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Rodrigues, Marcelo José; Simeão Carvalho, Paulo – Physics Education, 2022
Nowadays, students have digital skills that are much larger than any other student in the past. Traditional experiments in a real laboratory are still fundamental, however an increasing number of computers can be used to simulate experiments close to the experimental environment. This can be seen as a great advantage for science learning, as…
Descriptors: Computer Simulation, Science Experiments, Science Activities, Physics
Bhattacharya, Devarati; Steward, Kimberly Carroll; Chandler, Mark; Forbes, Cory – Science Teacher, 2020
To enhance teaching and learning about Earth's climate and global climate change (GCC) in secondary science classrooms, the authors are engaged in a four-year, National Science Foundation (NSF)-funded project to develop, implement, and evaluate a new four-week curriculum module grounded in the use of a data-driven, computer-based climate modeling…
Descriptors: Climate, Change, Science Education, Science Curriculum
Soto, Inia; Cambazoglu, Mustafa Kenal; Arnone, Robert; Kastler, Jessica; Parra, Sabrina – Science Teacher, 2018
Cruise planning may seem like an ordinary task for oceanographers, but it actually involves logical and strategic thinking, collaboration, and multidisciplinary work. The "Challenger" expedition, led by Charles Wyville Thomson from 1872 to 1876, was the first to be fully dedicated to understanding oceans (Rice et al. 1999) and was…
Descriptors: Oceanography, Science Instruction, Science Activities, Role Playing
Jagodzinski, Piotr; Wolski, Robert – Journal of Science Education and Technology, 2015
Natural User Interfaces (NUI) are now widely used in electronic devices such as smartphones, tablets and gaming consoles. We have tried to apply this technology in the teaching of chemistry in middle school and high school. A virtual chemical laboratory was developed in which students can simulate the performance of laboratory activities similar…
Descriptors: Computer Simulation, Virtual Classrooms, Science Laboratories, Computer Interfaces
Annetta, Leonard; Burton, Erin Peters; Frazier, Wendy; Cheng, Rebecca; Chmiel, Margaret – Science Scope, 2012
As smartphones become more ubiquitous among adolescents, there is increasing potential for these as a tool to engage students in science instruction through innovative learning environments such as augmented reality (AR). Aligned with the National Science Education Standards (NRC 1996) and integrating the three dimensions of "A Framework for K-12…
Descriptors: Science Instruction, Elementary Secondary Education, Science Activities, Educational Technology
Yoon, Susan A.; Elinich, Karen; Wang, Joyce; Steinmeier, Christopher; Tucker, Sean – International Journal of Computer-Supported Collaborative Learning, 2012
Although learning science in informal non-school environments has shown great promise in terms of increasing interest and engagement, few studies have systematically investigated and produced evidence of improved conceptual knowledge and cognitive skills. Furthermore, little is known about how digital technologies that are increasingly being used…
Descriptors: Quasiexperimental Design, Concept Formation, Evidence, Museums
Wee, Loo Kang – Physics Education, 2012
We develop an Easy Java Simulation (EJS) model for students to experience the physics of idealized one-dimensional collision carts. The physics model is described and simulated by both continuous dynamics and discrete transition during collision. In designing the simulations, we discuss briefly three pedagogical considerations namely (1) a…
Descriptors: Physics, College Science, Experiential Learning, Feedback (Response)
Podolefsky, Noah S.; Perkins, Katherine K.; Adams, Wendy K. – Physical Review Special Topics - Physics Education Research, 2010
This paper extends prior research on student use of computer simulations (sims) to engage with and explore science topics, in this case wave interference. We describe engaged exploration; a process that involves students actively interacting with educational materials, sense making, and exploring primarily via their own questioning. We analyze…
Descriptors: Learning Strategies, Science Activities, Computer Simulation, Computer Uses in Education
Harris, David M.; Ryan, Kathleen; Rabuck, Cynthia – Advances in Physiology Education, 2012
Students are relying on technology for learning more than ever, and educators need to adapt to facilitate student learning. High-fidelity patient simulators (HFPS) are usually reserved for the clinical years of medical education and are geared to improve clinical decision skills, teamwork, and patient safety. Finding ways to incorporate HFPS into…
Descriptors: Physiology, Medical Education, Fidelity, Student Surveys
Chin, Doris B.; Dohmen, Ilsa M.; Cheng, Britte H.; Oppezzo, Marily A.; Chase, Catherine C.; Schwartz, Daniel L. – Society for Research on Educational Effectiveness, 2010
Over the past several years, the authors have been developing an instructional technology, called Teachable Agents (TA), which draws on the social metaphor of teaching to help students learn. Students teach a computer character, their "agent," by creating a concept map of nodes connected by qualitative causal links. The authors hypothesize that…
Descriptors: Feedback (Response), Concept Mapping, Educational Technology, Science Curriculum
Bers, Marina Umaschi – Jossey-Bass, An Imprint of Wiley, 2011
This volume contains the following papers: (1) Beyond Computer Literacy: Supporting Youth's Positive Development through Technology (Marina Umaschi Bers); (2) Educational Technology, Reimagined (Michael Eisenberg); (3) Children as Codesigners of New Technologies: Valuing the Imagination to Transform What Is Possible (Allison Druin); (4) Content…
Descriptors: Foreign Countries, Adolescents, Social Change, Educational Technology
Clarke, Matthew A.; Giraldo, Carlos – Chemical Engineering Education, 2009
Chemical process simulation is one of the most fundamental skills that is expected from chemical engineers, yet relatively few graduates have the opportunity to learn, in depth, how a process simulator works, from programming the unit operations to the sequencing. The University of Calgary offers a "hands-on" postgraduate course in…
Descriptors: Computer Simulation, Chemical Engineering, Programming, Foreign Countries
Horton, Lucas; Liu, Min; Olmanson, Justin; Toprac, Paul – Online Submission, 2011
In this paper we explore students' engagement in a new media enhanced problem-based learning (PBL) environment and investigate the characteristics of these environments that facilitate learning. We investigated both student experiences using a new media enhanced PBL environment and the specific elements students found most supportive of their…
Descriptors: Learner Engagement, Problem Based Learning, Grade 6, Information Processing

Hartel, Hermann – Physics Education, 2000
Finds that computer simulations can be used to visualize the processes involved with lunar tides. Technology adds value, thus opening new paths for a more distinct analysis and increased learning results. (Author/CCM)
Descriptors: Astronomy, Computer Simulation, Earth Science, Educational Technology

Masene, Robert S. – Science Activities, 2001
Explains the capture-recapture method which is used to estimate population size by researchers. Uses a computer simulation game to teach students the capture-recapture method of population size estimation. (Contains 24 references.) (Author/YDS)
Descriptors: Computer Simulation, Ecology, Educational Technology, High Schools
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