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Wilkerson-Jerde, Michelle; Wagh, Aditi; Wilensky, Uri – Science Education, 2015
To successfully integrate simulation and computational methods into K-12 STEM education, learning environments should be designed to help educators maintain balance between (a) addressing curricular content and practices and (b) attending to student knowledge and interests. We describe DeltaTick, a graphical simulation construction interface for…
Descriptors: STEM Education, Computer Simulation, Science Instruction, Educational Technology
Lisa R. Brown; Laura Holyoke; Yvonne Hunter-Johnson; Billie McNamara – American Association for Adult and Continuing Education, 2022
The American Association for Adult Continuing Education Conference Theme Adaptability, Flexibility, and Sustainability--Adult Education in Dynamic Times is a reflection of the association's global commitment to Transforming Lives and Communities across the spectrum. For the past three years, the American Association has worked to codify and…
Descriptors: Adult Education, Continuing Education, Educational Change, Art Education
Beaven, Tita, Ed.; Rosell-Aguilar, Fernando, Ed. – Research-publishing.net, 2021
The Innovative Language Pedagogy Report presents new and emerging approaches to language teaching, learning, and assessment in school, further education, and higher education settings. Researchers and practitioners provide 22 research-informed, short articles on their chosen pedagogy, with examples and resources. The report is jargon-free, written…
Descriptors: Instructional Innovation, Second Language Learning, Second Language Instruction, Teaching Methods
Dede, Chris; Grotzer, Tina A.; Kamarainen, Amy; Metcalf, Shari – Educational Technology & Society, 2017
Young people now must compete in a global, knowledge-based, innovation-centered economy; they must acquire not just academic knowledge, but also character attributes such as intrinsic motivation, persistence, and flexibility. To accomplish these ambitious goals, the National Research Council (2012) of the United States recommends the use of…
Descriptors: Teaching Methods, Middle School Students, Case Method (Teaching Technique), Vignettes
Scalise, Kathleen; Irvin, P. Shawn; Alresheed, Fahad; Zvoch, Keith; Yim-Dockery, Huna; Park, Sunhi; Landis, Britt; Meng, Paul; Kleinfelder, Bren; Halladay, Lauren; Partsafas, Andrea – Journal of Special Education Technology, 2018
In this article, we describe current research findings on assessment accommodations and universal design within the context of emerging interactive digital assessment tasks that employ simulations such as in science, technology, engineering, and mathematics (STEM). STEM education in many classrooms now includes digitally based activities such as…
Descriptors: STEM Education, Testing Accommodations, Access to Education, Computer Simulation
Burgos, Daniel; Corbí, Alberto – Distance Education, 2018
Transgenic learning is a disruptive approach in education. It encourages modification of moving parts of the educational chain. This article provides a view of transgenic learning focused on the delivery of enriched learning contents in STEAM areas. It discusses the mutagenic role that the virtual containers may play in current distance education.…
Descriptors: Foreign Countries, STEM Education, Art Education, Resource Units
Imhof, Birgit; Scheiter, Katharina; Edelmann, Jorg; Gerjets, Peter – Computers & Education, 2013
This study investigated how enriching visualizations with arrows indicating the motion of objects may help in conveying dynamic information: Multiple static-simultaneous visualizations with motion-indicating arrows were compared with either multiple visualizations without arrows or a single visualization with arrows. Seventy-one students were…
Descriptors: Teaching Methods, Cues, Motion, Comparative Analysis
Gonczi, Amanda L.; Maeng, Jennifer L.; Bell, Randy L.; Whitworth, Brooke A. – Computers in the Schools, 2016
This mixed-methods study sought to identify professional development implementation variables that may influence participant (a) adoption of simulations, and (b) use for inquiry-based science instruction. Two groups (Cohort 1, N = 52; Cohort 2, N = 104) received different professional development. Cohort 1 was focused on Web site use mechanics.…
Descriptors: Computer Simulation, Professional Development, Elementary School Science, Mixed Methods Research
Yilmaz, Turkan Karakus; Cagiltay, Kursat – Contemporary Educational Technology, 2016
Many virtual worlds have been adopted for implementation within educational settings because they are potentially useful for building effective learning environments. Since the flexibility of virtual worlds challenges to obtain effective and efficient educational outcomes, the design of such platforms need more attention. In the present study, the…
Descriptors: Simulated Environment, Computer Simulation, Observation, Interviews
Burkett, Vent Curtis; Smith, Clinton – Electronic Journal of Science Education, 2016
Virtual reality software has evolved to create ever more realistic virtual environments. Sophisticated virtual education laboratory experiments are now possible. Some educators and researchers question the value of hands-on laboratories relative to virtual laboratories. Researchers have investigated students' acceptance of virtual laboratories and…
Descriptors: Computer Simulation, Simulated Environment, Science Laboratories, Hands on Science
Laffey, James M.; Stichter, Janine; Galyen, Krista – International Journal of Virtual and Personal Learning Environments, 2014
iSocial is a 3D Virtual Learning Environment (3D VLE) to develop social competency for students who have been identified with High-Functioning Autism Spectrum Disorders. The motivation for developing a 3D VLE is to improve access to special needs curriculum for students who live in rural or small school districts. The paper first describes a…
Descriptors: Distance Education, Special Needs Students, Computer Simulation, Educational Technology
Nadolny, Larysa; Childs, Mark – International Journal of Virtual and Personal Learning Environments, 2014
Educational virtual worlds can give students opportunities that would not otherwise be possible in face-to-face settings. The SciEthics Interactive simulations allow learners to conduct scientific research and practice ethical decision-making within a virtual world. This study examined the in-world behaviors that identify students who perceive…
Descriptors: Virtual Classrooms, Scientific Research, Higher Education, Electronic Learning
Jones, Brett D.; Setareh, Mehdi; Polys, Nicholas F.; Bacim, Felipe – International Journal of Web-Based Learning and Teaching Technologies, 2014
Simulations can be powerful learning tools that allow students to explore and understand concepts in ways that are not possible in typical classroom settings. However, research is lacking as to how to use simulations most effectively in different types of learning environments. To address this need, we designed a study to examine the impact of…
Descriptors: Computer Simulation, Undergraduate Students, Student Motivation, Technology Uses in Education
Holden, Christopher – TechTrends: Linking Research and Practice to Improve Learning, 2014
Experiments in the use of augmented reality games formerly required extensive material resources and expertise to implement above and beyond what might be possible within the usual educational contexts. Currently, the more common availability of hardware in these contexts and the existence of easy-to-use, general purpose augmented reality design…
Descriptors: Simulated Environment, Computer Simulation, Computers, Computer Software
Aji, Chadia Affane; Khan, M. Javed – Journal of College Teaching & Learning, 2015
Student engagement is an essential element for learning. Active learning has been consistently shown to increase student engagement and hence learning. Hands-on activities are one of the many active learning approaches. These activities vary from structured laboratory experiments on one end of the spectrum to virtual gaming environments and to for…
Descriptors: Computer Simulation, Experiential Learning, Teaching Methods, Undergraduate Students

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