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DeVane, Ben; Steward, Cody; Tran, Kelly M. – Educational Technology, 2016
This article reports on a project that used a game-creation tool to introduce middle-school students ages 10 to 13 to problem-solving strategies similar to those in computer science through the lens of studio-based design arts. Drawing on historic paradigms in design pedagogy and contemporary educational approaches in the digital arts to teach…
Descriptors: Middle School Students, Design, Problem Solving, Computer Science
Romero, Liz – Educational Technology, 2016
The purpose of this article is to describe the implementation of a story approach to create online courses in a college environment. The article describes the components of the approach and the implementation process to create a nursing and a language course. The implementation starts with the identification of the need and follows by creating a…
Descriptors: Online Courses, Educational Technology, Instructional Design, Problem Solving
Viner, Mark; Shaughnessy, Michael F. – Educational Technology, 2016
The authors present this interview with Eric Chiang, Associate Professor of Economics, Director of Instructional Technology, and Technology Director for the Online MBA Program at Florida Atlantic University. He has authored 26 peer-reviewed research publications and is the author of "CoreEconomics," an economic principles textbook now in…
Descriptors: Interviews, Educational Technology, Career Development, Profiles
Truran, Peter – Educational Technology, 2016
The teaching of research methodology to graduate science students places an emphasis on scientific reasoning and on the generation and evaluation of evidence in support of research conclusions. Very little attention is paid to the teaching of scientific creativity, the processes for generation of new ideas, hypotheses, and theories. By contrast,…
Descriptors: Creative Thinking, Thinking Skills, Skill Development, Research Methodology
Gropper, George L. – Educational Technology, 2015
Proliferation of prescriptive models in an "engineering" field is not a sign of its maturity. Quite the opposite. Materials engineering, for example, meets the criterion of parsimony. Sadly, the very large number of models in "instructional design," putatively an engineering field, raises questions about its status. Can the…
Descriptors: Instructional Design, Models, Engineering, Research Needs
Reeves, Thomas C.; Reeves, Patricia M. – Educational Technology, 2015
The status of educational technology research in a VUCA world is examined. The acronym, VUCA, stands for "Volatility" (rapidly changing contexts and conditions), "Uncertainty" (information missing that is critical to problem solving), "Complexity" (multiple factors difficult to categorize or control), and…
Descriptors: Educational Technology, Educational Research, Technological Advancement, Problem Solving
Lawrence, Jody; Hokanson, Brad – Educational Technology, 2016
Most educational efforts focus on declarative knowledge and information, which are described primarily as "content." This concentration is common for online courses. Few go beyond this limited level of learning to seek changes in skills and character traits such as curiosity or creativity. Using a project-based curriculum, a course on…
Descriptors: Online Courses, Large Group Instruction, Technology Uses in Education, Educational Technology
Mong, Christopher J.; Ertmer, Peggy A. – Educational Technology, 2013
STEM (science, technology, engineering, and math) disciplines are considered key to the scientific and economic improvement in the United States. As noted by the Carnegie Corporation of New York (2011), we
need a nation in which "all" teachers and thus, all students, are "STEM-capable" (p. 2), that is, equipped with a broad…
Descriptors: STEM Education, Problem Based Learning, Teaching Methods, Relevance (Education)
Romero, Liz; Orzechowski, Agnes; Rahatka, Ola – Educational Technology, 2014
The availability of technological tools is promoting a shift toward more student-centered online instruction. This article describes the implementation of a Problem-Based Learning (PBL) model and the technological tools used to meet the expectations of the model as well as the needs of the students. The end product is a hybrid course with eight…
Descriptors: Problem Solving, Thinking Skills, Critical Thinking, Skill Development
Francom, Gregory M.; Gardner, Joel L. – Educational Technology, 2013
Many recent models of learning and instruction center learning on real-world tasks and problems to support knowledge application and transfer. Among
these models are problem-based learning and task-centered learning, two different approaches to learning that are often mistaken for one another. However, there are important distinctions between…
Descriptors: Task Analysis, Problem Based Learning, Comparative Analysis, Teaching Methods
Gropper, George L. – Educational Technology, 2015
The author notes: "A personal anecdote is an apt opening to this article. An assignment I once had called for assessing texts in a pre-med curriculum. In reviewing a calculus text, a subject in which I had no expertise then or now, I had trouble following an "explanation." I was able to identify where and why the text let me down.…
Descriptors: Instructional Design, Learner Engagement, Active Learning, Design Requirements
Hokanson, Brad – Educational Technology, 2015
This writing looks at an elemental aspect of learning and communication, the question, and contends that questions can be viewed as a technology for education. Questions that we ask in the classroom, online, or in discussion can shape learning and develop skills in students, and they should be more systematically employed in education. This…
Descriptors: Educational Technology, Questioning Techniques, Teaching Methods, Taxonomy
Fulgham, Susan M.; Shaughnessy, Michael F. – Educational Technology, 2014
Jan Herrington is a Professor of Education at Murdoch University in Perth, Western Australia, where she teaches educational technology in the School of Education, including a compulsory first year unit called "Living and Learning with Technology." She has been active in the promotion and support of the effective use of educational…
Descriptors: Educational Research, Interviews, Profiles, Higher Education
Bergeron, Corrie – Educational Technology, 2014
While it's easy to get caught up in the frenetic drive to do the Next Big New Thing in educational technology, it's helpful to remember that a lot of important things "don't" change. But, today, we face almost constant change, and that has serious implications for education and ed-tech professionals. This article looks back at where…
Descriptors: Educational Technology, Technological Advancement, Multimedia Instruction, Computer Uses in Education
Hokanson, Brad; McCluske, Marit – Educational Technology, 2014
The most defining characteristic of MOOCs and other massive courses may be their scale. In their popular description, in the pedagogical and technological approach, in course operation, and in impact, the scale of the course is always foremost in mind. Beyond changes in scale, there are challenges and opportunities to adapt the new techniques in a…
Descriptors: Online Courses, Large Group Instruction, Educational Technology, Technology Uses in Education

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