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Andrew Kwok-Fai Lui; Sin-Chun Ng; Stella Wing-Nga Cheung – Interactive Learning Environments, 2024
The technology of automated short answer grading (ASAG) can efficiently process answers according to human-prepared grading examples. Computer-assisted acquisition of grading examples uses a computer algorithm to sample real student responses for potentially good examples. The process is critical for optimizing the grading accuracy of machine…
Descriptors: Grading, Computer Uses in Education, Educational Technology, Artificial Intelligence
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Chimalakonda, Sridhar; Nori, Kesav V. – Interactive Learning Environments, 2023
Despite rapid advances, modeling a variety of instructional designs to support variations in teaching and learning during the design of educational technologies is still an open challenge. In this paper, we propose a patterns based approach for the design of educational technologies to address this challenge. This is in contrast with existing…
Descriptors: Educational Technology, Instructional Design, Teaching Methods, Adult Literacy
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Narayanaswamy, C. R.; Narayanaswamy, Vignesh – Interactive Learning Environments, 2022
In this article we apply R, a free software, and recent stock-price data to illustrate the portfolio diversification concept, a corner stone of modern finance theory. Currently, recent stock-price data are available on the internet at no cost to users. By using current market data to construct realistic and authentic examples, student engagement…
Descriptors: Active Learning, Economics Education, Money Management, Computer Software
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Çekmez, Erdem – Interactive Learning Environments, 2020
Mathematical modelling is acknowledged to be one of the major dimensions of mathematical competence, and well-designed modelling activities can provide students with the opportunity to use mathematical concepts and procedures in a meaningful way. Additionally, modelling activities are regarded as suitable contexts for enabling students to use…
Descriptors: Foreign Countries, Mathematics Education, Computer Software, Computer Uses in Education
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Xue, Sijia – Interactive Learning Environments, 2022
Due to a range of different affordances, mobile technologies can be used pedagogically for language teaching and learning. However, the connection of technology to education needs to be grounded in theoretical frameworks and methodological principles. Task-based language teaching (TBLT), as an optimal approach to language teaching and learning,…
Descriptors: Teaching Methods, Technology Integration, Telecommunications, Handheld Devices
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Cattaneo, Alberto A. P.; van der Meij, Hans; Aprea, Carmela; Sauli, Florinda; Zahn, Carmen – Interactive Learning Environments, 2019
In this article, we provide a conceptual model for the design of instructional scenarios integrating hypervideo as an instructional tool. The model provides a structural aid for making design decisions about using hypervideo in instruction. We start by introducing the theoretical rationale for hypervideo as a tool, exploiting three different…
Descriptors: Instructional Design, Vignettes, Hypermedia, Interactive Video
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Mikroyannidis, Alexander; Gómez-Goiri, Aitor; Smith, Andrew; Domingue, John – Interactive Learning Environments, 2020
The main challenges commonly associated with acquiring practical network engineering skills are the requirements for access to specialised and up-to-date network equipment, as well as the high costs associated with obtaining and maintaining this equipment. The PT Anywhere initiative addresses these challenges by offering a mobile environment for…
Descriptors: Computer Science Education, Computer Networks, Data Analysis, Engineering
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van Harmelen, M. – Interactive Learning Environments, 2008
Increasingly, there is a shared understanding that the educational approach driving the development of Personal Learning Environments (PLEs) is one of learner empowerment and facilitation of the efforts of self-directed learners. This approach fits well with concepts of social constructivism, constructionism, and the development and execution of…
Descriptors: Constructivism (Learning), Experiments, Educational Environment, Independent Study
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Vogten, Hubert; Koper, Rob; Martens, Harrie; van Bruggen, Jan – Interactive Learning Environments, 2008
In this article TENCompetence will be presented as a framework for lifelong competence development. More specifically, the relationship between the TENCompetence framework and the IMS Learning Design (LD) specification is explored. LD authoring has proven to be challenging and the toolset currently available is targeting expert users mostly…
Descriptors: Competence, Courseware, Intelligent Tutoring Systems, Instructional Development
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diSessa, Andrea A.; Azevedo, Flavio S.; Parnafes, Orit – Interactive Learning Environments, 2004
This paper provides a review of the rhetoric behind the component movement in educational software, and a critical analysis and synthesis of issues underlying the movement. We draw on case studies of several significant recent component projects in order to assess claims and to uncover and examine issues that are less often considered. While our…
Descriptors: Courseware, Computer Software, Educational Technology, Computer Uses in Education
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Laureano-Cruces, Ana Lilia; Ramirez-Rodriguez, Javier; de Arriaga, Fernando; Escarela-Perez, Rafael – Interactive Learning Environments, 2006
Intelligent learning systems (ILSs) have evolved in the last few years basically because of influences received from multi-agent architectures (MAs). Conflict resolution among agents has been a very important problem for multi-agent systems, with specific features in the case of ILSs. The literature shows that ILSs with cognitive or pedagogical…
Descriptors: Artificial Intelligence, Intelligent Tutoring Systems, Conflict Resolution, Cognitive Style
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Kynigos, C. – Interactive Learning Environments, 2004
The paper discusses three aspects central to the 10 year-old process of design, development and use of E-slate, a construction kit for educational software. These are: (1) the design of computational media for user empowerment, (2) the socially-grounded approach to the building of user communities and (3) the issue of long-term sustainability as…
Descriptors: Educational Technology, Computer Uses in Education, Computer Software, Empowerment
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Roschelle, Jeremy; DiGiano, Chris – Interactive Learning Environments, 2004
In a 3-year project, a consortium of university, nonprofit and commercial educational software developers formed a testbed for the rapid assembly of educational software from reusable component tools. This testbed incorporated interactive learning tools from a variety of university, nonprofit, and commercial developers, and hosted decentralized…
Descriptors: Teaching Methods, Educational Technology, Computer Software, Research and Development
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Towne, Douglas M.; And Others – Interactive Learning Environments, 1990
Explains the Intelligent Maintenance Training System that allows a nonprogramming subject matter expert to produce an interactive graphical model of a complex device for computer simulation. Previous simulation-based training systems are reviewed; simulation algorithms are described; and the student interface is discussed. (Contains 24…
Descriptors: Algorithms, Artificial Intelligence, Authoring Aids (Programming), Computer Assisted Instruction
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Schank, Roger C. – Interactive Learning Environments, 1990
Discussion of the use of case-based teaching methodologies highlights the development of four case-based software programs: (1) VICTOR, a voice and image courtesy tutor; (2) DUSTIN, a language training system for non-English speaking employees; (3) CREANIMATE, a biology tutor for students; and (4) TAXOPS, a tax opportunity advisor. (Contains 27…
Descriptors: Biology, Case Method (Teaching Technique), Case Studies, Computer Assisted Instruction