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Corinna S. Martarelli; Josua Dubach; Natalie Schelleis; Trix Cacchione; Sebastian Tempelmann – Educational Technology Research and Development, 2025
Virtual reality (VR) can provide access to otherwise inaccessible aspects of the world and thus promote science learning. We developed a VR learning tool about the water cycle, with 11 lessons for classroom teaching at the primary level. We assessed prior knowledge before a four-week intervention and learning outcomes directly after the…
Descriptors: Computer Simulation, Elementary School Science, Science Education, Water
Espinoza, Fernando – Journal of Computers in Mathematics and Science Teaching, 2015
The incorporation of engaging and meaningful learning experiences is essential for the enhancement of critical thinking and the development of scientific literacy. The study engaged several groups of students in activities designed to elicit their understanding of a graphical representation of motion, and to determine the kinesthetic effect of…
Descriptors: Graphs, Motion, Physics, Science Education
Kopasz, Katalin; Makra, Péter; Gingl, Zoltán – Acta Didactica Napocensia, 2013
Experiments, as we all know, are especially important in science education. However, their impact on improving thinking could be even greater when applied together with the methods of inquiry-based learning (IBL). In this paper we present our observations of a high-school laboratory class where students used computers to carry out and analyse real…
Descriptors: Science Education, Science Experiments, Active Learning, Inquiry
Gagnon, Michel – Physics Education, 2011
The close relationship between charged particles and electromagnetic fields has been well known since the 19th century, thanks to James Clerk Maxwell's brilliant unified theory of electricity and magnetism. Today, electromagnetism is recognized as an essential aspect of human activity and has consequently become a major component of senior…
Descriptors: Physics, Computer Software, Motion, High Schools
Heck, Andre – International Journal for Technology in Mathematics Education, 2010
In the Dutch secondary education system, students must carry out at the end of their school career a research or design project to demonstrate their ability to apply acquired knowledge and skills while pursuing a rather large research question or design goal in some depth. They are encouraged to choose the topic themselves and they are to some…
Descriptors: Student Research, Secondary Education, Foreign Countries, Educational Technology
Kapur, Manu – Cognition and Instruction, 2008
This study demonstrates an existence proof for "productive failure": engaging students in solving complex, ill-structured problems without the provision of support structures can be a productive exercise in failure. In a computer-supported collaborative learning setting, eleventh-grade science students were randomly assigned to one of…
Descriptors: Problem Solving, Grade 11, Science Education, Computer Uses in Education
Price, Colin B. – Simulation & Gaming, 2008
Commercial computer games contain "physics engine" components, responsible for providing realistic interactions among game objects. The question naturally arises of whether these engines can be used to develop educational materials for high school and university physics education. To answer this question, the author's group recently conducted a…
Descriptors: Physics, Computers, Games, Science Education

Svec, Michael – Electronic Journal of Science Education, 1999
Examines the relative effectiveness of the traditional lab method and the microcomputer-based laboratory (MBL) for improving student understanding. Examines three areas of achievement: graphing interpretation skills, and interpreting motion graphs and understanding of motion. Results indicate that MBL laboratories are more effective than…
Descriptors: Computer Uses in Education, Elementary Education, Graphs, Motion

Ocaya, R. O. – Physics Education, 2000
Describes a simple computer interface that can be used to make reliable time measurements, such as when timing the swings of a pendulum. Presents a sample experiment involving a form of pendulum known as the compound pendulum. (Author/YDS)
Descriptors: Computer Uses in Education, Educational Technology, Higher Education, Motion

Ploetzner, Rolf; And Others – European Journal of Psychology of Education, 1990
Discusses the artificial-intelligence-based microworld DiBi and MULEDS, a multilevel diagnosis system. Developed to adapt tutoring style to the individual learner. Explains that DiBi sets up a learning environment, and simulates elastic impacts as a subtopic of classical mechanics, and supporting reasoning on different levels of mental domain…
Descriptors: Artificial Intelligence, Computer Uses in Education, Educational Technology, Learning Strategies

Weller, Herman G. – Journal of Research in Science Teaching, 1995
Investigated a microcomputer-based system for the diagnosis and remediation of three Aristotelian alternative conceptions of force and motion held by eighth-grade physical science students. Reports that computer simulations exemplifying canonical conceptions facilitate alteration of students' naive conceptions to a significant degree. Suggests…
Descriptors: Computer Uses in Education, Force, Grade 8, Microcomputers

Brueningsen, Christopher A. – Physics Teacher, 1993
Studies magnetic oscillation using an air track. Ceramic magnets are attached to the cart and also are used as dampeners in place of the springs. The resulting oscillations are fairly sinusoidal and is a good example of simple harmonic motion. (MVL)
Descriptors: Computer Uses in Education, Magnets, Mechanics (Physics), Motion

Brueningsen, Christopher; And Others – Physics Teacher, 1994
Uses a TI-82 graphics calculator to model the air drag of plastic, wood, cork, and foam balls during projectiles experiments. Provides equations and typical data table. (MVL)
Descriptors: Computer Uses in Education, Graphing Calculators, Graphs, Higher Education

Wagner, David L. – Physics Teacher, 1994
Describes the Macintosh equipment and software necessary to obtain and use digitized video for motion analysis. Also provides a simple strategy for undertaking such an analysis. (MVL)
Descriptors: Computer Interfaces, Computer Uses in Education, Higher Education, Motion

Sidhu, Satinder – Physics Teacher, 1994
Presents a computer interfaced experiment that relates the equations of force equals mass times acceleration and force equals the derivative of the pressure divided by the derivative of the time. Provides setup, sample data, and equations. (MVL)
Descriptors: Acceleration (Physics), Computer Interfaces, Computer Uses in Education, Force