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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
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
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)
Norton, Priscilla; Hathaway, Dawn – Educational Technology, 2012
In this article, the CLICK ("C"omputer Games and "L"iteracy "I"ntegrated with "C"ontent "K"nowledge) design model for high school education is proposed and developed as an instructional response to concerns about content coverage versus deeper content knowledge, learners' inability to grasp the meanings embedded in complex text, and disregard for…
Descriptors: Expertise, Instructional Design, High Schools, Computer Games
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
Duffy, Thomas M.; Raymer, Pamela L. – Educational Technology, 2010
This article focuses on the practical issues in implementing instructional approaches based on constructivist views of learning. The authors do not view this as a procedural guide, but rather believe that the design of these inquiry based learning (IBL) approaches must be guided by the view of learning represented in constructivist frameworks.…
Descriptors: Constructivism (Learning), Inquiry, Active Learning, Teaching Methods
Goldman, Leonard C.; Goldman, Nancy C. – Educational Technology, 1974
This article presents a step-by-step problem-solving model that facilitates change from a teacher-centered to a student-centered class. (Author)
Descriptors: Educational Responsibility, Learning, Models, Problem Solving
Koehler, Adrie A.; Ertmer, Peggy A. – Educational Technology, 2016
Case-based instruction (CBI) offers a promising method for promoting problem-solving skills in learners. However, during CBI, the instructor shoulders major responsibility for shaping the learning that takes place. Research indicates that the facilitation techniques used during case discussions influence what gets covered, and to what extent,…
Descriptors: Web 2.0 Technologies, Case Method (Teaching Technique), Web Based Instruction, Problem Solving
Vidler, Derek C. – Educational Technology, 1974
Article expands on one aspect of conceptual conflict, contradiction, in order to illustrate in greater detail how it might be exploited in educational practice. (Author)
Descriptors: Concept Formation, Conflict Resolution, Curiosity, Problem Solving
Carnine, Douglas W. – Educational Technology, 1993
Discussion of teaching practices that are effective in developing higher cognitive functioning focuses on curriculum development for at-risk students. Four main strategies are addressed: (1) big ideas; (2) linked concepts and connected knowledge; (3) depth of understanding, including declarative, procedural, and conditional knowledge; and (4)…
Descriptors: Curriculum Development, High Risk Students, Instructional Effectiveness, Problem Solving
Roberts, Franklin C.; Park, Ok-choon – Educational Technology, 1983
Reviews the structure of intelligent computer assisted instruction (ICAI) systems, gives some examples of such systems, and discusses their relative strengths and weaknesses. Four references are listed. (MBR)
Descriptors: Artificial Intelligence, Computer Assisted Instruction, Epistemology, Futures (of Society)
Norton, Priscilla – Educational Technology, 1992
Discussion of technological innovations in education focuses on the potentials of the microcomputer as a classroom instructional method. Programing, computer literacy, software applications, and problem solving are suggested as ways to incorporate computers into the curriculum, and examples of applications of computers in elementary and secondary…
Descriptors: Appropriate Technology, Class Activities, Computer Assisted Instruction, Computer Literacy