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Wannous, Jarier; Kovác, Milan – Physics Teacher, 2021
Archimedes' principle has been and still is a complicated concept to understand by introductory students, especially as typically stated in physics textbooks. Take for example its statement by Bierman: "When a body is fully or partially submerged in a fluid, a buoyant force from the surrounding fluid acts on the body. The force is directed…
Descriptors: Physics, Science Instruction, Educational Technology, Measurement
Yannier, Nesra; Hudson, Scott E.; Koedinger, Kenneth R. – International Journal of Artificial Intelligence in Education, 2020
Along with substantial consensus around the power of active learning, comes some lack of precision in what its essential ingredients are. New educational technologies offer vehicles for systematically exploring benefits of alternative techniques for supporting active learning. We introduce a new genre of Intelligent Science Station technology that…
Descriptors: Active Learning, Artificial Intelligence, STEM Education, Educational Technology
Inouye, Martha; Houseal, Ana; Gunshenan, Clare – Science Teacher, 2020
Recent research on science teaching and learning defines science as both a body of knowledge and a process (NRC 2007); it is the integration of science content, practices, and core ideas (NRC 2012). It would follow that science learning should parallel what science is and how it is done; students should not be just consumers of scientific…
Descriptors: Science Instruction, Teaching Methods, Science Process Skills, Hands on Science
Simonson, Michael, Ed.; Seepersaud, Deborah, Ed. – Association for Educational Communications and Technology, 2021
For the forty-fourth time, the Association for Educational Communications and Technology (AECT) is sponsoring the publication of these Proceedings. Papers published in this volume were presented online and onsite during the annual AECT Convention. Volume 1 contains papers dealing primarily with research and development topics. Papers dealing with…
Descriptors: Educational Technology, Technology Uses in Education, Feedback (Response), Course Evaluation
Loth, Matthew; Gibbons, Chad; Belaiter, Sami; Clarage, James B. – Physics Teacher, 2017
One of the canonical, and memorable, classroom demonstrations from an upper-division mechanics course is to toss a rigid body with three distinct principal moments of inertia into the air, giving it a spin along one of its three principal axes. A student's mechanics textbook itself works great for the body, secured rigidly shut with a rubber band.…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Teaching Methods
Piyatissa, Madawala Liyanage Shanaka; Johar, Md Gapar Md; Tarofder, Arun Kumar – Asian Journal of Contemporary Education, 2018
In this study, it is expected to highlight some common illusions that can interfere with classroom teaching of physics at secondary school. Cases cited here surfaced as useful by-products while some experimental teaching sessions were being conducted with grades 10 and 11 students in three government schools in a suburb of Western province in Sri…
Descriptors: Science Instruction, Secondary School Science, Physics, Scientific Principles
Polat, Elif; Cagiltay, K.; Aykut, C.; Karasu, N. – Australian Journal of Learning Difficulties, 2019
Students with specific learning disabilities (SLD) typically do not perform at the expected levels of academic achievement. Tangible mobile applications are learning devices that allow for physical engagement and multisensory interaction. They present as promising tools to facilitate learning for students with SLD. This study explored the use of a…
Descriptors: Foreign Countries, Learning Disabilities, Computer Oriented Programs, Educational Technology
van Riesen, Siswa; Gijlers, Hannie; Anjewierden, Anjo; de Jong, Ton – Educational Technology Research and Development, 2018
Inquiry learning is an educational approach in which learners actively construct knowledge and in which performing investigations and conducting experiments is central. To support learners in designing informative experiments we created a scaffold, the Experiment Design Tool (EDT), that provided learners with a step-by-step structure to select…
Descriptors: Inquiry, Teaching Methods, Experiments, Scaffolding (Teaching Technique)
Gregorcic, Bor; Planinsic, Gorazd; Etkina, Eugenia – Physical Review Physics Education Research, 2017
In this paper, we investigate some of the ways in which students, when given the opportunity and an appropriate learning environment, spontaneously engage in collaborative inquiry. We studied small groups of high school students interacting around and with an interactive whiteboard equipped with Algodoo software, as they investigated orbital…
Descriptors: Science Instruction, Nonverbal Communication, High School Students, Educational Technology
Yoon, Susan; Anderson, Emma; Lin, Joyce; Elinich, Karen – Educational Technology & Society, 2017
Research on learning about science has revealed that students often hold robust misconceptions about a number of scientific ideas. Digital simulation and dynamic visualization tools have helped to ameliorate these learning challenges by providing scaffolding to understand various aspects of the phenomenon. In this study we hypothesize that…
Descriptors: Computer Simulation, Scientific Concepts, Concept Formation, Visualization
Bogacz, Bogdan F.; Pedziwiatr, Antoni T. – Physics Education, 2014
A classical experiment used to introduce the concept of body inertia, breaking of a thread below and above a hanging weight, is described mathematically and presented in a new way, using force sensors and a computer system.
Descriptors: Science Instruction, Physics, Science Experiments, Scientific Principles
Baird, William H. – Physics Education, 2013
Some of the results from the electrostatics portion of introductory physics are particularly difficult for students to understand and/or believe. For students who have yet to take vector calculus, Gauss's law is far from obvious and may seem more difficult than Coulomb's. When these same students are told that the minimum potential…
Descriptors: Science Instruction, Educational Technology, Teaching Methods, Spreadsheets
Countryman, Colleen Lanz – Physics Teacher, 2014
"The Physics Teacher's" "iPhysicsLabs" column has been dedicated to the implementation of smartphones in instructional physics labs as data collection devices. In order to understand any data set, however, one should first understand how it is obtained. This concern regarding the inclusion of smartphones in lab activities…
Descriptors: Physics, Science Instruction, Telecommunications, Handheld Devices
Aiello, P.; D'Elia, F.; Di Tore, S.; Sibilio, M. – E-Learning and Digital Media, 2012
Consideration of a possible use of virtual reality technologies in school contexts requires gathering together the suggestions of many scientific domains aimed at "understanding" the features of these same tools that let them offer valid support to the teaching-learning processes in educational settings. Specifically, the present study is aimed at…
Descriptors: Computer Simulation, Computer Assisted Instruction, Teaching Methods, Experiential Learning
Ibáñez, María-Blanca; Di-Serio, Ángela; Villarán-Molina, Diego; Delgado-Kloos, Carlos – IEEE Transactions on Education, 2015
This paper reports empirical evidence on having students use AR-SaBEr, a simulation tool based on augmented reality (AR), to discover the basic principles of electricity through a series of experiments. AR-SaBEr was enhanced with knowledge-based support and inquiry-based scaffolding mechanisms, which proved useful for discovery learning in…
Descriptors: Simulated Environment, Computer Simulation, Energy, Science Experiments