner. However, physics education research has shown that the fundamental concepts of the electromagnetic induction theory are barely understood by students. This article…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Problem Solving
Yeh, Shih-Ching; Wang, Jin-Liang; Wang, Chin-Yeh; Lin, Po-Han; Chen, Gwo-Dong; Rizzo, Albert – British Journal of Educational Technology, 2014
Mental rotation is an important spatial processing ability and an important element in intelligence tests. However, the majority of past attempts at training mental rotation have used paper-and-pencil tests or digital images. This study proposes an innovative mental rotation training approach using magnetic motion controllers to allow learners to…
Descriptors: Cognitive Processes, Spatial Ability, Training Methods, Magnets
Doran, Patrick; Hawk, William; Siegel, P. B. – Physics Teacher, 2014
Maxwell's discovery of the relation between electricity, magnetism, and light was one of the most important ones in physics. With his added displacement current term, Maxwell showed that the equations of electricity and magnetism produced a radiation solution, electromagnetic (EM) radiation, that traveled with a speed of c=1/v(e0µ0). The…
Descriptors: Science Instruction, Physics, Energy, Magnets
Nunn, John – Physics Education, 2014
A simple inductive gravimeter constructed from a rigid plastic pipe and insulated copper wire is described. When a magnet is dropped through the vertically mounted pipe it induces small alternating voltages. These small signals are fed to the microphone input of a typical computer and sampled at a typical rate of 44.1 kHz using a custom computer…
Descriptors: Science Instruction, Physics, Laboratory Equipment, Magnets
Michaelis, Max M. – Physics Education, 2014
After a brief history of the Levitron, the first horizontal axis Levitron is reported. Because it is easy to operate, it lends itself to educational physics experiments and analogies. Precession and nutation are visualized by reflecting the beam from a laser pointer off the "spignet". Precession is fundamental to nuclear magnetic…
Descriptors: Science Instruction, Lasers, Magnets, Scientific Principles
Najiya Maryam, K. M. – Physics Education, 2014
If we drop a magnet through a coil, an emf is induced in the coil according to Faraday's law of electromagnetic induction. Here, such an experiment is done using expEYES kit. The plot of emf versus time has a specific shape with two peaks. A theoretical analysis of this graph is discussed here for both short and long cylindrical magnets.…
Descriptors: Science Instruction, Science Experiments, Magnets, Motion
Bochnícek, Zdenek; Konecný, Pavel – Physics Education, 2014
The paper describes a set of physics demonstration experiments where thermal sensitive foils are used for the detection of the two dimensional distribution of temperature. The method is used for the demonstration of thermal conductivity, temperature change in adiabatic processes, distribution of electromagnetic radiation in a microwave oven and…
Descriptors: Science Instruction, Science Experiments, Thermodynamics, Heat
Gates, Joshua – Physics Education, 2014
Despite their physics instructors' arguments to the contrary, introductory students can observe situations in which there seems to be compelling evidence for magnetic force doing work. The counterarguments are often highly technical and require physics knowledge beyond the experience of novice students, however. A simple example is presented…
Descriptors: Magnets, Scientific Principles, Science Instruction, Physics
Kontur, Frederick J.; Terry, Nathan B. – Physics Teacher, 2014
How do you motivate students to do their homework? Some instructors make students' homework scores a significant percentage of the final course grade. In that case, how much course credit is required? Some instructors do not grade homework at all, instead relying on students' intrinsic motivation to learn the course material. Will this…
Descriptors: Science Instruction, Homework, Student Motivation, Incentives
Ding, Lin – Physical Review Special Topics - Physics Education Research, 2014
Discipline-based science concept assessments are powerful tools to measure learners' disciplinary core ideas. Among many such assessments, the Brief Electricity and Magnetism Assessment (BEMA) has been broadly used to gauge student conceptions of key electricity and magnetism (E&M) topics in college-level introductory physics courses.…
Descriptors: Scientific Concepts, Science Tests, College Science, Physics
Corridoni, Tommaso; D'Anna, Michele; Fuchs, Hans – Physics Teacher, 2014
The damped oscillator is discussed in every high school textbook or introductory physics course, and a large number of papers are devoted to it in physics didactics journals. Papers typically focus on kinematic and dynamic aspects and less often on energy. Among the latter, some are devoted to the peculiar decreasing behavior of energy…
Descriptors: Science Instruction, Secondary School Science, Science Experiments, Energy
Yilmaz, Ismail – Journal of International Education Research, 2014
This paper is a qualitative case study designed to identify prospective science teachers' mathematical-logical structures on the basis of their knowledge and achievement levels in magnetism. The study also made an attempt to reveal the effects of knowledge-level variables and procedural variables, which were considered to be potential…
Descriptors: Preservice Teachers, Science Teachers, Magnets, Physics
Ryan, Sheila; Herrington, Deborah G. – Journal of Chemical Education, 2014
Understanding what happens at the particulate level when ionic compounds dissolve in water is difficult for many students, yet this understanding is critical in explaining many macroscopic observations. This article describes a student-centered activity designed to help strengthen students' conceptual understanding of this process at the…
Descriptors: Chemistry, Science Activities, Science Instruction, Magnets
Chakraborty, Maharudra; Mukhopadhyay, Subrata; Das, Ranendu Sekhar – Journal of Chemical Education, 2014
A quite simple and inexpensive technique is described here to represent the approximate shapes of atomic orbitals and the molecular orbitals formed by them following the principles of the linear combination of atomic orbitals (LCAO) method. Molecular orbitals of a few simple molecules can also be pictorially represented. Instructors can employ the…
Descriptors: Magnets, Demonstrations (Educational), Molecular Structure, Scientific Concepts
Yoon, Susan A.; Wang, Joyce – TechTrends: Linking Research and Practice to Improve Learning, 2014
Despite the potential of augmented reality (AR) in enabling students to construct new understanding, little is known about how the processes and interactions with the multimedia lead to increased learning. This study seeks to explore the affordances of an AR tool on learning that is focused on the science concept of magnets and magnetic fields.…
Descriptors: Simulated Environment, Computer Simulation, Interaction, Multimedia Instruction

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