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Slayter, Erik; Higgins, Lindsey M. – College Teaching, 2018
The development of a student's ability to make data-driven decisions has become a focus in higher education (Schield 1999; Stephenson and Caravello 2007). Data literacy, the ability to understand and use data to effectively inform decisions, is a fundamental component of information competence (Mandinach and Gummer 2013; Stephenson and Caravello,…
Descriptors: Problem Based Learning, Teaching Methods, Computer Software, Decision Making
Renaud, Christian; Wagoner, Bridgette – Principal Leadership, 2011
The use of computer-based gaming in education is not a new phenomenon. Many educators nostalgically remember green Apple II monitors displaying the games Lemonade Stand and Oregon Trail in the early 1980s. Technology in schools has evolved considerably since then, and gaming has become pervasive within all demographic subgroups. Gaming within…
Descriptors: Video Games, Educational Games, Educational Technology, Computer Uses in Education
Gibbons, Andrew S.; Yanchar, Stephen C. – Educational Technology, 2010
A recent literature review by Smith and Boling (2009) critically examines the received view of instructional design in educational technology. Smith and Boling conclude that the foundational literature characterizes design in a way that leads to a constrained understanding of design, especially by novices. They suggest that as a field we move…
Descriptors: Instructional Design, Educational Technology, Problem Solving, Models
Hollenbeck, James E.; Hristova-Hollenbeck, Darina Z. – Online Submission, 2010
This paper describes successful strategies based on research and practical applications used in the Greater Clark School Corporation in bringing many languages and cultures together. The most reasonable and correct course of action for teachers to take is to include the students in all class activities that will be enhanced by cooperative…
Descriptors: Class Activities, Student Attitudes, Cooperative Learning, Teaching Methods
Moore, Omar K. – Educational Technology, 1980
Reviews the Clarifying Environments Program, the goal of which was to develop an empirically grounded theory of human higher-order problem solving. Four problem areas discussed are: communication and educational technology, analysis of human interaction and higher-order problem solving, applications, and heuristic-theory development. (RAO)
Descriptors: Communications, Educational Technology, Educational Theories, Problem Solving
Peer reviewedWagner, Ellen D. – American Journal of Distance Education, 1990
Addresses the relationship that exists between the fields of educational technology, which stresses a performance problem-solving methodology, and distance education, which provides a context within which these methodologies may be employed. A definition of educational technology is discussed, and methodologies of instructional design and…
Descriptors: Distance Education, Educational Technology, Instructional Design, Instructional Development
Peer reviewedSantos-Trigo, Manuel – Mathematics Teacher, 2004
A dynamic program for geometry called Cabri Geometry II is used to examine properties of figures like triangles and make connections with other mathematical ideas like ellipse. The technology tip includes directions for creating such a problem with technology and suggestions for exploring it.
Descriptors: Geometric Concepts, Geometry, Problem Solving, Courseware
Chan, Nelson Wai – 1999
This paper describes research into the framework of Computer Analysis Relationship (CAR) and its methodology together with software such as Scientific Notebook in a teaching and learning problem-solving environment to support student investigation as well as to enhance student logical thinking. CAR aims to motivate students how to subdivide a…
Descriptors: Computers, Educational Technology, Higher Education, Mathematics Activities
Silvern, Leonard C. – Educational Technology, 1980
The development of anasynthesis--the process of analysis, synthesis, modeling, and simulation--as applied to decision making and problem solving in education and training is explored, and its future with regard to education is discussed. (RAO)
Descriptors: Decision Making, Educational Technology, Futures (of Society), Models
Brown, Jean; Kennedy, Mary F. – 1988
The collaborative consultancy role proposed for the educational technologist requires moving beyond the linear model of the systematic approach. Instructional developers need to operate on the conceptual level, to see themselves as problem solvers within a dynamic system in which there are no straight paths, but instead, many paths and many…
Descriptors: Consultants, Educational Planning, Educational Technology, Instructional Development
Peer reviewedGrimson, Jane – European Journal of Engineering Education, 2002
Argues that the changes in the context of engineering requires new approaches within the curriculum and by promoting active learning and encouraging students to experiment and be more creative. eLearning is one of an important number of strategies for achieving the paradigm shift that is required. (Contains 14 references.) (Author/YDS)
Descriptors: Educational Change, Educational Strategies, Educational Technology, Engineering Education
Understanding Our Gifted, 2007
Joyce VanTassel-Baska is the Executive Director of the Center for Gifted Education and the Jody and Layton Smith Professor of Education at the College of William & Mary, Williamsburg, Virginia. For the past 20 years, the Integrated Curriculum Model, based on research of what works with gifted learners, has been the foundation of curriculum…
Descriptors: Integrated Curriculum, Curriculum Development, Units of Study, Gifted
Collins, Allan – 1988
In earlier times, practically everything was taught by apprenticeships. Schools are a recent invention that use many fewer teaching resources, but the computer enables us to go back to the resource-intensive mode of education, in a form called cognitive apprenticeship. This involves the use of modeling, coaching, reflecting on performance, and…
Descriptors: Cognitive Processes, Computer Assisted Instruction, Educational Environment, Educational Technology
Peer reviewedSmith, Taggart – Journal of Technology Studies, 1993
Explains how quality concepts such as customer satisfaction, continuous improvement, and defining the customer apply to education. Describes how creative problem solving can overcome such conceptual blocks as constancy, commitment to the past, compression of ideas, and complacency. (SK)
Descriptors: Creative Thinking, Critical Thinking, Educational Quality, Educational Technology
Peer reviewedWaetjen, Walter B. – Journal of Technology Studies, 1993
Order and entropy exist in all human and environmental processes. Technological innovation begins with entropy, and problem solving creates order. Humans learn by building order through conceptualizing but create entropy by not using a wider range of learning methods. (SK)
Descriptors: Cognitive Processes, Cognitive Style, Concept Formation, Educational Technology

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