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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
Laumann, Daniel – Physics Teacher, 2017
Magnetism and its various applications are essential for our daily life and for many technological developments. The term "magnetism" is almost always used as a synonym for ferromagnetism. However, the magnetic properties of the elements of the periodic table indicate that the vast majority of elements are not ferromagnetic, but rather,…
Descriptors: Scientific Principles, Magnets, Teaching Methods, Science Experiments
Kye, Hannah – Science and Children, 2019
In this article, second graders learn the basics of engineering through an exploration of magnetic levitation (maglev) technology. The author designed and taught the lessons to a class of 26 students enrolled in a month-long summer science program. The maglev lessons took place over three mornings (15 minutes for the first lesson and 40 minutes…
Descriptors: Grade 2, Engineering Education, Magnets, Summer Science Programs
Okulu, Hasan Zühtü; Ünver, Ayse Oguz – International Education Studies, 2018
The current research is to give an example to the inquiry-based science teaching implementations for facilitating knowledge acquisition and retention in a short period of time. Thus, the aim of the research is to transfer of acquired knowledge into different situations using sequential inquiry activities, which have challenging questions for…
Descriptors: Learning, Retention (Psychology), Inquiry, Science Instruction
Haugland, Ole Anton – Physics Teacher, 2014
The bicycle generator is often mentioned as an example of a method to produce electric energy. It is cheap and easily accessible, so it is a natural example to use in teaching. There are different types, but I prefer the old side-wall dynamo. The most common explanation of its working principle seems to be something like the illustration in Fig.…
Descriptors: Science Education, Teaching Methods, Power Technology, Energy Education
Kao, Jacqueline Y.; Yang, Min-Han; Lee, Chi-Young – Journal of Chemical Education, 2015
Neo magnets are neodymium magnet beads that have been marketed as a desktop toy. We proposed using neo magnets as an alternative building block to traditional ball-and-stick models to construct carbon allotropes, such as fullerene and various nanocone structures. Due to the lack of predetermined physical connections, the versatility of carbon…
Descriptors: Science Activities, Magnets, Demonstrations (Educational), Undergraduate Students
Prytz, Kjell – Physics Education, 2015
Creative learning is discussed with respect to a specific physics topic. A teaching example, based on an apparatus that demonstrates the standard dynamo model of geomagnetism, is presented. It features many of the basic physics concepts within the syllabus of electromagnetism at high-school and university. To stimulate conceptual learning and to…
Descriptors: Physics, Teaching Methods, Units of Study, Electromechanical Technology
Corbett, Lisa; Maklad, Rania; Dunne, Mick; Grace, Pierre – Primary Science, 2014
During a final seminar with BA year 4 science specialist trainee teachers, the authors posed a question about the difficulties associated with understanding magnetism. The ensuing discussion focused on a number of concerns commonly identified by students, which may also be of interest to classroom teachers teaching magnetism. Issues raised…
Descriptors: Science Instruction, Elementary School Science, Magnets, Scientific Concepts
Cheng, Meng-Fei; Cheng, Yufang; Hung, Shuo-Hsien – Teaching Science, 2014
Based on our experience of teaching physics in middle and senior secondary school, we have found that students have difficulty in reasoning at the microscopic level. Their reasoning is limited to the observational level so they have problems in developing scientific models of magnetism. Here, we suggest several practical activities and the use of…
Descriptors: Thinking Skills, Magnets, Science Education, Computer Simulation
Miranda, Rommel J.; Hermann, Ronald S. – Science and Children, 2015
Any assessment activity can help student learning if it provides information that both teachers and students can use as feedback in assessing themselves. However, such assessment only becomes "formative" assessment when teachers actually use the feedback to adapt their teaching to meet the learning needs of students. This column provides…
Descriptors: Formative Evaluation, Feedback (Response), Summative Evaluation, Science Instruction
Taylor, Ken – Physics Teacher, 2011
Resonance effects are among the most intriguing phenomena in physics and engineering. The classical case of a mass-spring oscillator driven at its resonant frequency is one of the earliest examples that students encounter. Perhaps the most commonly depicted method of driving the vibrating system is mechanical. An alternative approach presented in…
Descriptors: Science Activities, Science Instruction, Scientific Principles, Magnets
Yochum, Hank; Vinion-Dubiel, Arlene; Granger, Jill; Lindsay, Lynne; Maass, Teresa; Mayhew, Sarah – Science and Children, 2013
Engaging children in authentic investigation opens the doors for them to gain deep conceptual understanding in science. As students engage in investigation, they experience the practices employed by scientists and engineers, as highlighted in the Next Generation Science Standards (Achieve Inc. 2013). They also begin to understand the nature of…
Descriptors: Science Instruction, Magnets, Energy, Scientific Concepts
Zangori, Laura; Forbes, Cory; Biggers, Mandy – Science and Children, 2012
Many teachers have taught their share of science lessons that needed improvements. For the past eight years, the authors have been working with elementary teachers to implement quick and easy strategies to modify existing science lessons to make them more inquiry-based. Elementary teachers can use these strategies to adapt existing science lessons…
Descriptors: Elementary School Science, Elementary School Teachers, Science Activities, Inquiry
Wong, Darren; Lee, Paul; Foong, See Kit – Physics Education, 2010
We investigate the electromagnetic induction phenomenon for a "falling," "oscillating" and "swinging" magnet and a coil, with the help of a datalogger. For each situation, we discuss the salient aspects of the phenomenon, with the aid of diagrams, and relate the motion of the magnet to its mathematical and graphical representations. Using various…
Descriptors: Thinking Skills, Energy, Magnets, Science Instruction
Abdul-Razzaq, W.; Biller, R. D. – Physics Education, 2010
Introductory physics laboratories have seen an influx of "conceptual integrated science" over time in their classrooms with elements of other sciences such as chemistry, biology, Earth science, and astronomy. We describe a laboratory to introduce this development, as it attracts attention to the voltage induced in the human brain as it…
Descriptors: Science Activities, Physics, Geology, Science Laboratories