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What Works Clearinghouse Rating
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
Chen, Zijun; Dahlberg, E. Dan – Physics Teacher, 2011
After the discovery that superconducting magnets could levitate diamagnetic objects, researchers became interested in measuring the repulsion of diamagnetic fluids in strong magnetic fields, which was given the name "The Moses Effect." Both for the levitation experiments and the quantitative studies on liquids, the large magnetic fields necessary…
Descriptors: Physics, Science Instruction, Water, Magnets
Dega, Bekele Gashe; Kriek, Jeanne; Mogese, Temesgen Fereja – Research in Science Education, 2013
The purpose of this study was to categorize 35 Ethiopian undergraduate physics students' alternative conceptions in the concepts of electric potential and energy. A descriptive qualitative research design was used to categorize the students' alternative conceptions. Four independently homogeneous ability focus groups were formed to elicit the…
Descriptors: Foreign Countries, Undergraduate Students, Physics, Scientific Concepts
Harper, Frances Kay – ProQuest LLC, 2017
This dissertation builds on and extends research on the relationship between equity-minded mathematics teaching, specifically teaching mathematics for social justice, complex instruction, and project-based learning, and students' learning and identity development. Although different in their structures and strategies, equity-minded mathematics…
Descriptors: Equal Education, Mathematics Education, Social Justice, Student Projects
Hennig, Markus; Mertsching, Bärbel; Hilkenmeier, Frederic – European Journal of Engineering Education, 2015
The initial phase of undergraduate engineering degree programmes often comprises courses requiring mathematical expertise which in some cases clearly exceeds school mathematics, but will be imparted only later in mathematics courses. In this article, an approach addressing this challenge by way of example within a "fundamentals of electrical…
Descriptors: Engineering Education, Undergraduate Study, Mathematics Skills, Blended Learning
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
Miller, Kelly; Lasry, Nathaniel; Chu, Kelvin; Mazur, Eric – Physical Review Special Topics - Physics Education Research, 2013
Previous research suggests that students; prior knowledge can interfere with how they observe and remember lecture demonstrations. We measured students' prior knowledge in introductory mechanics and electricity and magnetism at two large universities. Students were then asked to predict the outcome of lecture demonstrations. We compare…
Descriptors: Science Instruction, Lecture Method, Scientific Concepts, Demonstrations (Educational)
Mantyla, Terhi – Science & Education, 2013
In teaching physics, the history of physics offers fruitful starting points for designing instruction. I introduce here an approach that uses historical cognitive processes to enhance the conceptual development of pre-service physics teachers' knowledge. It applies a method called cognitive-historical approach, introduced to the cognitive sciences…
Descriptors: Physics, Logical Thinking, Teaching Methods, Cognitive Processes
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
Feldman, Gerald – Physics Teacher, 2011
An operational understanding of Newton's third law is often elusive for students. Typical examples of this concept are given for contact forces that are closer to the students' everyday experience. While this is a good thing in general, the reaction force can sometimes be taken for granted, and the students can miss the opportunity to really think…
Descriptors: Scientific Principles, Science Instruction, Physics, Scientific Concepts
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
Cai, Su; Chiang, Feng-Kuang; Sun, Yuchen; Lin, Chenglong; Lee, Joey J. – Interactive Learning Environments, 2017
Educators must address several challenges inherent to the instruction of scientific disciplines such as physics -- expensive or insufficient laboratory equipment, equipment error, difficulty in simulating certain experimental conditions. Augmented reality (AR) can be a promising approach to address these challenges. In this paper, we discuss the…
Descriptors: Computer Simulation, Simulated Environment, Science Instruction, Physics
Firmender, Janine M.; Reis, Sally M.; Sweeny, Sheelah M. – Gifted Child Quarterly, 2013
This research examined the range of reading fluency and comprehension scores of 1,149 students in five diverse elementary schools, including a gifted and talented magnet school. Results revealed a range in reading comprehension across all schools of 9.2 grade levels in Grade 3, 11.3 in Grade 4, and 11.6 in Grade 5. A similar wide range of oral…
Descriptors: Academically Gifted, Reading Achievement, Reading Instruction, Elementary School Students
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
Rudolph, Alexander L. – Astronomy Education Review, 2013
The increasing use of interactive learning [IL] strategies in Astro 101 classrooms has led some instructors to consider the usefulness of a textbook in such classes. These strategies provide students a learning modality very different from the traditional lecture supplemented by reading a textbook and homework and raise the question of whether the…
Descriptors: Science Instruction, Astronomy, Textbooks, Teaching Methods

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