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Ryan, Qing X.; Frodermann, Evan; Heller, Kenneth; Hsu, Leonardo; Mason, Andrew – Physical Review Physics Education Research, 2016
The combination of modern computing power, the interactivity of web applications, and the flexibility of object-oriented programming may finally be sufficient to create computer coaches that can help students develop metacognitive problem-solving skills, an important competence in our rapidly changing technological society. However, no matter how…
Descriptors: Problem Solving, Coaching (Performance), Introductory Courses, Physics
Nogry, S.; Jean-Daubias, S.; Guin, N. – Interactive Learning Environments, 2012
This article deals with evaluating an interactive learning environment (ILE) during the iterative-design process. Various aspects of the system must be assessed and a number of evaluation methods are available. In designing the ILE Ambre-add, several techniques were combined to test and refine the system. In particular, we point out the merits of…
Descriptors: Foreign Countries, Educational Technology, Elementary School Students, Mathematics Instruction
Kolfschoten, Gwendolyn; Lukosch, Stephan; Verbraeck, Alexander; Valentin, Edwin; de Vreede, Gert-Jan – Computers & Education, 2010
Nowadays we need to teach students how to become flexible problem solvers in a dynamic world. The pace in which technology changes and complexity increases requires increased efficiency in learning and understanding. This requires the engineers of tomorrow to quickly gain knowledge and insight outside their prime area of expertise. To transfer…
Descriptors: Instructional Design, Problem Solving, Learning Processes, Efficiency
Lynch, Collin; Ashley, Kevin D.; Pinkwart, Niels; Aleven, Vincent – International Journal of Artificial Intelligence in Education, 2009
In this paper we consider prior definitions of the terms "ill-defined domain" and "ill-defined problem". We then present alternate definitions that better support research at the intersection of Artificial Intelligence and Education. In our view both problems and domains are ill-defined when essential concepts, relations, or criteria are un- or…
Descriptors: Definitions, Artificial Intelligence, Problem Solving, Educational Research
Wilkins, D. C.; And Others – 1987
Arguing that an explicit representation of the problem-solving method of an expert system shell as abstract control knowledge provides a powerful foundation for learning, this paper describes the abstract control knowledge of the Heracles expert system shell for heuristic classification problems, and describes how the Odysseus apprenticeship…
Descriptors: Apprenticeships, Classification, Computer Assisted Instruction, Computer System Design
Morch, Anders; Nygard, Kathrine; Andersen, Renate; Mushtaq, Shazia; Nedic, Damir; Olsen, Espen; Hauge, Trond Eiliv; Vedoy, Gunn; Norenes, Svein Olav; Moen, Anne; Nes, Sturle; Olsen, Dorothy S.; Ludvigsen, Sten; Toiviainen, Hanna; Lallimo, Jiri; Toikka, Seppo; Paavola, Sami; Pohjola, Pasi; Hakkarainen, Kai – Online Submission, 2009
This deliverable has been produced in the context of the Knowledge-Practice Laboratory (KP-Lab) project. KP-Lab focuses on innovative practices of working with knowledge in higher education, teacher training, and workplaces. Participants of WP10 are University of Helsinki, University of Oslo and Poyry Forest Industry representing both researchers…
Descriptors: Foreign Countries, Higher Education, Program Evaluation, Educational Change
Grandbastien, Monique; Morinet-Lambert, Josette – 1989
Written in ADA language, SAIDA, a Help System for Data Implementation, is an experimental teaching and learning environment which uses artificial intelligence techniques to teach a computer science course on abstract data representations. The application domain is teaching advanced programming concepts which have not received much attention from…
Descriptors: Computer Assisted Instruction, Computer Science Education, Computer System Design, Expert Systems
Clancey, William J. – 1986
This survey of intelligent tutoring systems describes the components of these systems, different teaching scenarios, and the relation of these systems to a theory of instruction. It argues that the underlying pedagogical approach is to make latent knowledge manifest by using different forms of quantitative modeling: (1) simulating physical…
Descriptors: Computer Assisted Instruction, Computer Simulation, Computer System Design, Expert Systems

Goktepe, Mesut; And Others – Computers and Education, 1989
Discussion of the use of computers in education focuses on a graphics-based system for teaching the Pascal programing language for problem solving. Topics discussed include user interface; notification based systems; communication processes; object oriented programing; workstations; graphics architecture; and flowcharts. (18 references) (LRW)
Descriptors: Communications, Computer Assisted Instruction, Computer Graphics, Computer Science Education

Johnson, William B.; Norton, Jeffrey E. – Educational Technology, Research and Development, 1992
Review of research and development on the design of computer-based simulation for diagnostic training highlights the development and evaluation of eight diagnostic training systems that explored the appropriate level of student modeling needed for technology training. Topics addressed include changes in interface design, displays, and system…
Descriptors: Computer Assisted Instruction, Computer Simulation, Computer System Design, Evaluation Methods
Browning, Mark E.; Lehman, James D. – Collegiate Microcomputer, 1988
Discusses the development and field testing of a prototype genetics tutor program for microcomputers written in Turbo Pascal. A preliminary field test with undergraduates is described that was used as formative evaluation, and suggestions are given for designing a more effective tutor that uses additional intelligent computer-assisted instruction…
Descriptors: Computer Assisted Instruction, Computer System Design, Courseware, Field Tests

Collaud, G.; Gurtner, J-L.; Coen, P-F. – Journal of Computer Assisted Learning, 2000
Reports on an experiment in which a course in psychology was replaced by a mixed formula consisting of a CD-ROM complemented by seminars and workshops. The CD-ROM was conceived as a collection of documents linked together with Netscape facilities. Students searched through these documents for information to answer questions (challenges) on the…
Descriptors: Computer Assisted Instruction, Computer System Design, Courseware, Educational Technology
Takaoka, Ryo; Okamoto, Toshio – 1994
As a person learns, his problem solving ability improves and one reason for this is the increased acquisition of "macro-rules" which make problem solving more efficient. An intelligent computer assisted learning (ICAI) system is being developed which automatically acquires the useful knowledge from the domain experts; as experts give the learning…
Descriptors: Cognitive Development, Cognitive Processes, Computer Assisted Instruction, Computer System Design

Maredi, Mphahlele; Oosthuizen, H. J. – Computers & Education, 1995
Factor-Q is a problem-solving computer assisted instruction system for teaching polynomials in grades 9-12 that addresses the limitations of most problem-solving programs, among others, the user interface. The system is designed to help students master the skills of factorizing polynomials. It demonstrates the ease with which inadequately trained…
Descriptors: Computer Assisted Instruction, Computer Interfaces, Computer System Design, High School Students
Scarlatos, Lori L. – Interactive Technology and Smart Education, 2006
Educators recognize that group work and physical involvement with learning materials can greatly enhance the understanding and retention of difficult concepts. As a result, math manipulatives--such as pattern blocks and number lines--have increasingly been making their way into classrooms and children's museums. Yet without the constant guidance…
Descriptors: Museums, Mathematical Concepts, Mathematics Instruction, Problem Solving
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