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Showing 1 to 15 of 21 results Save | Export
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Wannous, Jarier; Horvath, Peter – Physics Teacher, 2023
Measuring permeability in a high school physics course has long been a hard task. However, with the advent of using smartphones in the classroom, it is not only possible but even easily done. This paper offers detailed instructions on how to measure permeability using a smartphone's magnetometer, starting with experimentally discovering the…
Descriptors: Magnets, Telecommunications, Handheld Devices, Physics
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Angelos Sofianidis; Christos Skraparlis; Nayia Stylianidou – Journal of Science Education and Technology, 2024
This paper presents and discusses the inclusive inquiry-based alternate reality game (IB-ARGI) approach, a pedagogical gamified approach supporting inclusive contemporary educational contexts. The IB-ARGI approach comprises Inquiry-based Learning, Alternate Reality Games, Universal Design for Learning and Augmented Reality technology in order to…
Descriptors: Inquiry, Access to Education, Computer Simulation, Computer Games
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Al-Salmani, Fatema; Johnson, Jordan; Thacker, Beth – Physical Review Physics Education Research, 2023
We present an analysis of students' thinking skills as evidenced by free-response exam problems during the COVID-19 pandemic. We compare two inquiry-based, laboratory-based classical mechanics courses, one taught online and one taught in person during the pandemic, and two inquiry-based, laboratory-based electricity and magnetism courses, one…
Descriptors: Thinking Skills, Evaluation Methods, Comparative Analysis, Inquiry
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Cruz-Guzmán, Marta; García-Carmona, Antonio; Criado, Ana M. – Research in Science Education, 2020
This article presents a qualitative study of the type and quality of questions formulated by prospective elementary teachers (PETs) when designing scientific inquiry activities, depending on the school science content selected. The data were acquired during teacher training instruction on these aspects with 67 participant PETs. The results showed…
Descriptors: Science Instruction, Teaching Methods, Questioning Techniques, Inquiry
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De Poorter, John; De Lange, Jan; Devoldere, Lies; Van Landeghem, Jouri; Strubbe, Katrien – Physics Education, 2017
Crosscutting concepts like patterns and models are fundamental parts in both the American framework of science education (from the AAAS) and our proposals for a new science education framework in Flanders. These concepts deepen the insight of both students and teachers. They help students to ask relevant questions during an inquiry and they give…
Descriptors: Physics, Scientific Concepts, Foreign Countries, Teaching Methods
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Stender, Anita; Schwichow, Martin; Zimmerman, Corinne; Härtig, Hendrik – International Journal of Science Education, 2018
Many science curricula and standards emphasise that students should learn both scientific knowledge and the skills associated with the construction of this knowledge. One way to achieve this goal is to use inquiry-learning activities that embed the use of science process skills. We investigated the influence of scientific reasoning skills (i.e.…
Descriptors: Inquiry, Science Instruction, Cognitive Ability, Teaching Methods
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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
Belcher, Nathan Tillman – ProQuest LLC, 2017
This action research study used data from multiple assessments in Mechanics and Electricity and Magnetism to determine the viability of Modeling Instruction as a pedagogy for students in AP Physics C: Mechanics and Electricity and Magnetism. Modeling Instruction is a guided-inquiry approach to teaching science in which students progress through…
Descriptors: Science Instruction, Physics, Advanced Placement Programs, Mechanics (Physics)
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Moynihan, Richard; van Kampen, Paul; Finlayson, Odilla; McLoughlin, Eilish – School Science Review, 2016
This article describes the development of a lesson sequence that supports secondary-level students to construct an explanatory model for electrostatic attraction using a guided enquiry method. The students examine electrostatic interactions at a macro level and explain the phenomena at the atomic level. Pre-tests, post-tests, homework assignments…
Descriptors: Secondary School Students, Concept Teaching, Scientific Concepts, Inquiry
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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
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Wecker, Christof; Rachel, Alexander; Heran-Dörr, Eva; Waltner, Christine; Wiesner, Hartmut; Fischer, Frank – Journal of Research in Science Teaching, 2013
In the course of inquiry activities similar to those of real scientists, learners are supposed to develop knowledge both on the level of observable phenomena and on the level of explanatory theories. However, some theories involve theoretical entities (e.g., "Weiss domains") that cannot be observed directly and therefore may be hard to…
Descriptors: Scientific Concepts, Theories, Inquiry, Science Instruction
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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
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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
Silin, Jonathan, Ed.; Moore, Meredith, Ed. – Bank Street College of Education, 2016
Confirmation of the current enthusiasm for re-visioning progressive education arrived in inboxes this fall when the Bank Street College of Education received more submissions for this issue than for any other in the journal's 17-year history. From these the editors have selected a range of essays that reflect pre-kindergarten through high-school…
Descriptors: Public Schools, Progressive Education, Teaching Methods, Play
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Anderson, Janice L.; Barnett, Mike – Journal of Science Education and Technology, 2013
The purpose of this work is to share our findings in using video gaming technology to facilitate the understanding of basic electromagnetism with middle school students. To this end, we explored the impact of using a game called "Supercharged!" on middle school students' understanding of electromagnetic concepts compared to students…
Descriptors: Video Games, Video Technology, Teaching Methods, Science Instruction
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