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Showing 1 to 15 of 60 results Save | Export
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Ionel Popa; Florin Saitis – Journal of Chemical Education, 2022
Proteins are "magical" workers inside our body, as they accomplish most of the cellular functions. Here we report on a novel approach to teach protein folding and unfolding, using magnets and flexible 3D-printed protein structures. To illustrate this physical process, we used colored circular magnets designed for whiteboards, connected…
Descriptors: Magnets, Printing, Computer Peripherals, Simulation
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Yuksel, Tugba; Bryan, Lynn A. – Science Insights Education Frontiers, 2023
This research investigates the Models of eighth-grade students in Turkey pertaining to magnets and magnetic interactions, while also examining the consistency of these models within themselves. Additionally, a comparative assessment is conducted by comparing the current data with data collected from eighth-grade students a decade earlier. The…
Descriptors: Foreign Countries, Models, Grade 8, Secondary School Students
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Wenli Chen; Si Zhang; Zhongling Pi; Jesmine S. H. Tan; Yun Wen; Chee-Kit Looi; Jennifer Yeo; Qingtang Liu – Technology, Pedagogy and Education, 2024
This study investigates the role of a collaboration script, the Funnel Model, in supporting students' computer-supported collaborative scientific argumentation, and how the students appropriated the collaboration script in scientific argumentation. In this exploratory case study, a class of 33 Secondary grade four students went through four phases…
Descriptors: Cooperative Learning, Scripts, Computer Assisted Instruction, Persuasive Discourse
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Forringer, Edward Russell – Physics Teacher, 2022
In a 1993 book review, E. Pearlstein asks, "Why don't textbook authors begin their discussion of magnetism by talking about magnets? That's what students have experience with." A similar question can be asked, "Why don't professors have students measure the force between permanent magnets in introductory physics labs?" The…
Descriptors: Science Education, Physics, Magnets, Measurement
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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
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Elliott, Leslie Atkins; Bolliou, André; Irving, Hanna; Jackson, Douglas – Physics Teacher, 2019
The Gaussian gun is an arrangement of magnets and ball bearings (pictured in Fig. 1) such that--when the leftmost ball is released--the rightmost ball is ejected at high speeds. The device has been described in several articles on energy education. The sudden appearance of kinetic energy offers a productive context for considering a range of…
Descriptors: Physics, Magnets, Energy, Kinetics
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Hansen, John; Stewart, John – Physical Review Physics Education Research, 2021
This work is the fourth of a series of papers applying multidimensional item response theory (MIRT) to widely used physics conceptual assessments. This study applies MIRT analysis using both exploratory and confirmatory methods to the Brief Electricity and Magnetism Assessment (BEMA) to explore the assessment's structure and to determine a…
Descriptors: Item Response Theory, Science Tests, Energy, Magnets
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Barth-Cohen, Lauren A.; Braden, Sarah K.; Young, Tamara G.; Gailey, Sara – Physical Review Physics Education Research, 2021
Research in undergraduate physics and in K-12 science education has demonstrated challenges and successes in facilitating student engagement with reasoning practices associated with professional physicists. Here we focus on one important dimension of physics reasoning, using evidence to revise models. While this topic has been explored at the…
Descriptors: Middle School Students, Physics, Science Instruction, Thinking Skills
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Carroll, Felix A.; Blauch, David N. – Journal of Chemical Education, 2018
Three-dimensional printing was used to prepare a p-bonding model with embedded magnets. The model enables students to have a kinesthetic experience that simulates the energetics of bonding, antibonding, and nonbonding p-orbital interactions.
Descriptors: Science Instruction, Printing, Models, Magnets
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Cheng, Meng-Fei; Wu, Tsung-Yu; Lin, Shu-Fen – Research in Science Education, 2021
Understanding scientific models and practicing scientific modeling have been emphasized and advocated in science learning. Although teachers have been perceived as shaping their students' understanding of the nature of science, they have been recognized for their lack of understanding of scientific models. This study explores middle school science…
Descriptors: Correlation, Models, Science Instruction, Teaching Methods
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Eaton, Philip; Johnson, Keith; Barrett, Frank; Willoughby, Shannon – Physical Review Physics Education Research, 2019
For proper assessment selection understanding the statistical similarities amongst assessments that measure the same, or very similar, topics is imperative. This study seeks to extend the comparative analysis between the brief electricity and magnetism assessment (BEMA) and the conceptual survey of electricity and magnetism (CSEM) presented by…
Descriptors: Test Theory, Item Response Theory, Comparative Analysis, Energy
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Hart, Francis Xavier – Physics Teacher, 2018
We commonly ask students to compare the results of their experimental measurements with the predictions of a simple physical model that is well understood. However, in practice, physicists must compare their experimental measurements with the predictions of several models, none of which may work well over the entire range of measurements. The…
Descriptors: Science Instruction, Physics, Magnets, Scientific Concepts
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Maxworth, Ashanthi – Education Sciences, 2019
Introducing abstract concepts to students from applied fields can be challenging. Electromagnetics is one of those courses where abstract concepts are introduced. This work presents a conceptual model which defines learning objectives in three levels for Engineering Electromagnetics. Each level is aligned with its own assessment and evaluation…
Descriptors: Undergraduate Students, College Science, Science Instruction, Engineering Education
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Odden, Tor Ole. B.; Russ, Rosemary S. – Physical Review Physics Education Research, 2018
Although physics teachers often seek to help their students make sense of physics concepts, our field has yet to thoroughly explore how and why students engage in sensemaking. In this study we use the epistemic games framework to propose a model for students' sensemaking processes. Our analysis of a series of clinical interviews with introductory…
Descriptors: Physics, Science Instruction, Introductory Courses, Energy
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Tural, Güner; Tarakçi, Demet – Research in Science & Technological Education, 2017
Background: One of the topics students have difficulties in understanding is electromagnetic induction. Active learning methods instead of traditional learning method may be able to help facilitate students' understanding such topics more effectively. Purpose: The study investigated the effectiveness of physical models and simulations on students'…
Descriptors: Science Instruction, Energy, Magnets, Active Learning
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