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Cederqvist, A-M. – Education and Information Technologies, 2022
Designing programmed technological solutions (PTS) with programming materials has become a way to contextualise educational content related to PTS and programming. However, studies show that pupils have difficulties conceptualising central phenomena involved in the process, which affects their ability to design PTS. In order to understand these…
Descriptors: Programming, Coding, Computer System Design, Elementary School Students
Waalkens, Maaike; Aleven, Vincent; Taatgen, Niels – Computers & Education, 2013
Intelligent tutoring systems (ITS) support students in learning a complex problem-solving skill. One feature that makes an ITS architecturally complex, and hard to build, is support for strategy freedom, that is, the ability to let students pursue multiple solution strategies within a given problem. But does greater freedom mean that students…
Descriptors: Intelligent Tutoring Systems, Problem Solving, Algebra, Mathematics Instruction
Gomez, Emilio; Rodriguez-Marciel, Cristina – British Journal of Educational Technology, 2012
The purpose of this paper was to provide information about the virtual learning environment known as PGDnet (the Spanish acronym for "Plataforma de Gestion Docente" or Educational Management Platform in English), which was developed by the innovative education group at the Technical University of Madrid known as "Nuevas metodologias…
Descriptors: Foreign Countries, Educational Technology, Electronic Learning, Web Based Instruction
Kester, Liesbeth; Kirschner, Paul A. – Interactive Learning Environments, 2009
Whether fading support for problems affects accuracy of hypertext navigation and problem performance is investigated in this study. In a student-centered e-learning environment conceptual support is added to help domain novices get an overview of the problem domain, while strategic support is provided to help domain novices get insight into the…
Descriptors: Computer System Design, Hypermedia, Program Effectiveness, Problem Solving
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
Aleven, Vincent; McLaren, Bruce M.; Sewall, Jonathan; Koedinger, Kenneth R. – International Journal of Artificial Intelligence in Education, 2009
The Cognitive Tutor Authoring Tools (CTAT) support creation of a novel type of tutors called example-tracing tutors. Unlike other types of ITSs (e.g., model-tracing tutors, constraint-based tutors), example-tracing tutors evaluate student behavior by flexibly comparing it against generalized examples of problem-solving behavior. Example-tracing…
Descriptors: Feedback (Response), Student Behavior, Intelligent Tutoring Systems, Problem Solving
Kazi, Hameedullah; Haddawy, Peter; Suebnukarn, Siriwan – International Journal of Artificial Intelligence in Education, 2009
In well-defined domains such as Physics, Mathematics, and Chemistry, solutions to a posed problem can objectively be classified as correct or incorrect. In ill-defined domains such as medicine, the classification of solutions to a patient problem as correct or incorrect is much more complex. Typical tutoring systems accept only a small set of…
Descriptors: Foreign Countries, Problem Based Learning, Problem Solving, Correlation
Doering, Aaron; Scharber, Cassandra; Miller, Charles; Veletsianos, George – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2009
GeoThentic, an online teaching and learning environment, focuses on engaging teachers and learners in solving real-world geography problems through use of geospatial technologies. The design of GeoThentic is grounded on the technology, pedagogy, and content knowledge (TPACK) framework as a metacognitive tool. This paper describes how the TPACK…
Descriptors: Geography Instruction, Metacognition, Educational Technology, Electronic Learning
Edwards, Sylvia Lauretta; Watson, Jason; Farrell, Ann; Nash, Robyn – Journal of Learning Design, 2007
Research spanning the last thirty years confirms that people learn better by active enquiry, collaboration and experimental problem solving than by passive reception and acceptance of information. Empirical evidence, as well as the pressing demands of pervasive social and technological change, requires learning and teaching approaches that combine…
Descriptors: Foreign Countries, Electronic Learning, Problem Solving, Problem Based Learning
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
Schaffer, Scott P.; Douglas, Ian – Quarterly Review of Distance Education, 2004
A methodological framework for the delivery of knowledge, performance, and learning (KPL) systems is presented. The role of the KPL system is currently taken by learning management systems or learning and content management systems, and many of these systems facilitate the technical aspects of learning objects. However, they are still rooted in…
Descriptors: Problem Solving, Cost Effectiveness, Educational Technology, Internet